Quantification of meteorological drought risks between 1.5 °C and 4 °C of global warming in six countries
暂无分享,去创建一个
R. Warren | T. Osborn | J. Price | D. V. van Vuuren | C. Wallace | Nicole Forstenhäusler | Rhosanna Jenkins
[1] Dai Yamazaki,et al. Quantification of impacts between 1.5 and 4 °C of global warming on flooding risks in six countries , 2022, Climatic Change.
[2] Corinne Le Quéré,et al. Climate Change 2013: The Physical Science Basis , 2013 .
[3] R. Warren,et al. Economic impacts of climate-induced crop yield changes: evidence from agri-food industries in six countries , 2021, Climatic Change.
[4] B. M. Dodamani,et al. Comparison of Meteorological Drought Indices for Different Climatic Regions of an Indian River Basin , 2019, Asia-Pacific Journal of Atmospheric Sciences.
[5] V. Mishra,et al. Impact of climate change on drought frequency over India , 2018 .
[6] M. Jain,et al. Investigation of multi-model spatiotemporal mesoscale drought projections over India under climate change scenario , 2018, Journal of Hydrology.
[7] M. Khadr,et al. Drought analysis in the Eastern Nile basin using the standardized precipitation index , 2018, Environmental Science and Pollution Research.
[8] T. Osborn,et al. Performance of Pattern-Scaled Climate Projections under High-End Warming. Part I: Surface Air Temperature over Land , 2018, Journal of Climate.
[9] B. Abiodun,et al. Impacts of climate change on hydro-meteorological drought over the Volta Basin, West Africa , 2017 .
[10] J. Marengo,et al. Drought in Northeast Brazil—past, present, and future , 2017, Theoretical and Applied Climatology.
[11] J. Kimball,et al. A Global Gridded Dataset of GRACE Drought Severity Index for 2002–14: Comparison with PDSI and SPEI and a Case Study of the Australia Millennium Drought , 2017 .
[12] J. Rogelj,et al. Characterizing half‐a‐degree difference: a review of methods for identifying regional climate responses to global warming targets , 2017 .
[13] Brian C. O'Neill,et al. Spatially explicit global population scenarios consistent with the Shared Socioeconomic Pathways , 2016 .
[14] O. Penalba,et al. Regional aspects of future precipitation and meteorological drought characteristics over Southern South America projected by a CMIP5 multi‐model ensemble , 2016 .
[15] Ian Harris,et al. Pattern scaling using ClimGen: monthly-resolution future climate scenarios including changes in the variability of precipitation , 2016, Climatic Change.
[16] Qiuhong Tang,et al. Climate change impacts on meteorological, agricultural and hydrological droughts in China , 2015 .
[17] D. Vuuren,et al. Integrated Assessment of Global Environmental Change with IMAGE 3.0 : Model description and policy applications , 2014 .
[18] Lin Wang,et al. A CMIP5 multimodel projection of future temperature, precipitation, and climatological drought in China , 2014 .
[19] P. Jones,et al. Updated high‐resolution grids of monthly climatic observations – the CRU TS3.10 Dataset , 2014 .
[20] Hao Zhang,et al. Modelling impact of agro-drought on grain production in China , 2014 .
[21] Wen Zhou,et al. Assessment of future drought in Southwest China based on CMIP5 multimodel projections , 2014, Advances in Atmospheric Sciences.
[22] Claudia Tebaldi,et al. Pattern scaling: Its strengths and limitations, and an update on the latest model simulations , 2014, Climatic Change.
[23] P. Shi,et al. Analysis of dry/wet conditions using the standardized precipitation index and its potential usefulness for drought/flood monitoring in Hunan Province, China , 2013, Stochastic Environmental Research and Risk Assessment.
[24] Mallenahalli Naresh Kumar,et al. Spatiotemporal analysis of meteorological drought variability in the Indian region using standardized precipitation index , 2012, 1509.04462.
[25] Lindsay C. Stringer,et al. Mapping the vulnerability of crop production to drought in Ghana using rainfall, yield and socioeconomic data , 2012 .
[26] S. Vicente‐Serrano,et al. A Multiscalar Drought Index Sensitive to Global Warming: The Standardized Precipitation Evapotranspiration Index , 2009 .
[27] Luc Feyen,et al. Impact of global warming on streamflow drought in Europe , 2009 .
[28] Chang‐Hoi Ho,et al. Keeping global warming within 1.5 °C constrains emergence of aridification , 2018, Nature Climate Change.