| Reference |
| Diamond, R., Schroeder, D., Sime, L.C. and 2 more (…) (2024).The Significance of the Melt-Pond Scheme in a CMIP6 Global Climate Model. Journal of Climate,37(1) 249-268 |
| Cael, B.B., Bloch-Johnson, J., Ceppi, P. and 5 more (…) (2023).Energy budget diagnosis of changing climate feedback. Science Advances,9(16) |
| Brunet, G., Parsons, D.B., Ivanov, D. and 25 more (…) (2023).Advancing Weather and Climate Forecasting for Our Changing World. Bulletin of the American Meteorological Society,104(4) E909-E927 |
| Marcheggiani, A., Robson, J., Monerie, P.-A. and 2 more (…) (2023).Decadal Predictability of the North Atlantic Eddy-Driven Jet in Winter. Geophysical Research Letters,50(8) |
| Hodson, D.L.R., Bretonnière, P.-A., Cassou, C. and 14 more (…) (2023).Correction to: Coupled climate response to Atlantic Multidecadal Variability in a multi-model multi-resolution ensemble (Climate Dynamics, (2022), 59, 3-4, (805-836), 10.1007/s00382-022-06157-9). Climate Dynamics,60(11-12) |
| Palmer, P.I., Wainwright, C.M., Dong, B. and 17 more (…) (2023).Drivers and impacts of Eastern African rainfall variability. Nature Reviews Earth and Environment,4(4) 254-270 |
| Suitters, C.C., Martínez-Alvarado, O., Hodges, K.I. and 2 more (…) (2023).Transient anticyclonic eddies and their relationship to atmospheric block persistence. Weather and Climate Dynamics,4(3) 683-700 |
| Seddon, J., Stephens, A., Mizielinski, M.S. and 2 more (…) (2023).Technology to aid the analysis of large-volume multi-institute climate model output at a central analysis facility (PRIMAVERA Data Management Tool V2.10). Geoscientific Model Development,16(22) 6689-6700 |
| Hodson, D.L.R., Sutton, R.T., Scaife, A.A. (2023).Signal-to-noise and predictable modes of variability in winter seasonal forecasts. Quarterly Journal of the Royal Meteorological Society,149(755) 2598-2616 |
| Robson, J., Sutton, R., Menary, M.B. and 1 more (…) (2023).Contrasting internally and externally generated Atlantic Multidecadal Variability and the role for AMOC in CMIP6 historical simulations. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences,381(2262) |
| Von Schuckmann, K., Minière, A., Gues, F. and 65 more (…) (2023).Heat stored in the Earth system 1960-2020: where does the energy go?. Earth System Science Data,15(4) 1675-1709 |
| Jackson, L.C., Petit, T. (2023).North Atlantic overturning and water mass transformation in CMIP6 models. Climate Dynamics,60(9-10) 2871-2891 |
| Wood, R.A., Crucifix, M., Lenton, T.M. and 6 more (…) (2023).A Climate Science Toolkit for High Impact-Low Likelihood Climate Risks. Earth’s Future,11(4) |
| Daleu, C.L., Plant, R.S., Stirling, A.J. and 1 more (…) (2023).Evaluating the CoMorph-A parametrization using idealized simulations of the two-way coupling between convection and large-scale dynamics. Quarterly Journal of the Royal Meteorological Society,149(757) 3087-3109 |
| O’Kane, T.J., Scaife, A.A., Kushnir, Y. and 30 more (…) (2023).Recent applications and potential of near-term (interannual to decadal) climate predictions. Frontiers in Climate,5 |
| Gregory, J.M., Bloch-Johnson, J., Couldrey, M.P. and 9 more (…) (2023).A new conceptual model of global ocean heat uptake. Climate Dynamics, |
| Warwick, N.J., Archibald, A.T., Griffiths, P.T. and 4 more (…) (2023).Atmospheric composition and climate impacts of a future hydrogen economy. Atmospheric Chemistry and Physics,23(20) 13451-13467 |
| Volonté, A., Gray, S.L., Clark, P.A. and 2 more (…) (2023).Strong surface winds in Storm Eunice. Part 1: storm overview and indications of sting jet activity from observations and model data. Weather, |
| Feng, X., Toumi, R., Roberts, M. and 2 more (…) (2023).An Approach to Link Climate Model Tropical Cyclogenesis Bias to Large-Scale Wind Circulation Modes. Geophysical Research Letters,50(15) |
| Bett, P.E., Scaife, A.A., Hardiman, S.C. and 4 more (…) (2023).Using large ensembles to quantify the impact of sudden stratospheric warmings and their precursors on the North Atlantic Oscillation. Weather and Climate Dynamics,4(1) 213-228 |
| Hirons, L., Wainwright, C.M., Nying’uro, P. and 6 more (…) (2023).Experiences of co-producing sub-seasonal forecast products for agricultural application in Kenya and Ghana. Weather,78(5) 148-153 |
| Salvi, P., Gregory, J.M., Ceppi, P. (2023).Time-Evolving Radiative Feedbacks in the Historical Period. Journal of Geophysical Research: Atmospheres,128(20) |
| Seroussi, H., Verjans, V., Nowicki, S. and 46 more (…) (2023).Insights into the vulnerability of Antarctic glaciers from the ISMIP6 ice sheet model ensemble and associated uncertainty. Cryosphere,17(12) 5197-5217 |
| Li, P., Muetzelfeldt, M., Schiemann, R. and 4 more (…) (2023).Sensitivity of simulated mesoscale convective systems over East Asia to the treatment of convection in a high-resolution GCM. Climate Dynamics,60(9-10) 2783-2801 |
| Shen, X., Wang, L., Scaife, A.A. and 2 more (…) (2023).The Stratosphere–Troposphere Oscillation as the Dominant Intraseasonal Coupling Mode between the Stratosphere and Troposphere. Journal of Climate,36(7) 2259-2276 |
| de Mora, L., Swaminathan, R., Allan, R.P. and 10 more (…) (2023).Scenario choice impacts carbon allocation projection at global warming levels. Earth System Dynamics,14(6) 1295-1315 |
| Hawkins, E., Brohan, P., Burgess, S.N. and 11 more (…) (2023).Rescuing historical weather observations improves quantification of severe windstorm risks. Natural Hazards and Earth System Sciences,23(4) 1465-1482 |
| Muetzelfeldt, M.R., Schiemann, R., Turner, A.G. and 2 more (…) (2023).Intraseasonal oscillations of the Silk Road pattern lead to predictability in East Asian precipitation patterns and the Mei Yu front. Environmental Research Communications,5(1) |
| Diong, J.-Y., Xavier, P., Woolnough, S.J. and 1 more (…) (2023).Equatorial Rossby waves on cold surge days and their impact on rainfall. Quarterly Journal of the Royal Meteorological Society,149(754) 2031-2047 |
| Saenko, O.A., Gregory, J.M., Tandon, N.F. (2023).Uncertainties in the Arctic Ocean response to CO 2 : a process-based analysis. Climate Dynamics, |
| Hawkins, E., Alexander, L.V., Allan, R.J. (2023).Millions of digitized historical sea-level pressure observations rediscovered. Geoscience Data Journal,10(3) 385-395 |
| Petit, T., Robson, J., Ferreira, D. and 1 more (…) (2023).Understanding the Sensitivity of the North Atlantic Subpolar Overturning in Different Resolution Versions of HadGEM3-GC3.1. Journal of Geophysical Research: Oceans,128(10) |
| Conroy, A., Titley, H., Rivett, R. and 10 more (…) (2023).Track forecast: Operational capability and new techniques – Summary from the Tenth International Workshop on Tropical Cyclones (IWTC-10). Tropical Cyclone Research and Review,12(1) 64-80 |
| Bodas-Salcedo, A., Gregory, J.M., Sexton, D.M.H. and 1 more (…) (2023).Assessment of Large-Scale Indices of Surface Temperature during the Historical Period in the CMIP6 Ensemble. Journal of Climate,36(7) 2055-2072 |
| Sohail, T., Irving, D.B., Zika, J.D. and 1 more (…) (2023).Anthropogenic Aerosols Offsetting Ocean Warming Less Efficiently Since the 1980s. Geophysical Research Letters,50(23) |
| Li, P., Song, F., Chen, H. and 9 more (…) (2023).Intensification of Mesoscale Convective Systems in the East Asian Rainband Over the Past Two Decades. Geophysical Research Letters,50(16) |
| Guarino, M.V., Sime, L.C., Diamond, R. and 2 more (…) (2023).The coupled system response to 250 years of freshwater forcing: Last Interglacial CMIP6-PMIP4 HadGEM3 simulations. Climate of the Past,19(4) 865-881 |
| Guarino, M.-V., Sime, L.C., Schröeder, D. and 10 more (…) (2023).Author Correction: Sea-ice-free Arctic during the Last Interglacial supports fast future loss (Nature Climate Change, (2020), 10, 10, (928-932), 10.1038/s41558-020-0865-2). Nature Climate Change,13(11) |
| Mulcahy, J.P., Jones, C.G., Rumbold, S.T. and 15 more (…) (2023).UKESM1.1: development and evaluation of an updated configuration of the UK Earth System Model. Geoscientific Model Development,16(6) 1569-1600 |
| Jain, S., Scaife, A.A., Shepherd, T.G. and 5 more (…) (2023).Importance of internal variability for climate model assessment. npj Climate and Atmospheric Science,6(1) |
| Newsom, E., Zanna, L., Gregory, J. (2023).Background Pycnocline Depth Constrains Future Ocean Heat Uptake Efficiency. Geophysical Research Letters,50(22) |
| Couldrey, M.P., Gregory, J.M., Dong, X. and 14 more (…) (2023).Greenhouse-gas forced changes in the Atlantic meridional overturning circulation and related worldwide sea-level change. Climate Dynamics,60(7-8) 2003-2039 |
