Search Results - "Zhu, Congwen"

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  1. 1

    Extreme Cold Wave over East Asia in January 2016: A Possible Response to the Larger Internal Atmospheric Variability Induced by Arctic Warming by Ma, Shuangmei, Zhu, Congwen

    Published in Journal of climate (01-02-2019)
    “…It is argued that anthropogenic global warming may decrease the global occurrence of cold waves. However, a historical record-extreme cold wave, popularly…”
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  2. 2

    Record‐Breaking Meiyu Rainfall Around the Yangtze River in 2020 Regulated by the Subseasonal Phase Transition of the North Atlantic Oscillation by Liu, Boqi, Yan, Yuhan, Zhu, Congwen, Ma, Shuangmei, Li, Jianying

    Published in Geophysical research letters (28-11-2020)
    “…In 2020, the Yangtze River (YR) suffered a long‐persisting Meiyu season. The accumulated rainfall broke its record since 1961 and caused severe flooding and…”
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  3. 3

    Combined Impacts of Warm Central Equatorial Pacific Sea Surface Temperatures and Anthropogenic Warming on the 2019 Severe Drought in East China by Ma, Shuangmei, Zhu, Congwen, Liu, Juan

    Published in Advances in atmospheric sciences (01-11-2020)
    “…A severe drought occurred in East China (EC) from August to October 2019 against a background of long-term significant warming and caused widespread impacts on…”
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  4. 4

    Regulation of the subseasonal variability of winter rainfall in South China by the diversity of El Niño Southern Oscillation by Guo, Li, Zhu, Congwen, Liu, Boqi

    Published in Climate dynamics (01-03-2021)
    “…Winter precipitation over South China tends to increase with enhancement of the 10–30-day intraseasonal oscillation (ISO) during El Niño Southern Oscillation…”
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  5. 5

    Subseasonal swing of cold and warm extremes between Eurasia and North America in winter of 2020/21: initiation and physical process by Ma, Shuangmei, Zhu, Congwen

    Published in Environmental research letters (01-01-2023)
    “…Abstract Eurasia and North America experienced a robust subseasonal swing of surface air temperature (SAT) extremes in 2020/21 winter, featuring severe cold…”
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  6. 6

    Tropical Pacific cold tongue mode triggered by enhanced warm pool convection due to global warming by Jiang, Ning, Zhu, Congwen

    Published in Environmental research letters (01-05-2020)
    “…A cold tongue mode (CTM) formed in the 1980s as a La Niña-like stepwise response to recent global warming; however, a consensus has not been reached on the…”
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  7. 7

    Enhanced Subseasonal Variability of Spring Temperature Over Eastern China in 2022: Initial Role of Extremely Heavy Arctic Sea Ice in Previous Winter by Xu, Wenshu, Ma, Shuangmei, Zhu, Congwen

    Published in Geophysical research letters (16-12-2023)
    “…In spring 2022, strong temperature whiplash events occurred in eastern China (EC), characterized by enhanced subseasonal variability in surface air temperature…”
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  8. 8

    Recent weakening of northern East Asian summer monsoon: A possible response to global warming by Zhu, Congwen, Wang, Bin, Qian, Weihong, Zhang, Bo

    Published in Geophysical research letters (01-05-2012)
    “…We investigate the possible causes of the weakening of northern East Asian summer monsoon (EASM) from 1954 to 2010. We found that the decreased intensity of…”
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  9. 9

    Seasonal Forecast of South China Sea Summer Monsoon Onset Disturbed by Cold Tongue La Niña in the Past Decade by Jiang, Ning, Zhu, Congwen

    Published in Advances in atmospheric sciences (2021)
    “…It has been suggested that a warm (cold) ENSO event in winter is mostly followed by a late (early) onset of the South China Sea (SCS) summer monsoon (SCSSM) in…”
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  10. 10

    Opposing Trends of Winter Cold Extremes over Eastern Eurasia and North America under Recent Arctic Warming by Ma, Shuangmei, Zhu, Congwen

    Published in Advances in atmospheric sciences (01-12-2020)
    “…Under recent Arctic warming, boreal winters have witnessed severe cold surges over both Eurasia and North America, bringing about serious social and economic…”
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  11. 11

    Extreme Cold Events in North America and Eurasia in November-December 2022: A Potential Vorticity Gradient Perspective by Yao, Yao, Zhuo, Wenqin, Gong, Zhaohui, Luo, Binhe, Luo, Dehai, Zheng, Fei, Zhong, Linhao, Huang, Fei, Ma, Shuangmei, Zhu, Congwen, Zhou, Tianjun

