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Summer compound heatwaves over China: projected changes at different global warming levels and related physical processes.
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- Climate Dynamics, 2024, v. 62, n. 3, p. 1887, doi. 10.1007/s00382-023-07001-4
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- Article
Anthropogenic Influence on Decadal Changes in Concurrent Hot and Dry Events over China around the Mid-1990s.
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- Advances in Atmospheric Sciences, 2024, v. 41, n. 2, p. 233, doi. 10.1007/s00376-023-2319-z
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Anthropogenic Influences on Extremely Persistent Seasonal Precipitation in Southern China during May–June 2022.
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- Bulletin of the American Meteorological Society, 2024, v. 105, n. 2, p. E425, doi. 10.1175/BAMS-D-23-0137.1
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Effect of global and regional SST biases on the East Asian Summer Monsoon in the MetUM GA7 and GC3 configurations.
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- Climate Dynamics, 2024, v. 62, n. 2, p. 1535, doi. 10.1007/s00382-023-06954-w
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- Article
Enhanced Impacts of ENSO on the Southeast Asian Summer Monsoon Under Global Warming and Associated Mechanisms.
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- Geophysical Research Letters, 2024, v. 51, n. 2, p. 1, doi. 10.1029/2023GL106437
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Causes of Diverse Impacts of ENSO on the Southeast Asian Summer Monsoon among CMIP6 Models.
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- Journal of Climate, 2024, v. 37, n. 2, p. 419, doi. 10.1175/JCLI-D-23-0303.1
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A comparative analysis of the attribution of extreme summer precipitation in south and north parts of the East China monsoon region—with the year 2020 as an example.
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- International Journal of Climatology, 2023, v. 43, n. 15, p. 7199, doi. 10.1002/joc.8260
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Relationship between the AMOC and the Multidecadal Variability of the Midlatitude Southern Indian Ocean.
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- Journal of Climate, 2023, v. 36, n. 24, p. 8761, doi. 10.1175/JCLI-D-23-0198.1
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- Article
Anthropogenic Influence on 2022 Extreme January–February Precipitation in Southern China.
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- Bulletin of the American Meteorological Society, 2023, v. 104, n. 11, p. E1935, doi. 10.1175/BAMS-D-23-0136.1
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Decadal Modulation of the Relationship Between Tropical Southern Atlantic SST and Subsequent ENSO by Pacific Decadal Oscillation.
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- Geophysical Research Letters, 2023, v. 50, n. 20, p. 1, doi. 10.1029/2023GL104878
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- Article
Anthropogenic impacts on changes in summer extreme precipitation over China during 1961–2014: roles of greenhouse gases and anthropogenic aerosols.
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- Climate Dynamics, 2023, v. 60, n. 9/10, p. 2633, doi. 10.1007/s00382-022-06453-4
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- Article
Decadal trends in surface solar radiation and cloud cover over the North Atlantic sector during the last four decades: drivers and physical processes.
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- Climate Dynamics, 2023, v. 60, n. 7/8, p. 2533, doi. 10.1007/s00382-022-06438-3
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Human Contribution to the Risk of 2021 Northwestern Pacific Concurrent Marine and Terrestrial Summer Heat.
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- Bulletin of the American Meteorological Society, 2023, v. 104, n. 3, p. E673, doi. 10.1175/BAMS-D-22-0238.1
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Tropical Anomalies Associated with the Interannual Variability of the Cross-Equatorial Flows over the Maritime Continent in Boreal Summer.
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- Journal of Climate, 2022, v. 35, n. 17, p. 5591, doi. 10.1175/JCLI-D-21-0764.1
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Physical processes of summer extreme rainfall interannual variability in eastern China: Part I—observational analysis.
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- Climate Dynamics, 2022, v. 59, n. 1/2, p. 201, doi. 10.1007/s00382-021-06123-x
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Physical processes of summer extreme rainfall interannual variability in Eastern China—part II: evaluation of CMIP6 models.
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- Climate Dynamics, 2022, v. 59, n. 1/2, p. 455, doi. 10.1007/s00382-022-06137-z
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Drivers and physical processes of drought events over the State of São Paulo, Brazil.