| Findell, K.L., Sutton, R., Caltabiano, N. and 16 more (…) (2023).Explaining and Predicting Earth System Change A World Climate Research Programme Call to Action. Bulletin of the American Meteorological Society,104(1) E325-E339 |
| Kuhlbrodt, T., Voldoire, A., Palmer, M.D. and 2 more (…) (2023).Historical Ocean Heat Uptake in Two Pairs of CMIP6 Models: Global and Regional Perspectives. Journal of Climate,36(7) 2183-2203 |
| Volonté, A., Gray, S.L., Clark, P.A. and 2 more (…) (2023).Strong surface winds in Storm Eunice. Part 2: airstream analysis. Weather, |
| Cheung, J.C.H., Wells, C.A., Steele, E.C.C. (2023).Evaluation of methods of estimating time-optimal flight routes in a changing climate. Meteorological Applications,30(2) |
| Haines, K., Ferreira, D., Mignac, D. (2022).Variability and Feedbacks in the Atlantic Freshwater Budget of CMIP5 Models With Reference to Atlantic Meridional Overturning Circulation Stability. Frontiers in Marine Science,9 |
| Ayesiga, G., Holloway, C.E., Williams, C.J.R. and 3 more (…) (2022).Linking Equatorial African Precipitation to Kelvin Wave Processes in the CP4-Africa Convection-Permitting Regional Climate Simulation. Journal of the Atmospheric Sciences,79(5) 1271-1289 |
| White, C.J., Domeisen, D.I.V., Acharya, N. and 57 more (…) (2022).Advances in the Application and Utility of Subseasonal-to-Seasonal Predictions. Bulletin of the American Meteorological Society,103(6) E1448-E1472 |
| Tomassini, L., Yang, G.-Y. (2022).Tropical moist convection as an important driver of Atlantic Hadley circulation variability. Quarterly Journal of the Royal Meteorological Society,148(748) 3287-3302 |
| Robson, J., Menary, M.B., Sutton, R.T. and 6 more (…) (2022).The Role of Anthropogenic Aerosol Forcing in the 1850–1985 Strengthening of the AMOC in CMIP6 Historical Simulations. Journal of Climate,35(20) 3243-3263 |
| Capponi, A., Harvey, N.J., Dacre, H.F. and 4 more (…) (2022).Refining an ensemble of volcanic ash forecasts using satellite retrievals: Raikoke 2019. Atmospheric Chemistry and Physics,22(9) 6115-6134 |
| Bett, P.E., Thornton, H.E., Troccoli, A. and 5 more (…) (2022).A simplified seasonal forecasting strategy, applied to wind and solar power in Europe. Climate Services,27 |
| Jackson, L.C., Biastoch, A., Buckley, M.W. and 4 more (…) (2022).The evolution of the North Atlantic Meridional Overturning Circulation since 1980. Nature Reviews Earth and Environment,3(4) 241-254 |
| Harvey, N.J., Daleu, C.L., Stratton, R.A. and 3 more (…) (2022).The impact of surface heterogeneity on the diurnal cycle of deep convection. Quarterly Journal of the Royal Meteorological Society,148(749) 3509-3527 |
| Lauritzen, P.H., Kevlahan, N.K.-R., Toniazzo, T. and 17 more (…) (2022).Reconciling and Improving Formulations for Thermodynamics and Conservation Principles in Earth System Models (ESMs). Journal of Advances in Modeling Earth Systems,14(9) |
| Moreno-Chamarro, E., Caron, L.-P., Loosveldt Tomas, S. and 10 more (…) (2022).Impact of increased resolution on long-standing biases in HighResMIP-PRIMAVERA climate models. Geoscientific Model Development,15(1) 269-289 |
| Lorrey, A.M., Pearce, P.R., Allan, R. and 10 more (…) (2022).Meteorological data rescue: Citizen science lessons learned from Southern Weather Discovery. Patterns,3(6) |
| Gambhir, A., George, M., McJeon, H. and 7 more (…) (2022).Near-term transition and longer-term physical climate risks of greenhouse gas emissions pathways. Nature Climate Change,12(1) 88-96 |
| Lai, W.K.M., Robson, J.I., Wilcox, L.J. and 1 more (…) (2022).Mechanisms of Internal Atlantic Multidecadal Variability in HadGEM3-GC3.1 at Two Different Resolutions. Journal of Climate,35(4) 1365-1383 |
| Castillo, J.M., Lewis, H.W., Mishra, A. and 19 more (…) (2022).The Regional Coupled Suite (RCS-IND1): Application of a flexible regional coupled modelling framework to the Indian region at kilometre scale. Geoscientific Model Development,15(10) 4193-4223 |
| Menon, A., Turner, A.G., Volonté, A. and 3 more (…) (2022).The role of mid-tropospheric moistening and land-surface wetting in the progression of the 2016 Indian monsoon. Quarterly Journal of the Royal Meteorological Society,148(747) 3033-3055 |
| Tucker, S.O., Kendon, E.J., Bellouin, N. and 3 more (…) (2022).Evaluation of a new 12 km regional perturbed parameter ensemble over Europe. Climate Dynamics,58(3-4) 879-903 |
| Leung, L.R., Boos, W.R., Catto, J.L. and 14 more (…) (2022).Exploratory Precipitation Metrics: Spatiotemporal Characteristics, Process-Oriented, and Phenomena-Based. Journal of Climate,35(12) 3659-3686 |
| Athanasiadis, P.J., Ogawa, F., Omrani, N.-E. and 11 more (…) (2022).Mitigating Climate Biases in the Midlatitude North Atlantic by Increasing Model Resolution: SST Gradients and Their Relation to Blocking and the Jet. Journal of Climate,35(21) 3385-3406 |
| Harvey, N.J., Dacre, H.F., Saint, C. and 3 more (…) (2022).Quantifying the impact of meteorological uncertainty on emission estimates and the risk to aviation using source inversion for the Raikoke 2019 eruption. Atmospheric Chemistry and Physics,22(13) 8529-8545 |
| Swaminathan, R., Parker, R.J., Jones, C.G. and 5 more (…) (2022).The Physical Climate at Global Warming Thresholds as Seen in the U.K. Earth System Model. Journal of Climate,35(1) 29-48 |
| Ruane, A.C., Vautard, R., Ranasinghe, R. and 17 more (…) (2022).The Climatic Impact-Driver Framework for Assessment of Risk-Relevant Climate Information. Earth’s Future,10(11) |
| Salvi, P., Ceppi, P., Gregory, J.M. (2022).Interpreting Differences in Radiative Feedbacks From Aerosols Versus Greenhouse Gases. Geophysical Research Letters,49(8) |
| Smith, D.M., Gillett, N.P., Simpson, I.R. and 24 more (…) (2022).Attribution of multi-annual to decadal changes in the climate system: The Large Ensemble Single Forcing Model Intercomparison Project (LESFMIP). Frontiers in Climate,4 |
| Allan, R.P., Willett, K.M., John, V.O. and 1 more (…) (2022).Global Changes in Water Vapor 1979–2020. Journal of Geophysical Research: Atmospheres,127(12) |
| Friedlingstein, P., Jones, M.W., O’Sullivan, M. and 91 more (…) (2022).Global Carbon Budget 2021. Earth System Science Data,14(4) 1917-2005 |
| Fallon, J.C., Bloomfield, H.C., Brayshaw, D.J. and 9 more (…) (2022).Understanding Climate Risk in Future Energy Systems: An Energy-Climate Data Hackathon. Bulletin of the American Meteorological Society,103(5) E1321-E1329 |
| Hegglin, M.I., Bastos, A., Bovensmann, H. and 35 more (…) (2022).Space-based Earth observation in support of the UNFCCC Paris Agreement. Frontiers in Environmental Science,10 |
| Bateson, A.W., Feltham, D.L., Schröder, D. and 4 more (…) (2022).Sea ice floe size: its impact on pan-Arctic and local ice mass and required model complexity. Cryosphere,16(6) 2565-2593 |
| Tucker, S.O., Kendon, E.J., Bellouin, N. and 3 more (…) (2022).Correction to: Evaluation of a new 12 km regional perturbed parameter ensemble over Europe (Climate Dynamics, (2022), 58, 3-4, (879-903), 10.1007/s00382-021-05941-3). Climate Dynamics,58(3-4) |
| Friedlingstein, P., O’sullivan, M., Jones, M.W. and 103 more (…) (2022).Global Carbon Budget 2022. Earth System Science Data,14(11) 4811-4900 |
| Andrews, T., Bodas-Salcedo, A., Gregory, J.M. and 17 more (…) (2022).On the Effect of Historical SST Patterns on Radiative Feedback. Journal of Geophysical Research: Atmospheres,127(18) |
| Yu, H., Yu, X., Zhou, Z. and 9 more (…) (2022).Attribution of April 2020 Exceptional Cold Spell over Northeast China. Bulletin of the American Meteorological Society,103(3) S61-S67 |
| Smith, D.M., Eade, R., Andrews, M.B. and 29 more (…) (2022).Robust but weak winter atmospheric circulation response to future Arctic sea ice loss. Nature Communications,13(1) |
| Blunden, J., Boyer, T., Dunn, R.J.H. and 541 more (…) (2022).STATE OF THE CLIMATE IN 2021. Bulletin of the American Meteorological Society,103(8) S11-S142 |
| Tang, H., Wang, Z., Tang, B. and 9 more (…) (2022).Reduced Probability of 2020 June-July Persistent Heavy Mei-yu Rainfall Event in the Middle to Lower Reaches of the Yangtze River Basin under Anthropogenic Forcing. Bulletin of the American Meteorological Society,103(3) S83-S89 |
| Ades, M., Adler, R., Aldred, F. and 200 more (…) (2022).GLOBAL CLIMATE. Bulletin of the American Meteorological Society,103(8) S11-S142 |
| Shen, X., Wang, L., Osprey, S. and 3 more (…) (2022).The Life Cycle and Variability of Antarctic Weak Polar Vortex Events. Journal of Climate,35(6) 2075-2092 |
| Falloon, P., Bebber, D.P., Dalin, C. and 17 more (…) (2022).What do changing weather and climate shocks and stresses mean for the UK food system?. Environmental Research Letters,17(5) |
| Clément, L., McDonagh, E.L., Gregory, J.M. and 4 more (…) (2022).Mechanisms of Ocean Heat Uptake along and across Isopycnals. Journal of Climate,35(15) 4885-4904 |
| Siahaan, A., Smith, R.S., Holland, P.R. and 7 more (…) (2022).The Antarctic contribution to 21st-century sea-level rise predicted by the UK Earth System Model with an interactive ice sheet. Cryosphere,16(10) 4053-4086 |
| Scaife, A.A., Baldwin, M.P., Butler, A.H. and 16 more (…) (2022).Long-range prediction and the stratosphere. Atmospheric Chemistry and Physics,22(4) 2601-2623 |
| Zhong, Q., Schutgens, N., Van Der Werf, G. and 27 more (…) (2022).Satellite-based evaluation of AeroCom model bias in biomass burning regions. Atmospheric Chemistry and Physics,22(17) 11009-11032 |
| Wu, Q., Gregory, J.M. (2022).Estimating Ocean Heat Uptake Using Boundary Green’s Functions: A Perfect-Model Test of the Method. Journal of Advances in Modeling Earth Systems,14(12) |
| Baker, A.J., Roberts, M.J., Vidale, P.L. and 10 more (…) (2022).Extratropical Transition of Tropical Cyclones in a Multiresolution Ensemble of Atmosphere-Only and Fully Coupled Global Climate Models. Journal of Climate,35(16) 5283-5306 |
| Parker, D.J., Blyth, A.M., Woolnough, S.J. and 47 more (…) (2022).The African SWIFT: Project Growing Science Capability to Bring about a Revolution in Weather Prediction. Bulletin of the American Meteorological Society,103(2) E349-E369 |
| Jones, A.C., Hill, A., Hemmings, J. and 4 more (…) (2022).Below-cloud scavenging of aerosol by rain: a review of numerical modelling approaches and sensitivity simulations with mineral dust in the Met Office’s Unified Model. Atmospheric Chemistry and Physics,22(17) 11381-11407 |
| Ayres, H.C., Screen, J.A., Blockley, E.W. and 1 more (…) (2022).The Coupled Atmosphere–Ocean Response to Antarctic Sea Ice Loss. Journal of Climate,35(14) 4665-4685 |
| Ortega, P., Blockley, E.W., Køltzow, M. and 26 more (…) (2022).Improving Arctic Weather and Seasonal Climate Prediction. Bulletin of the American Meteorological Society,103(10) E2203-E2213 |
| MacLeod, D., Graham, R., O’Reilly, C. and 2 more (…) (2021).Causal pathways linking different flavours of ENSO with the Greater Horn of Africa short rains. Atmospheric Science Letters,22(2) |
| Couldrey, M.P., Gregory, J.M., Boeira Dias, F. and 18 more (…) (2021).What causes the spread of model projections of ocean dynamic sea-level change in response to greenhouse gas forcing?. Climate Dynamics,56(1-2) 155-187 |
| Judt, F., Klocke, D., Rios-Berrios, R. and 23 more (…) (2021).Tropical cyclones in global storm-resolving models. Journal of the Meteorological Society of Japan,99(3) 579-602 |
| Ruprich-Robert, Y., Moreno-Chamarro, E., Levine, X. and 22 more (…) (2021).Impacts of Atlantic multidecadal variability on the tropical Pacific: a multi-model study. npj Climate and Atmospheric Science,4(1) |
| Monerie, P.-A., Robson, J.I., Dunstone, N.J. and 1 more (…) (2021).Skilful seasonal predictions of global monsoon summer precipitation with DePreSys3. Environmental Research Letters,16(10) |
| Brown, H., Liu, X., Pokhrel, R. and 18 more (…) (2021).Biomass burning aerosols in most climate models are too absorbing. Nature Communications,12(1) |
| Hermans, T.H.J., Gregory, J.M., Palmer, M.D. and 3 more (…) (2021).Projecting Global Mean Sea-Level Change Using CMIP6 Models. Geophysical Research Letters,48(5) |
| Kreussler, P., Caron, L.-P., Wild, S. and 9 more (…) (2021).Tropical Cyclone Integrated Kinetic Energy in an Ensemble of HighResMIP Simulations. Geophysical Research Letters,48(5) |
| Hardacre, C., Mulcahy, J.P., Pope, R.J. and 5 more (…) (2021).Evaluation of SO2, SO42-and an updated SO2dry deposition parameterization in the United Kingdom Earth System Model. Atmospheric Chemistry and Physics,21(24) 18465-18497 |
| Moreton, S., Ferreira, D., Roberts, M. and 1 more (…) (2021).Air-Sea Turbulent Heat Flux Feedback Over Mesoscale Eddies. Geophysical Research Letters,48(20) |
| Chevuturi, A., Turner, A.G., Johnson, S. and 4 more (…) (2021).Forecast skill of the Indian monsoon and its onset in the ECMWF seasonal forecasting system 5 (SEAS5). Climate Dynamics,56(9-10) 2941-2957 |
| Blunden, J., Boyer, T., Dunn, R.J.H. and 541 more (…) (2021).State of the climate in 2020. Bulletin of the American Meteorological Society,102(8) 1-481 |
| Yamada, Y., Kodama, C., Satoh, M. and 7 more (…) (2021).Evaluation of the contribution of tropical cyclone seeds to changes in tropical cyclone frequency due to global warming in high-resolution multi-model ensemble simulations. Progress in Earth and Planetary Science,8(1) |
| Muita, R., Dougill, A., Mutemi, J. and 6 more (…) (2021).Understanding the Role of User Needs and Perceptions Related to Sub-Seasonal and Seasonal Forecasts on Farmers’ Decisions in Kenya: A Systematic Review. Frontiers in Climate,3 |
| Fowler, H.J., Ali, H., Allan, R.P. and 33 more (…) (2021).Towards advancing scientific knowledge of climate change impacts on short-duration rainfall extremes. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences,379(2195) |
| Smith, C.J., Harris, G.R., Palmer, M.D. and 8 more (…) (2021).Energy Budget Constraints on the Time History of Aerosol Forcing and Climate Sensitivity. Journal of Geophysical Research: Atmospheres,126(13) |
| Bloomfield, H.C., Brayshaw, D.J., Troccoli, A. and 5 more (…) (2021).Quantifying the sensitivity of european power systems to energy scenarios and climate change projections. Renewable Energy,1641062-1075 |
| Lim, E.-P., Hendon, H.H., Butler, A.H. and 13 more (…) (2021).The 2019 southern hemisphere stratospheric polar vortex weakening and its impacts. Bulletin of the American Meteorological Society,102(6) E1150-E1171 |
| Bloch-Johnson, J., Rugenstein, M., Stolpe, M.B. and 3 more (…) (2021).Climate Sensitivity Increases Under Higher CO2 Levels Due to Feedback Temperature Dependence. Geophysical Research Letters,48(4) |
| Kretschmer, M., Adams, S.V., Arribas, A. and 4 more (…) (2021).Quantifying Causal Pathways of Teleconnections. Bulletin of the American Meteorological Society,102(12) E2247-E2263 |
| Harper, A.B., Williams, K.E., Mcguire, P.C. and 31 more (…) (2021).Improvement of modeling plant responses to low soil moisture in JULESvn4.9 and evaluation against flux tower measurements. Geoscientific Model Development,14(6) 3269-3294 |
| Ortega, P., Robson, J.I., Menary, M. and 7 more (…) (2021).Labrador Sea subsurface density as a precursor of multidecadal variability in the North Atlantic: A multi-model study. Earth System Dynamics,12(2) 419-438 |
| Power, S., Lengaigne, M., Capotondi, A. and 32 more (…) (2021).Decadal climate variability in the tropical Pacific: Characteristics, causes, predictability, and prospects. Science,374(6563) |
| Slivinski, L.C., Compo, G.P., Sardeshmukh, P.D. and 37 more (…) (2021).An evaluation of the performance of the twentieth century reanalysis version 3. Journal of Climate,34(4) 1417-1438 |
| Muetzelfeldt, M.R., Schiemann, R., Turner, A.G. and 3 more (…) (2021).Evaluation of Asian summer precipitation in different configurations of a high-resolution general circulation model in a range of decision-relevant spatial scales. Hydrology and Earth System Sciences,25(12) 6381-6405 |
| Wu, Q., Zhang, X., Church, J.A. and 2 more (…) (2021).Evolving patterns of sterodynamic sea-level rise under mitigation scenarios and insights from linear system theory. Climate Dynamics,57(3-4) 635-656 |
| SAENKO, O.A., GREGORY, J.M., GRIFFIES, S.M. and 2 more (…) (2021).Contribution of ocean physics and dynamics at different scales to heat uptake in low-resolution aogcms. Journal of Climate,34(6) 2017-2035 |
| Daron, J., Allen, M., Bailey, M. and 13 more (…) (2021).Integrating seasonal climate forecasts into adaptive social protection in the Sahel. Climate and Development,13(6) 543-550 |
| Hu, Z., Li, H., Liu, J. and 8 more (…) (2021).Was the extended rainy winter 2018/19 over the middle and lower reaches of the Yangtze river driven by anthropogenic forcing?. Bulletin of the American Meteorological Society,102(1) E67-E73 |
| Vidale, P.L., Hodges, K., Vannière, B. and 6 more (…) (2021).Impact of stochastic physics and model resolution on the simulation of tropical cyclones in climate GCMs. Journal of Climate,34(11) 4315-4341 |
| Hwong, Y.L., Song, S., Sherwood, S.C. and 8 more (…) (2021).Characterizing Convection Schemes Using Their Responses to Imposed Tendency Perturbations. Journal of Advances in Modeling Earth Systems,13(5) |
| Salvi, P., Ceppi, P., Gregory, J.M. (2021).Interpreting the Dependence of Cloud-Radiative Adjustment on Forcing Agent. Geophysical Research Letters,48(18) |