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- Climate Dynamics, 2022, v. 58, n. 11/12, p. 3105, doi. 10.1007/s00382-021-06091-2
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Recent decadal weakening of the summer Eurasian westerly jet attributable to anthropogenic aerosol emissions.
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- Nature Communications, 2022, v. 13, n. 1, p. 1, doi. 10.1038/s41467-022-28816-5
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Attribution of April 2020 Exceptional Cold Spell over Northeast China.
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- Bulletin of the American Meteorological Society, 2022, v. 103, n. 3, p. S61, doi. 10.1175/BAMS-D-21-0175.1
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- Article
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.
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- Bulletin of the American Meteorological Society, 2022, v. 103, n. 3, p. S83, doi. 10.1175/BAMS-D-21-0167.1
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Recent Trends in Summer Atmospheric Circulation in the North Atlantic/European Region: Is There a Role for Anthropogenic Aerosols?
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- Journal of Climate, 2021, v. 34, n. 16, p. 6777, doi. 10.1175/JCLI-D-20-0665.1
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Climatology and physical mechanisms of the tropospheric warm cores over the Tibetan Plateau and its vicinity.
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- Climate Dynamics, 2021, v. 57, n. 3/4, p. 953, doi. 10.1007/s00382-021-05749-1
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Interdecadal weakening of the cross-equatorial flows over the Maritime Continent during the boreal summer in the mid-1990s: drivers and physical processes.
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- Climate Dynamics, 2021, v. 57, n. 1/2, p. 55, doi. 10.1007/s00382-021-05692-1
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Projected near-term changes in temperature extremes over China in the mid-twenty-first century and underlying physical processes.
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- Climate Dynamics, 2021, v. 56, n. 5/6, p. 1879, doi. 10.1007/s00382-020-05566-y
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- Article
The Driving Processes of Concurrent Hot and Dry Extreme Events in China.
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- Journal of Climate, 2021, v. 34, n. 5, p. 1809, doi. 10.1175/JCLI-D-19-0760.1
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- Article
Was the Extended Rainy Winter 2018/19 over the Middle and Lower Reaches of the Yangtze River Driven by Anthropogenic Forcing?
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- Bulletin of the American Meteorological Society, 2021, v. 102, n. 1, p. S67, doi. 10.1175/BAMS-D-20-0127.1
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Anthropogenic Influence on 2019 May--June Extremely Low Precipitation in Southwestern China.
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- Bulletin of the American Meteorological Society, 2021, v. 102, n. 1, p. S97, doi. 10.1175/BAMS-D-20-0128.1
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Anthropogenic Influences on Heavy Precipitation during the 2019 Extremely Wet Rainy Season in Southern China.
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- Bulletin of the American Meteorological Society, 2021, v. 102, n. 1, p. S103, doi. 10.1175/BAMS-D-20-0135.1
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Role of the Atlantic multidecadal variability in modulating East Asian climate.
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- Climate Dynamics, 2021, v. 56, n. 1/2, p. 381, doi. 10.1007/s00382-020-05477-y
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Forced Decadal Changes in Summer Precipitation Characteristics over China: The Roles of Greenhouse Gases and Anthropogenic Aerosols.
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- Journal of Meteorological Research, 2020, v. 34, n. 6, p. 1226, doi. 10.1007/s13351-020-0060-4
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Future evolution of the Sahel precipitation zonal contrast in CESM1.
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- Climate Dynamics, 2020, v. 55, n. 9/10, p. 2801, doi. 10.1007/s00382-020-05417-w
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Attribution of 2012 extreme climate events: does air-sea interaction matter?
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- Climate Dynamics, 2020, v. 55, n. 5/6, p. 1225, doi. 10.1007/s00382-020-05321-3
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Development, Amplification, and Decay of Atlantic/European Summer Weather Patterns Linked to Spring North Atlantic Sea Surface Temperatures.
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- Journal of Climate, 2020, v. 33, n. 14, p. 5939, doi. 10.1175/JCLI-D-19-0613.1
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The dynamic and thermodynamic processes dominating the reduction of global land monsoon precipitation driven by anthropogenic aerosols emission.