| Payne, A.J., Nowicki, S., Abe-Ouchi, A. and 61 more (…) (2021).Future Sea Level Change Under Coupled Model Intercomparison Project Phase 5 and Phase 6 Scenarios From the Greenland and Antarctic Ice Sheets. Geophysical Research Letters,48(16) |
| Brown, H., Liu, X., Pokhrel, R. and 18 more (…) (2021).Summary of research paper published in Nature Communications titled: Biomass burning aerosols in most climate models are too absorbing. Clean Air Journal,31(1) 1-1 |
| Thornhill, G., Collins, W., Olivié, D. and 23 more (…) (2021).Climate-driven chemistry and aerosol feedbacks in CMIP6 Earth system models. Atmospheric Chemistry and Physics,21(2) 1105-1126 |
| Yu, H., Tan, Q., Zhou, L. and 15 more (…) (2021).Observation and modeling of the historic “godzilla” African dust intrusion into the Caribbean Basin and the southern US in June 2020. Atmospheric Chemistry and Physics,21(16) 12359-12383 |
| Williams, C.J.R., Sellar, A.A., Ren, X. and 8 more (…) (2021).Simulation of the mid-Pliocene Warm Period using HadGEM3: Experimental design and results from model-model and model-data comparison. Climate of the Past,17(5) 2139-2163 |
| Sandu, I., Massonnet, F., van Achter, G. and 20 more (…) (2021).The potential of numerical prediction systems to support the design of Arctic observing systems: Insights from the APPLICATE and YOPP projects. Quarterly Journal of the Royal Meteorological Society,147(741) 3863-3877 |
| Bellucci, A., Athanasiadis, P.J., Scoccimarro, E. and 13 more (…) (2021).Air-Sea interaction over the Gulf Stream in an ensemble of HighResMIP present climate simulations. Climate Dynamics,56(7-8) 2093-2111 |
| Wang, J., Church, J.A., Zhang, X. and 3 more (…) (2021).Evaluation of the Local Sea-Level Budget at Tide Gauges Since 1958. Geophysical Research Letters,48(20) |
| Jones, C.D., Hickman, J.E., Rumbold, S.T. and 46 more (…) (2021).The Climate Response to Emissions Reductions Due to COVID-19: Initial Results From CovidMIP. Geophysical Research Letters,48(8) |
| Zhang, W., Villarini, G., Scoccimarro, E. and 8 more (…) (2021).Tropical cyclone precipitation in the HighResMIP atmosphere-only experiments of the PRIMAVERA Project. Climate Dynamics,57(1-2) 253-273 |
| Zhang, L., Wilcox, L.J., Dunstone, N.J. and 6 more (…) (2021).Future changes in Beijing haze events under different anthropogenic aerosol emission scenarios. Atmospheric Chemistry and Physics,21(10) 7499-7514 |
| Muetzelfeldt, M.R., Plant, R.S., Clark, P.A. and 2 more (…) (2021).A climatology of tropical wind shear produced by clustering wind profiles from the Met Office Unified Model (GA7.0). Geoscientific Model Development,14(6) 4035-4049 |
| Keen, A., Blockley, E., Bailey, D.A. and 15 more (…) (2021).An inter-comparison of the mass budget of the Arctic sea ice in CMIP6 models. Cryosphere,15(2) 951-982 |
| Kudo, R., Diémoz, H., Estellés, V. and 11 more (…) (2021).Optimal use of the Prede POM sky radiometer for aerosol, water vapor, and ozone retrievals. Atmospheric Measurement Techniques,14(5) 3395-3426 |
| Lu, C., Jiang, J., Chen, R. and 5 more (…) (2021).Anthropogenic influence on 2019 May–June extremely low precipitation in Southwestern China. Bulletin of the American Meteorological Society,102(1) S97-S102 |
| Fowler, H.J., Lenderink, G., Prein, A.F. and 16 more (…) (2021).Anthropogenic intensification of short-duration rainfall extremes. Nature Reviews Earth and Environment,2(2) 107-122 |
| Smith, R.S., George, S., Gregory, J.M. (2021).FAMOUS version xotzt (FAMOUS-ice): A general circulation model (GCM) capable of energy- And water-conserving coupling to an ice sheet model. Geoscientific Model Development,14(9) 5769-5787 |
| Thornhill, G.D., Collins, W.J., Kramer, R.J. and 27 more (…) (2021).Effective radiative forcing from emissions of reactive gases and aerosols-A multi-model comparison. Atmospheric Chemistry and Physics,21(2) 853-874 |
| Li, R., Li, D., Nanding, N. and 7 more (…) (2021).Anthropogenic influences on heavy precipitation during the 2019 extremely wet rainy season in Southern China. Bulletin of the American Meteorological Society,102(1) S103-S109 |
| Abdalla, S., Abdeh Kolahchi, A., Ablain, M. and 358 more (…) (2021).Altimetry for the future: Building on 25 years of progress. Advances in Space Research,68(2) 319-363 |
| Edwards, T.L., Nowicki, S., Marzeion, B. and 81 more (…) (2021).Projected land ice contributions to twenty-first-century sea level rise. Nature,593(7857) 74-82 |
| Dittus, A.J., Hawkins, E., Robson, J.I. and 2 more (…) (2021).Drivers of Recent North Pacific Decadal Variability: The Role of Aerosol Forcing. Earth’s Future,9(12) |
| Guo, L., Wilcox, L.J., Bollasina, M. and 3 more (…) (2021).Competing effects of aerosol reductions and circulation changes for future improvements in Beijing haze. Atmospheric Chemistry and Physics,21(19) 15299-15308 |
| Haywood, J.M., Abel, S.J., Barrett, P.A. and 31 more (…) (2021).The CLoud-Aerosol-Radiation Interaction and Forcing: Year 2017 (CLARIFY-2017) measurement campaign. Atmospheric Chemistry and Physics,21(2) 1049-1084 |
| Liu, Z., Bollasina, M.A., Wilcox, L.J. and 2 more (…) (2021).Contrasting the Role of Regional and Remote Circulation in Driving Asian Monsoon Biases in MetUM GA7.1. Journal of Geophysical Research: Atmospheres,126(14) |
| Zhang, J., Furtado, K., Turnock, S.T. and 7 more (…) (2021).The role of anthropogenic aerosols in the anomalous cooling from 1960 to 1990 in the CMIP6 Earth system models. Atmospheric Chemistry and Physics,21(24) 18609-18627 |
| Arnell, N.W., Freeman, A., Kay, A.L. and 2 more (…) (2021).Indicators of climate risk in the UK at different levels of warming. Environmental Research Communications,3(9) |
| Dunn, R.J.H., Aldred, F., Gobron, N. and 179 more (…) (2021).Global climate. Bulletin of the American Meteorological Society,102(8) S11-S142 |
| Smith, R.S., Mathiot, P., Siahaan, A. and 8 more (…) (2021).Coupling the U.K. Earth System Model to Dynamic Models of the Greenland and Antarctic Ice Sheets. Journal of Advances in Modeling Earth Systems,13(10) |
| Yool, A., Palmiéri, J., Jones, C.G. and 9 more (…) (2021).Evaluating the physical and biogeochemical state of the global ocean component of UKESM1 in CMIP6 historical simulations. Geoscientific Model Development,14(6) 3437-3472 |
| Arnell, N.W., Kay, A.L., Freeman, A. and 2 more (…) (2021).Changing climate risk in the UK: A multi-sectoral analysis using policy-relevant indicators. Climate Risk Management,31 |
| Bloomfield, H.C., Gonzalez, P.L.M., Lundquist, J.K. and 12 more (…) (2021).The importance of weather and climate to energy systems: A workshop on next generation challenges in energy–climate modeling. Bulletin of the American Meteorological Society,102(1) E159-E167 |
| Nanding, N., Chen, Y., Wu, H. and 12 more (…) (2020).Anthropogenic Influences on 2019 July Precipitation Extremes Over the Mid–Lower Reaches of the Yangtze River. Frontiers in Environmental Science,8 |
| Martin, G.M., Brooks, M.E., Johnson, B. and 6 more (…) (2020).Forecasting the monsoon on daily to seasonal time-scales in support of a field campaign. Quarterly Journal of the Royal Meteorological Society,146(731) 2906-2927 |
| Palmer, M.D., Gregory, J.M., Bagge, M. and 8 more (…) (2020).Exploring the Drivers of Global and Local Sea-Level Change Over the 21st Century and Beyond. Earth’s Future,8(9) |
| Loeb, N.G., Wang, H., Allan, R.P. and 14 more (…) (2020).New Generation of Climate Models Track Recent Unprecedented Changes in Earth’s Radiation Budget Observed by CERES. Geophysical Research Letters,47(5) |
| Mulcahy, J.P., Johnson, C., Jones, C.G. and 33 more (…) (2020).Description and evaluation of aerosol in UKESM1 and HadGEM3-GC3.1 CMIP6 historical simulations. Geoscientific Model Development,13(12) 6383-6423 |
| Zhang, W., Li, W., Zhu, L. and 8 more (…) (2020).Anthropogenic influence on 2018 summer persistent heavy rainfall in central western China. Bulletin of the American Meteorological Society,101(1) S65-S70 |
| Warren, E., Charlton-Perez, C., Kotthaus, S. and 7 more (…) (2020).Observed aerosol characteristics to improve forward-modelled attenuated backscatter in urban areas. Atmospheric Environment,224 |
| Vannière, B., Roberts, M., Vidale, P.L. and 6 more (…) (2020).The moisture budget of tropical cyclones in highresmip models: Large-scale environmental balance and sensitivity to horizontal resolution. Journal of Climate,33(19) 8457-8474 |
| Roberts, M.J., Jackson, L.C., Roberts, C.D. and 24 more (…) (2020).Sensitivity of the Atlantic Meridional Overturning Circulation to Model Resolution in CMIP6 HighResMIP Simulations and Implications for Future Changes. Journal of Advances in Modeling Earth Systems,12(8) |
| Merryfield, W.J., Baehr, J., Batté, L. and 62 more (…) (2020).Current and emerging developments in subseasonal to decadal prediction. Bulletin of the American Meteorological Society,101(6) E869-E896 |
| Menary, M.B., Robson, J., Allan, R.P. and 11 more (…) (2020).Aerosol-Forced AMOC Changes in CMIP6 Historical Simulations. Geophysical Research Letters,47(14) |
| Juckes, M., Taylor, E.K., Durack, J.P. and 6 more (…) (2020).The CMIP6 Data Request (DREQ, version 01.00.31). Geoscientific Model Development,13(1) 201-224 |
| Goelzer, H., Noël, B.P.Y., Edwards, T.L. and 5 more (…) (2020).Remapping of Greenland ice sheet surface mass balance anomalies for large ensemble sea-level change projections. Cryosphere,14(6) 1747-1762 |
| Gu, J.-F., Plant, R.S., Holloway, C.E. and 5 more (…) (2020).Evaluation of the bulk mass flux formulation using large-eddy simulations. Journal of the Atmospheric Sciences,77(6) 2115-2137 |
| Priestley, M.D.K., Ackerley, D., Catto, J.L. and 3 more (…) (2020).An Overview of the Extratropical Storm Tracks in CMIP6 Historical Simulations. Journal of Climate,33(15) 6315-6343 |
| Hertwig, D., Grimmond, S., Hendry, M.A. and 8 more (…) (2020).Urban signals in high-resolution weather and climate simulations: role of urban land-surface characterisation. Theoretical and Applied Climatology,142(1-2) 701-728 |
| Dunstone, N., Smith, D., Yeager, S. and 8 more (…) (2020).Skilful interannual climate prediction from two large initialised model ensembles. Environmental Research Letters,15(9) |
| Daleu, C.L., Plant, R.S., Woolnough, S.J. and 2 more (…) (2020).Memory Properties in Cloud-Resolving Simulations of the Diurnal Cycle of Deep Convection. Journal of Advances in Modeling Earth Systems,12(8) |
| Seroussi, H., Nowicki, S., Payne, A.J. and 44 more (…) (2020).ISMIP6 Antarctica: A multi-model ensemble of the Antarctic ice sheet evolution over the 21st century. Cryosphere,14(9) 3033-3070 |
| Roberts, M.J., Camp, J., Seddon, J. and 17 more (…) (2020).Impact of model resolution on tropical cyclone simulation using the HighResMIP-PRIMAVERA multimodel ensemble. Journal of Climate,33(7) 2557-2583 |
| Bock, L., Lauer, A., Schlund, M. and 7 more (…) (2020).Quantifying Progress Across Different CMIP Phases With the ESMValTool. Journal of Geophysical Research: Atmospheres,125(21) |
| Roberts, M.J., Camp, J., Seddon, J. and 26 more (…) (2020).Projected Future Changes in Tropical Cyclones Using the CMIP6 HighResMIP Multimodel Ensemble. Geophysical Research Letters,47(14) |
| Hewitt, H.T., Roberts, M., Mathiot, P. and 22 more (…) (2020).Author Correction: Resolving and Parameterising the Ocean Mesoscale in Earth System Models (Current Climate Change Reports, (2020), 6, 4, (137-152), 10.1007/s40641-020-00164-w). Current Climate Change Reports,6(4) 153-154 |
| Fletcher, J.K., Parker, D.J., Turner, A.G. and 10 more (…) (2020).The dynamic and thermodynamic structure of the monsoon over southern India: New observations from the INCOMPASS IOP. Quarterly Journal of the Royal Meteorological Society,146(731) 2867-2890 |
| Newsom, E., Zanna, L., Khatiwala, S. and 1 more (…) (2020).The Influence of Warming Patterns on Passive Ocean Heat Uptake. Geophysical Research Letters,47(18) |
| Senior, C.A., Jones, C.G., Wood, R.A. and 8 more (…) (2020).U.K. Community Earth System Modeling for CMIP6. Journal of Advances in Modeling Earth Systems,12(9) |
| O’Sullivan, D., Marenco, F., Ryder, C.L. and 8 more (…) (2020).Models transport Saharan dust too low in the atmosphere: A comparison of the MetUM and CAMS forecasts with observations. Atmospheric Chemistry and Physics,20(21) 12955-12982 |
| Jayakumar, A., Abel, S.J., Turner, A.G. and 5 more (…) (2020).Performance of the NCMRWF convection-permitting model during contrasting monsoon phases of the 2016 INCOMPASS field campaign. Quarterly Journal of the Royal Meteorological Society,146(731) 2928-2948 |
| Andrews, M.B., Ridley, J.K., Wood, R.A. and 20 more (…) (2020).Historical Simulations With HadGEM3-GC3.1 for CMIP6. Journal of Advances in Modeling Earth Systems,12(6) |
| Gregory, J.M., George, S.E., Smith, R.S. (2020).Large and irreversible future decline of the Greenland ice sheet. Cryosphere,14(12) 4299-4322 |
| Nowicki, S., Goelzer, H., Seroussi, H. and 27 more (…) (2020).Experimental protocol for sea level projections from ISMIP6 stand-alone ice sheet models. Cryosphere,14(7) 2331-2368 |
| Dittus, A.J., Hawkins, E., Wilcox, L.J. and 4 more (…) (2020).Sensitivity of Historical Climate Simulations to Uncertain Aerosol Forcing. Geophysical Research Letters,47(13) |
| Luo, F., Wilcox, L., Dong, B. and 5 more (…) (2020).Projected near-term changes of temperature extremes in Europe and China under different aerosol emissions. Environmental Research Letters,15(3) |
| Huang, X., Zhou, T., Turner, A. and 11 more (…) (2020).The recent decline and recovery of Indian summer monsoon rainfall: Relative roles of external forcing and internal variability. Journal of Climate,33(12) 5035-5060 |
| Li, R.K.K., Woollings, T., O’Reilly, C. and 1 more (…) (2020).Tropical atmospheric drivers of wintertime European precipitation events. Quarterly Journal of the Royal Meteorological Society,146(727) 780-794 |
| Brunner, L., McSweeney, C., Ballinger, A.P. and 16 more (…) (2020).Comparing Methods to Constrain Future European Climate Projections Using a Consistent Framework. Journal of Climate,33(20) 8671-8692 |
| Eunice Lo, Y.T., Mitchell, D.M., Bohnenstengel, S.I. and 5 more (…) (2020).U.K. climate projections: Summer daytime and nighttime urban heat island changes in England’s major cities. Journal of Climate,33(20) 9015-9030 |
| Yool, A., Palmiéri, J., Jones, C.G. and 19 more (…) (2020).Spin-up of UK Earth System Model 1 (UKESM1) for CMIP6. Journal of Advances in Modeling Earth Systems,12(8) |
| Bador, M., Boé, J., Terray, L. and 16 more (…) (2020).Impact of Higher Spatial Atmospheric Resolution on Precipitation Extremes Over Land in Global Climate Models. Journal of Geophysical Research: Atmospheres,125(13) |
| Smith, D.M., Scaife, A.A., Eade, R. and 36 more (…) (2020).North Atlantic climate far more predictable than models imply. Nature,583(7818) 796-800 |
| Todd, A., Zanna, L., Couldrey, M. and 9 more (…) (2020).Ocean-Only FAFMIP: Understanding Regional Patterns of Ocean Heat Content and Dynamic Sea Level Change. Journal of Advances in Modeling Earth Systems,12(8) |
| Dosio, A., Turner, A.G., Tamoffo, A.T. and 6 more (…) (2020).A tale of two futures: Contrasting scenarios of future precipitation for West Africa from an ensemble of regional climate models. Environmental Research Letters,15(6) |
| Li, R.K.K., Woollings, T., O’Reilly, C. and 1 more (…) (2020).Effect of the north pacific tropospheric waveguide on the fidelity of model El Niño teleconnections. Journal of Climate,33(12) 5223-5237 |
| Hunke, E., Allard, R., Blain, P. and 14 more (…) (2020).Should Sea-Ice Modeling Tools Designed for Climate Research Be Used for Short-Term Forecasting?. Current Climate Change Reports,6(4) 121-136 |
| Jiaxiang, G., Shoshiro, M., Roberts, M.J. and 7 more (…) (2020).Influence of model resolution on bomb cyclones revealed by HighResMIP-PRIMAVERA simulations. Environmental Research Letters,15(8) |
| Cucchi, M., P. Weedon, G., Amici, A. and 5 more (…) (2020).WFDE5: Bias-adjusted ERA5 reanalysis data for impact studies. Earth System Science Data,12(3) 2097-2120 |
| Ren, L., Wang, D., An, N. and 7 more (…) (2020).Anthropogenic influences on the persistent night-time heat wave in summer 2018 over Northeast China. Bulletin of the American Meteorological Society,101(1) S83-S88 |
| Rugenstein, M., Bloch-Johnson, J., Gregory, J. and 13 more (…) (2020).Equilibrium Climate Sensitivity Estimated by Equilibrating Climate Models. Geophysical Research Letters,47(4) |
| Schiemann, R., Athanasiadis, P., Barriopedro, D. and 7 more (…) (2020).Northern Hemisphere blocking simulation in current climate models: evaluating progress from the Climate Model Intercomparison Project Phase 5 to 6 and sensitivity to resolution. Weather and Climate Dynamics,1(1) 277-292 |
| Huang, W.T.K., Charlton-Perez, A., Lee, R.W. and 3 more (…) (2020).Weather regimes and patterns associated with temperature-related excess mortality in the UK: A pathway to sub-seasonal risk forecasting. Environmental Research Letters,15(12) |
| Guarino, M.-V., Sime, L.C., Schröeder, D. and 10 more (…) (2020).Sea-ice-free Arctic during the Last Interglacial supports fast future loss. Nature Climate Change,10(10) 928-932 |
| Barton, E.J., Taylor, C.M., Parker, D.J. and 9 more (…) (2020).A case-study of land–atmosphere coupling during monsoon onset in northern India. Quarterly Journal of the Royal Meteorological Society,146(731) 2891-2905 |