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- SCIENCE CHINA Earth Sciences, 2020, v. 63, n. 7, p. 919, doi. 10.1007/s11430-019-9613-9
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Processes shaping the spatial pattern and seasonality of the surface air temperature response to anthropogenic forcing.
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- Climate Dynamics, 2020, v. 54, n. 9/10, p. 3959, doi. 10.1007/s00382-020-05211-8
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The effects of anthropogenic greenhouse gases and aerosols on the inter-decadal change of the South China Sea summer monsoon in the late twentieth century.
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- Climate Dynamics, 2020, v. 54, n. 7/8, p. 3339, doi. 10.1007/s00382-020-05175-9
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- Article
Anthropogenic Influence on 2018 Summer Persistent Heavy Rainfall in Central Western China.
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- Bulletin of the American Meteorological Society, 2020, v. 101, n. 1, p. S65, doi. 10.1175/BAMS-D-19-0147.1
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- Article
Anthropogenic Influences on the Persistent Night-Time Heat Wave in Summer 2018 over Northeast China.
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- Bulletin of the American Meteorological Society, 2020, v. 101, n. 1, p. S83, doi. 10.1175/BAMS-D-19-0152.1
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- Article
Attribution of Recent Trends in Temperature Extremes over China: Role of Changes in Anthropogenic Aerosol Emissions over Asia.
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- Journal of Climate, 2019, v. 32, n. 21, p. 7539, doi. 10.1175/JCLI-D-18-0777.1
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Projected near-term changes in three types of heat waves over China under RCP4.5.
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- Climate Dynamics, 2019, v. 53, n. 7/8, p. 3751, doi. 10.1007/s00382-019-04743-y
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Impact of air–sea coupling on Northern Hemisphere summer climate and the monsoon–desert teleconnection.
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- Climate Dynamics, 2019, v. 53, n. 7/8, p. 5063, doi. 10.1007/s00382-019-04846-6
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Impacts of recent decadal changes in Asian aerosols on the East Asian summer monsoon: roles of aerosol–radiation and aerosol–cloud interactions.
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- Climate Dynamics, 2019, v. 53, n. 5/6, p. 3235, doi. 10.1007/s00382-019-04698-0
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Recent Decadal Changes in Heat Waves over China: Drivers and Mechanisms.
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- Journal of Climate, 2019, v. 32, n. 14, p. 4215, doi. 10.1175/JCLI-D-18-0479.1
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Continental drift, plateau uplift, and the evolutions of monsoon and arid regions in Asia, Africa, and Australia during the Cenozoic.
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- SCIENCE CHINA Earth Sciences, 2019, v. 62, n. 7, p. 1053, doi. 10.1007/s11430-018-9337-8
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Predicting the seasonal evolution of southern African summer precipitation in the DePreSys3 prediction system.
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- Climate Dynamics, 2019, v. 52, n. 11, p. 6491, doi. 10.1007/s00382-018-4526-3
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Anthropogenic impacts on recent decadal change in temperature extremes over China: relative roles of greenhouse gases and anthropogenic aerosols.
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- Climate Dynamics, 2019, v. 52, n. 5/6, p. 3643, doi. 10.1007/s00382-018-4342-9
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- Article
Effect of the Atlantic Multidecadal Variability on the Global Monsoon.
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- Geophysical Research Letters, 2019, v. 46, n. 3, p. 1765, doi. 10.1029/2018GL080903
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Anthropogenically Forced Decadal Change of South Asian Summer Monsoon Across the Mid‐1990s.
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- Journal of Geophysical Research. Atmospheres, 2019, v. 124, n. 2, p. 806, doi. 10.1029/2018JD029195
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Contribution of Anthropogenic Climate Change to April–May 2017 Heavy Precipitation over the Uruguay River Basin.
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- Bulletin of the American Meteorological Society, 2019, v. 100, n. 1, p. S37, doi. 10.1175/BAMS-D-18-0102.1
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Anthropogenic Warming has Substantially Increased the Likelihood of July 2017–Like Heat Waves over Central Eastern China.
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- Bulletin of the American Meteorological Society, 2019, v. 100, n. 1, p. S91, doi. 10.1175/BAMS-D-18-0087.1
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