| Hermanson, L., Bilbao, R., Dunstone, N. and 9 more (…) (2020).Robust Multiyear Climate Impacts of Volcanic Eruptions in Decadal Prediction Systems. Journal of Geophysical Research: Atmospheres,125(9) |
| Goelzer, H., Nowicki, S., Payne, A. and 39 more (…) (2020).The future sea-level contribution of the Greenland ice sheet: A multi-model ensemble study of ISMIP6. Cryosphere,14(9) 3071-3096 |
| Herbert, R.J., Bellouin, N., Highwood, E.J. and 1 more (…) (2020).Diurnal cycle of the semi-direct effect from a persistent absorbing aerosol layer over marine stratocumulus in large-eddy simulations. Atmospheric Chemistry and Physics,20(3) 1317-1340 |
| Turner, A.G., Bhat, G.S., Martin, G.M. and 62 more (…) (2020).Interaction of convective organization with monsoon precipitation, atmosphere, surface and sea: The 2016 INCOMPASS field campaign in India. Quarterly Journal of the Royal Meteorological Society,146(731) 2828-2852 |
| Blockley, E., Vancoppenolle, M., Hunke, E. and 21 more (…) (2020).The future of sea ice modeling: Where do we go from here?. Bulletin of the American Meteorological Society,101(8) E1304-E1311 |
| Myhre, G., Samset, B.H., Mohr, C.W. and 16 more (…) (2020).Cloudy-sky contributions to the direct aerosol effect. Atmospheric Chemistry and Physics,20(14) 8855-8865 |
| Liu, C., Allan, R.P., Mayer, M. and 6 more (…) (2020).Variability in the global energy budget and transports 1985–2017. Climate Dynamics,55(11-12) 3381-3396 |
| T Archibald, A., M O’Connor, F., Luke Abraham, N. and 25 more (…) (2020).Description and evaluation of the UKCA stratosphere-troposphere chemistry scheme (StratTrop vn 1.0) implemented in UKESM1. Geoscientific Model Development,13(3) 1223-1266 |
| Wing, A.A., Stauffer, C.L., Becker, T. and 38 more (…) (2020).Clouds and Convective Self-Aggregation in a Multimodel Ensemble of Radiative-Convective Equilibrium Simulations. Journal of Advances in Modeling Earth Systems,12(9) |
| Harvey, N.J., Dacre, H.F., Webster, H.N. and 4 more (…) (2020).The impact of ensemble meteorology on inverse modeling estimates of volcano emissions and ash dispersion forecasts: Grímsvötn 2011. Atmosphere,11(10) |
| Hodnebrog, Ø., Myhre, G., Kramer, R.J. and 13 more (…) (2020).The effect of rapid adjustments to halocarbons and N2O on radiative forcing. npj Climate and Atmospheric Science,3(1) |
| Saint-Lu, M., Chadwick, R., Hugo Lambert, F. and 4 more (…) (2020).Influences of local and remote conditions on tropical precipitation and its response to climate change. Journal of Climate,33(10) 4045-4063 |
| Bellouin, N., Quaas, J., Gryspeerdt, E. and 30 more (…) (2020).Bounding Global Aerosol Radiative Forcing of Climate Change. Reviews of Geophysics,58(1) |
| Gregory, J.M., Andrews, T., Ceppi, P. and 2 more (…) (2020).How accurately can the climate sensitivity to CO 2 be estimated from historical climate change?. Climate Dynamics,54(1-2) 129-157 |
| Aksenov, Y., Bateson, A.W., Feltham, D.L. and 3 more (…) (2020).Impact of sea ice floe size distribution on seasonal fragmentation and melt of Arctic sea ice. Cryosphere,14(2) 403-428 |
| Robson, J., Aksenov, Y., Bracegirdle, T.J. and 25 more (…) (2020).The Evaluation of the North Atlantic Climate System in UKESM1 Historical Simulations for CMIP6. Journal of Advances in Modeling Earth Systems,12(9) |
| Nakajima, T., Campanelli, M., Che, H. and 24 more (…) (2020).An overview of and issues with sky radiometer technology and SKYNET. Atmospheric Measurement Techniques,13(8) 4195-4218 |
| Hewitt, H.T., Roberts, M., Mathiot, P. and 22 more (…) (2020).Resolving and Parameterising the Ocean Mesoscale in Earth System Models. Current Climate Change Reports,6(4) 137-152 |
| Sellar, A.A., Walton, J., Jones, C.G. and 46 more (…) (2020).Implementation of U.K. Earth System Models for CMIP6. Journal of Advances in Modeling Earth Systems,12(4) |
| Moreton, S.M., Ferreira, D., Roberts, M.J. and 1 more (…) (2020).Evaluating surface eddy properties in coupled climate simulations with ‘eddy-present’ and ‘eddy-rich’ ocean resolution. Ocean Modelling,147 |
| Allison, L.C., Palmer, M.D., Allan, R.P. and 3 more (…) (2020).Observations of planetary heating since the 1980s from multiple independent datasets. Environmental Research Communications,2(10) |
| Gray, L.J., Brown, M.J., Knight, J. and 4 more (…) (2020).Forecasting extreme stratospheric polar vortex events. Nature Communications,11(1) |
| De Mora, L., Sellar, A.A., Yool, A. and 7 more (…) (2020).Earth system music: Music generated from the United Kingdom Earth System Model (UKESM1). Geoscience Communication,3(2) 263-278 |
| Hawkins, E., Burt, S., Brohan, P. and 4 more (…) (2019).Hourly weather observations from the Scottish Highlands (1883–1904) rescued by volunteer citizen scientists. Geoscience Data Journal,6(2) 160-173 |
| Chen, W., Dong, B., Wilcox, L. and 3 more (…) (2019).Attribution of recent trends in temperature extremes over China: Role of changes in anthropogenic aerosol emissions over asia. Journal of Climate,32(21) 7539-7560 |
| Rugenstein, M., Bloch-Johnson, J., Abe-Ouchi, A. and 23 more (…) (2019).Longrunmip motivation and design for a large collection of millennial-length AOGCM simulations. Bulletin of the American Meteorological Society,100(12) 2551-2569 |
| Scaife, A.A., Camp, J., Comer, R. and 11 more (…) (2019).Does increased atmospheric resolution improve seasonal climate predictions?. Atmospheric Science Letters,20(8) |
| Vannière, B., Demory, M.-E., Vidale, P.L. and 7 more (…) (2019).Multi-model evaluation of the sensitivity of the global energy budget and hydrological cycle to resolution. Climate Dynamics,52(11) 6817-6846 |
| Jackson, L.C., Dubois, C., Forget, G. and 16 more (…) (2019).The Mean State and Variability of the North Atlantic Circulation: A Perspective From Ocean Reanalyses. Journal of Geophysical Research: Oceans,124(12) 9141-9170 |
| Ades, M., Adler, R., Aldeco, L.S. and 471 more (…) (2019).State of the climate in 2018. Bulletin of the American Meteorological Society,100(9) |
| Scannell, C., Booth, B.B.B., Dunstone, N.J. and 8 more (…) (2019).The influence of remote aerosol forcing from industrialized economies on the future evolution of East and West African rainfall. Journal of Climate,32(23) 8335-8354 |
| Wu, P., Roberts, M., Martin, G. and 3 more (…) (2019).The impact of horizontal atmospheric resolution in modelling air–sea heat fluxes. Quarterly Journal of the Royal Meteorological Society,145(724) 3271-3283 |
| Thornton, H.E., Scaife, A.A., Hoskins, B.J. and 5 more (…) (2019).Skilful seasonal prediction of winter gas demand. Environmental Research Letters,14(2) |
| Monerie, P.-A., Robson, J., Dong, B. and 3 more (…) (2019).Predicting the seasonal evolution of southern African summer precipitation in the DePreSys3 prediction system. Climate Dynamics,52(11) 6491-6510 |
| Zanna, L., Khatiwala, S., Gregory, J.M. and 2 more (…) (2019).Global reconstruction of historical ocean heat storage and transport. Proceedings of the National Academy of Sciences of the United States of America,116(4) 1126-1131 |
| Baker, A.J., Schiemann, R., Hodges, K.I. and 6 more (…) (2019).Enhanced climate change response of wintertime North Atlantic circulation, cyclonic activity, and precipitation in a 25-km-resolution global atmospheric model. Journal of Climate,32(22) 7763-7781 |
| Goodess, C.M., Troccoli, A., Acton, C. and 12 more (…) (2019).Advancing climate services for the European renewable energy sector through capacity building and user engagement. Climate Services,16 |
| Sellar, A.A., Jones, C.G., Mulcahy, J.P. and 46 more (…) (2019).UKESM1: Description and Evaluation of the U.K. Earth System Model. Journal of Advances in Modeling Earth Systems,11(12) 4513-4558 |
| Stein, T.H.M., Keat, W., Maidment, R.I. and 6 more (…) (2019).An evaluation of clouds and precipitation in convection-permitting forecasts for South Africa. Weather and Forecasting,34(1) 233-254 |
| Malavelle, F.F., Haywood, J.M., Mercado, L.M. and 4 more (…) (2019).Studying the impact of biomass burning aerosol radiative and climate effects on the Amazon rainforest productivity with an Earth system model. Atmospheric Chemistry and Physics,19(2) 1301-1326 |
| Vautard, R., Christidis, N., Ciavarella, A. and 21 more (…) (2019).Evaluation of the HadGEM3-A simulations in view of detection and attribution of human influence on extreme events in Europe. Climate Dynamics,52(1-2) 1187-1210 |
| Gristey, J.J., Christine Chiu, J., Gurney, R.J. and 4 more (…) (2019).Shortwave spectral radiative signatures and their physical controls. Journal of Climate,32(15) 4805-4828 |
| Arnell, N.W., Lowe, J.A., Challinor, A.J. and 1 more (…) (2019).Global and regional impacts of climate change at different levels of global temperature increase. Climatic Change,155(3) 377-391 |
| Wood, R.A., Rodríguez, J.M., Smith, R.S. and 2 more (…) (2019).Observable, low-order dynamical controls on thresholds of the Atlantic meridional overturning circulation. Climate Dynamics,53(11) 6815-6834 |
| Gregory, J.M., Griffies, S.M., Hughes, C.W. and 11 more (…) (2019).Concepts and Terminology for Sea Level: Mean, Variability and Change, Both Local and Global. Surveys in Geophysics,40(6) 1251-1289 |
| Ceppi, P., Gregory, J.M. (2019).A refined model for the Earth’s global energy balance. Climate Dynamics,53(7-8) 4781-4797 |
| Hinkel, J., Church, J.A., Gregory, J.M. and 7 more (…) (2019).Meeting User Needs for Sea Level Rise Information: A Decision Analysis Perspective. Earth’s Future,7(3) 320-337 |
| Bilbao, R.A.F., Gregory, J.M., Bouttes, N. and 2 more (…) (2019).Attribution of ocean temperature change to anthropogenic and natural forcings using the temporal, vertical and geographical structure. Climate Dynamics,53(9-10) 5389-5413 |
| Shannon, S., Smith, R., Wiltshire, A. and 7 more (…) (2019).Global glacier volume projections under high-end climate change scenarios. Cryosphere,13(1) 325-350 |
| Lin, Y.-J., Hwang, Y.-T., Ceppi, P. and 1 more (…) (2019).Uncertainty in the Evolution of Climate Feedback Traced to the Strength of the Atlantic Meridional Overturning Circulation. Geophysical Research Letters,46(21) 12331-12339 |
| Hodnebrog, O., Myhre, G., Samset, B.H. and 18 more (…) (2019).Water vapour adjustments and responses differ between climate drivers. Atmospheric Chemistry and Physics,19(20) 12887-12899 |
| Brooks, J., Liu, D., Allan, J.D. and 8 more (…) (2019).Black carbon physical and optical properties across northern India during pre-monsoon and monsoon seasons. Atmospheric Chemistry and Physics,19(20) 13079-13096 |
| Wilcox, L., Dunstone, N., Lewinschal, A. and 3 more (…) (2019).Mechanisms for a remote response to Asian anthropogenic aerosol in boreal winter. Atmospheric Chemistry and Physics,19(14) 9081-9095 |
| Cornforth, R., Parker, D.J., Diop-Kane, M. and 18 more (…) (2019).The first forecasters’ handbook for West Africa. Bulletin of the American Meteorological Society,100(11) 2343-2351 |
| Sandu, I., van Niekerk, A., Shepherd, T.G. and 9 more (…) (2019).Impacts of orography on large-scale atmospheric circulation. npj Climate and Atmospheric Science,2(1) |
| De Abreu, R.C., Cunningham, C., Rudorff, C.M. and 6 more (…) (2019).Contribution of anthropogenic climate change to April-may 2017 heavy precipitation over the Uruguay river basin. Bulletin of the American Meteorological Society,100(1) S37-S41 |
| Andrews, T., Andrews, M.B., Bodas-Salcedo, A. and 9 more (…) (2019).Forcings, Feedbacks, and Climate Sensitivity in HadGEM3-GC3.1 and UKESM1. Journal of Advances in Modeling Earth Systems,11(12) 4377-4394 |
| Stone, D.A., Christidis, N., Folland, C. and 14 more (…) (2019).Experiment design of the International CLIVAR C20C+ Detection and Attribution project. Weather and Climate Extremes,24 |
| McCoy, D.T., Field, P.R., Elsaesser, G.S. and 14 more (…) (2019).Cloud feedbacks in extratropical cyclones: Insight from long-term satellite data and high-resolution global simulations. Atmospheric Chemistry and Physics,19(2) 1147-1172 |
| Wainwright, C.M., Marsham, J.H., Keane, R.J. and 4 more (…) (2019).‘Eastern African Paradox’ rainfall decline due to shorter not less intense Long Rains. npj Climate and Atmospheric Science,2(1) |
| Gregory, J.M., Griffies, S.M., Hughes, C.W. and 11 more (…) (2019).Correction to: Concepts and Terminology for Sea Level: Mean, Variability and Change, Both Local and Global (Surveys in Geophysics, (2019), 40, 6, (1251-1289), 10.1007/s10712-019-09525-z). Surveys in Geophysics,40(6) 1291-1292 |
| Kushnir, Y., Scaife, A.A., Arritt, R. and 18 more (…) (2019).Towards operational predictions of the near-term climate. Nature Climate Change,9(2) 94-101 |
| Arnell, N.W., Lowe, J.A., Bernie, D. and 4 more (…) (2019).The global and regional impacts of climate change under representative concentration pathway forcings and shared socioeconomic pathway socioeconomic scenarios. Environmental Research Letters,14(8) |
| Chen, Y., Chen, W., Su, Q. and 7 more (…) (2019).Anthropogenic warming has substantially increased the likelihood of July 2017-like heat waves over central eastern China. Bulletin of the American Meteorological Society,100(1) S91-S95 |
| Brooks, J., Allan, J.D., Williams, P.I. and 11 more (…) (2019).Vertical and horizontal distribution of submicron aerosol chemical composition and physical characteristics across northern India during pre-monsoon and monsoon seasons. Atmospheric Chemistry and Physics,19(8) 5615-5634 |
| Yoshioka, M., Regayre, L.A., Pringle, K.J. and 16 more (…) (2019).Ensembles of Global Climate Model Variants Designed for the Quantification and Constraint of Uncertainty in Aerosols and Their Radiative Forcing. Journal of Advances in Modeling Earth Systems,11(11) 3728-3754 |
| Timmermann, A., An, S.-I., Kug, J.-S. and 42 more (…) (2019).Author Correction: El Niño–Southern Oscillation complexity (Nature, (2018), 559, 7715, (535-545), 10.1038/s41586-018-0252-6). Nature,567(7746) |
| Roberts, M.J., Baker, A., Blockley, E.W. and 11 more (…) (2019).Description of the resolution hierarchy of the global coupled HadGEM3-GC3.1 model as used in CMIP6 HighResMIP experiments. Geoscientific Model Development,12(12) 4999-5028 |
| Chevuturi, A., Turner, A.G., Woolnough, S.J. and 2 more (…) (2019).Indian summer monsoon onset forecast skill in the UK Met Office initialized coupled seasonal forecasting system (GloSea5-GC2). Climate Dynamics,52(11) 6599-6617 |
| Slivinski, L.C., Compo, G.P., Whitaker, J.S. and 43 more (…) (2019).Towards a more reliable historical reanalysis: Improvements for version 3 of the Twentieth Century Reanalysis system. Quarterly Journal of the Royal Meteorological Society,145(724) 2876-2908 |
| Ridley, J.K., Blockley, E.W., Keen, A.B. and 3 more (…) (2018).The sea ice model component of HadGEM3-GC3.1. Geoscientific Model Development,11(2) 713-723 |
| Hyder, P., Edwards, J.M., Allan, R.P. and 21 more (…) (2018).Erratum to: Critical Southern Ocean climate model biases traced to atmospheric model cloud errors (Nature Communications, (2018), 9, 1, (3625), 10.1038/s41467-018-05634-2). Nature Communications,9(1) |
| Palmer, M.D., Harris, G.R., Gregory, J.M. (2018).Extending CMIP5 projections of global mean temperature change and sea level rise due to thermal expansion using a physically-based emulator. Environmental Research Letters,13(8) |
| Arnell, N.W., Lowe, J.A., Lloyd-Hughes, B. and 1 more (…) (2018).The impacts avoided with a 1.5 °C climate target: a global and regional assessment. Climatic Change,147(1-2) 61-76 |
| Roberts, M.J., Vidale, P.L., Senior, C. and 18 more (…) (2018).The benefits of global high resolution for climate simulation process understanding and the enabling of stakeholder decisions at the regional scale. Bulletin of the American Meteorological Society,99(11) 2341-2359 |
| Mulcahy, J.P., Jones, C., Sellar, A. and 11 more (…) (2018).Improved Aerosol Processes and Effective Radiative Forcing in HadGEM3 and UKESM1. Journal of Advances in Modeling Earth Systems,10(11) 2786-2805 |
| Comyn-Platt, E., Hayman, G., Huntingford, C. and 9 more (…) (2018).Erratum to: Carbon budgets for 1.5 and 2 °C targets lowered by natural wetland and permafrost feedbacks (Nature Geoscience, (2018), 11, 8, (568-573), 10.1038/s41561-018-0174-9). Nature Geoscience,11(11) 882-886 |
| Dunstone, N., Smith, D., Scaife, A. and 10 more (…) (2018).Skilful Seasonal Predictions of Summer European Rainfall. Geophysical Research Letters,45(7) 3246-3254 |
| Abernethy, R., Ackerman, S.A., Adler, R. and 498 more (…) (2018).State of the climate in 2017. Bulletin of the American Meteorological Society,99(8) |
| Saenko, O.A., Yang, D., Gregory, J.M. (2018).Impact of mesoscale eddy transfer on heat uptake in an eddy-parameterizing ocean model. Journal of Climate,31(20) 8589-8606 |
| Andrews, T., Gregory, J.M., Paynter, D. and 7 more (…) (2018).Accounting for Changing Temperature Patterns Increases Historical Estimates of Climate Sensitivity. Geophysical Research Letters,45(16) 8490-8499 |
| Kuhlbrodt, T., Jones, C.G., Sellar, A. and 16 more (…) (2018).The Low-Resolution Version of HadGEM3 GC3.1: Development and Evaluation for Global Climate. Journal of Advances in Modeling Earth Systems,10(11) 2865-2888 |
| Fiore, A.M., Fischer, E.V., Milly, G.P. and 26 more (…) (2018).Peroxy acetyl nitrate (PAN) measurements at northern midlatitude mountain sites in April: A constraint on continental source-receptor relationships. Atmospheric Chemistry and Physics,18(20) 15345-15361 |
| Storkey, D., Blaker, A.T., Mathiot, P. and 10 more (…) (2018).UK Global Ocean GO6 and GO7: A traceable hierarchy of model resolutions. Geoscientific Model Development,11(8) 3187-3213 |
| Mangini, F., Irvine, E.A., Shine, K.P. and 1 more (…) (2018).The dependence of minimum-time routes over the North Atlantic on cruise altitude. Meteorological Applications,25(4) 655-664 |
| Marenco, F., Ryder, C., Estellés, V. and 11 more (…) (2018).Studies on mineral dust using airborne lidar, ground-based remote sensing, and in situ instrumentation. EPJ Web of Conferences,176 |
| Harvey, N.J., Huntley, N., Dacre, H.F. and 3 more (…) (2018).Multi-level emulation of a volcanic ash transport and dispersion model to quantify sensitivity to uncertain parameters. Natural Hazards and Earth System Sciences,18(1) 41-43 |
| Menon, A., Turner, A.G., Martin, G.M. and 1 more (…) (2018).Modelling the moistening of the free troposphere during the northwestward progression of Indian monsoon onset. Quarterly Journal of the Royal Meteorological Society,144(713) 1152-1168 |
| Li, C., Tian, Q., Yu, R. and 8 more (…) (2018).Attribution of extreme precipitation in the lower reaches of the Yangtze River during May 2016. Environmental Research Letters,13(1) |
| Harper, A.B., Powell, T., Cox, P.M. and 23 more (…) (2018).Land-use emissions play a critical role in land-based mitigation for Paris climate targets. Nature Communications,9(1) |
| De Mora, L., Yool, A., Palmieri, J. and 5 more (…) (2018).BGC-val: A model- and grid-independent Python toolkit to evaluate marine biogeochemical models. Geoscientific Model Development,11(10) 4215-4240 |
| Marenco, F., Ryder, C., Estellés, V. and 5 more (…) (2018).Unexpected vertical structure of the Saharan Air Layer and giant dust particles during AER-D. Atmospheric Chemistry and Physics,18(23) 17655-17668 |
| Comyn-Platt, E., Hayman, G., Huntingford, C. and 9 more (…) (2018).Carbon budgets for 1.5 and 2 °C targets lowered by natural wetland and permafrost feedbacks. Nature Geoscience,11(8) 568-573 |
| Christiansen, B., Alvarez-Castro, C., Christidis, N. and 16 more (…) (2018).Was the cold European winter of 2009/10 modified by anthropogenic climate change? An attribution study. Journal of Climate,31(9) 3387-3410 |
| Shepherd, T.G., Boyd, E., Calel, R.A. and 16 more (…) (2018).Storylines: an alternative approach to representing uncertainty in physical aspects of climate change. Climatic Change,151(3-4) 555-571 |
| Schiemann, R., Luigi Vidale, P., Shaffrey, L.C. and 5 more (…) (2018).Mean and extreme precipitation over European river basins better simulated in a 25 km AGCM. Hydrology and Earth System Sciences,22(7) 3933-3950 |
| Liu, D., Taylor, J.W., Crosier, J. and 13 more (…) (2018).Aircraft and ground measurements of dust aerosols over the west African coast in summer 2015 during ICE-D and AER-D. Atmospheric Chemistry and Physics,18(5) 3817-3838 |
| Ceppi, P., Zappa, G., Shepherd, T.G. and 1 more (…) (2018).Fast and slow components of the extratropical atmospheric circulation response to CO2 forcing. Journal of Climate,31(3) 1091-1105 |
| Booth, B.B.B., Harris, G.R., Jones, A. and 3 more (…) (2018).Comments on “Rethinking the lower bound on aerosol radiative forcing”. Journal of Climate,31(22) 9407-9412 |
| Timmermann, A., An, S.-I., Kug, J.-S. and 42 more (…) (2018).El Niño–Southern Oscillation complexity. Nature,559(7715) 535-545 |
| Woollings, T., Barnes, E., Hoskins, B. and 9 more (…) (2018).Daily to decadal modulation of jet variability. Journal of Climate,31(4) 1297-1314 |
| Hyder, P., Edwards, J.M., Allan, R.P. and 21 more (…) (2018).Critical Southern Ocean climate model biases traced to atmospheric model cloud errors. Nature Communications,9(1) |
| Lee, R.W., Woollings, T.J., Hoskins, B.J. and 3 more (…) (2018).Impact of Gulf Stream SST biases on the global atmospheric circulation. Climate Dynamics,51(9-10) 3369-3387 |
| Monerie, P.-A., Robson, J., Dong, B. and 1 more (…) (2018).A role of the Atlantic Ocean in predicting summer surface air temperature over North East Asia?. Climate Dynamics,51(1-2) 473-491 |
| Baker, L.H., Shaffrey, L.C., Sutton, R.T. and 2 more (…) (2018).An Intercomparison of Skill and Overconfidence/Underconfidence of the Wintertime North Atlantic Oscillation in Multimodel Seasonal Forecasts. Geophysical Research Letters,45(15) 7808-7817 |
| Grose, M.R., Gregory, J., Colman, R. and 1 more (…) (2018).What Climate Sensitivity Index Is Most Useful for Projections?. Geophysical Research Letters,45(3) 1559-1566 |
| Smith, D.M., Scaife, A.A., Hawkins, E. and 30 more (…) (2018).Predicted Chance That Global Warming Will Temporarily Exceed 1.5 °C. Geophysical Research Letters,45(21) 11-903 |
| Myhre, G., Samset, B.H., Hodnebrog, O. and 17 more (…) (2018).Sensible heat has significantly affected the global hydrological cycle over the historical period. Nature Communications,9(1) |
| Lawrence, B.N., Rezny, M., Budich, R. and 13 more (…) (2018).Crossing the chasm: How to develop weather and climate models for next generation computers?. Geoscientific Model Development,11(5) 1799-1821 |
| Buizza, R., Brönnimann, S., Haimberger, L. and 37 more (…) (2018).The EU-FP7 ERA-CLIM2 project contribution to advancing science and production of earth system climate reanalyses. Bulletin of the American Meteorological Society,99(5) 1003-1014 |
| Menary, M.B., Kuhlbrodt, T., Ridley, J. and 11 more (…) (2018).Preindustrial Control Simulations With HadGEM3-GC3.1 for CMIP6. Journal of Advances in Modeling Earth Systems,10(12) 3049-3075 |
| Thornhill, G.D., Ryder, C.L., Highwood, E.J. and 2 more (…) (2018).The effect of South American biomass burning aerosol emissions on the regional climate. Atmospheric Chemistry and Physics,18(8) 5321-5342 |
| Bloomfield, H.C., Brayshaw, D.J., Shaffrey, L.C. and 2 more (…) (2018).The changing sensitivity of power systems to meteorological drivers: A case study of Great Britain. Environmental Research Letters,13(5) |
| Robson, J., Sutton, R.T., Archibald, A. and 31 more (…) (2018).Recent multivariate changes in the North Atlantic climate system, with a focus on 2005–2016. International Journal of Climatology,38(14) 5050-5076 |
| Williams, K.D., Copsey, D., Blockley, E.W. and 26 more (…) (2018).The Met Office Global Coupled Model 3.0 and 3.1 (GC3.0 and GC3.1) Configurations. Journal of Advances in Modeling Earth Systems,10(2) 357-380 |
| Hill, P.G., Allan, R.P., Chiu, J.C. and 2 more (…) (2018).Quantifying the contribution of different cloud types to the radiation budget in southern West Africa. Journal of Climate,31(13) 5273-5291 |
| Wilcox, L.J., Yiou, P., Hauser, M. and 7 more (…) (2018).Multiple perspectives on the attribution of the extreme European summer of 2012 to climate change. Climate Dynamics,50(9-10) 3537-3555 |
| Qian, C., Wang, J., Dong, S. and 7 more (…) (2018).23. Human influence on the record-breaking cold event in January of 2016 in Eastern China. Bulletin of the American Meteorological Society,99(1) S118-S122 |
| Regayre, L.A., Johnson, J.S., Yoshioka, M. and 6 more (…) (2018).Aerosol and physical atmosphere model parameters are both important sources of uncertainty in aerosol ERF. Atmospheric Chemistry and Physics,18(13) 9975-10006 |
| Collins, W.J., Webber, C.P., Cox, P.M. and 8 more (…) (2018).Increased importance of methane reduction for a 1.5 degree target. Environmental Research Letters,13(5) |
| Sparrow, S., Su, Q., Tian, F. and 9 more (…) (2018).Attributing human influence on the July 2017 Chinese heatwave: The influence of sea-surface temperatures. Environmental Research Letters,13(11) |
| Baker, L.H., Shaffrey, L.C., Scaife, A.A. (2018).Improved seasonal prediction of UK regional precipitation using atmospheric circulation. International Journal of Climatology,38e437-e453 |
| Ryder, C.L., Marenco, F., Brooke, J.K. and 17 more (…) (2018).Coarse-mode mineral dust size distributions, composition and optical properties from AER-D aircraft measurements over the tropical eastern Atlantic. Atmospheric Chemistry and Physics,18(23) 17225-17257 |
| Schmidt, A., Mills, M.J., Ghan, S. and 10 more (…) (2018).Volcanic Radiative Forcing From 1979 to 2015. Journal of Geophysical Research: Atmospheres,123(22) 12-508 |
| Balaji, V., Taylor, K.E., Juckes, M. and 17 more (…) (2018).Requirements for a global data infrastructure in support of cmip6. Geoscientific Model Development,11(9) 3659-3680 |
| Goelzer, H., Nowicki, S., Edwards, T. and 28 more (…) (2018).Design and results of the ice sheet model initialisation initMIP-Greenland: An ISMIP6 intercomparison. Cryosphere,12(4) 1433-1460 |