    Published in Advances in atmospheric sciences (01-06-2023)
    “…From 17 November to 27 December 2022, extremely cold snowstorms frequently swept across North America and Eurasia. Diagnostic analysis reveals that these…”
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  12. 12

    The cooperative impacts of the El Niño–Southern Oscillation and the Indian Ocean Dipole on the interannual variability of autumn rainfall in China by Xu, Kang, Zhu, Congwen, Wang, Weiqiang

    Published in International journal of climatology (30-03-2016)
    “…ABSTRACT The El Niño–Southern Oscillation (ENSO) and Indian Ocean Dipole (IOD) are high degree synergic air–sea interactions greatly affecting the interannual…”
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  13. 13

    Modulation of the cold tongue mode (CTM) in tropical cyclone genesis over the western North Pacific during 1975–2021 by Lin, Chunqiao, Fan, Lingli, Zhu, Congwen, Xu, Jianjun

    Published in Environmental research letters (01-04-2024)
    “…Abstract The cold tongue mode (CTM) in the tropical Pacific enhanced with the global warming in the recent decades. Here, we show that the change of oceanic…”
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  14. 14

    Two Types of Interannual Variability of South China Sea Summer Monsoon Onset Related to the SST Anomalies before and after 1993/94 by Liu, Boqi, Zhu, Congwen, Yuan, Yuan, Xu, Kang

    Published in Journal of climate (01-10-2016)
    “…An advance in the timing of the onset of the South China Sea (SCS) summer monsoon (SCSSM) during the period 1980–2014 can be detected after 1993/94. In the…”
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  15. 15

    Roles of the Tibetan Plateau vortices in the record Meiyu rainfall in 2020 by Li, Lun, Zhu, Congwen, Zhang, Renhe, Liu, Boqi

    Published in Atmospheric science letters (01-03-2021)
    “…Meiyu rainfall in June–July of 2020 hit the Yangtze‐Huaihe River basin, and the precipitation at lots of observational stations broke the records, inducing…”
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  16. 16

    Remote linkage of record-breaking U.S. Tornado outbreaks to the tropical cyclone in western North Pacific in December 2021 by Jiang, Ning, Liu, Boqi, Zhu, Congwen, Chen, Yanying

    Published in Environmental research letters (01-04-2023)
    “…Abstract The frequency of tornadoes usually peaks during spring to summer rather than winter in climatology. However, the United States (U.S.) experienced more…”
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  17. 17

    Triple-dip La Niña in 2020–23: understanding the role of the annual cycle in tropical Pacific SST by Jiang, Song, Zhu, Congwen, Hu, Zeng-Zhen, Jiang, Ning, Zheng, Fei

    Published in Environmental research letters (01-08-2023)
    “…Abstract The triple-dip La Niña in 2020–23 is characterized by persisting southeasterly wind anomalies over the tropical central and eastern Pacific. Our…”
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  18. 18

    Subseasonal processes of triple extreme heatwaves over the Yangtze River Valley in 2022 by Liu, Boqi, Zhu, Congwen, Ma, Shuangmei, Yan, Yuhan, Jiang, Ning

    Published in Weather and climate extremes (01-06-2023)
    “…Historical extreme heatwaves struck the Yangtze River Valley (YRV) in the boreal summer of 2022, severely impacting agricultural production, electricity…”
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  19. 19

    Roles of tropical SST patterns during two types of ENSO in modulating wintertime rainfall over southern China by Xu, Kang, Huang, Qing-Lan, Tam, Chi-Yung, Wang, Weiqiang, Chen, Sheng, Zhu, Congwen

    Published in Climate dynamics (01-01-2019)
    “…The impacts of the eastern-Pacific (EP) and central-Pacific (CP) El Niño-Southern Oscillation (ENSO) on the southern China wintertime rainfall (SCWR) have been…”
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  20. 20

    On the Divergent Evolution of ENSO After the Coastal El Niños in 2017 and 2023 by Tan, Wei, Hu, Zeng‐Zhen, McPhaden, Michael J., Zhu, Congwen, Li, Xiaofan, Liu, Yunyun

    Published in Geophysical research letters (16-05-2024)
    “…Coastal El Niño is an extreme situation of El Niño‐Southern Oscillation (ENSO) with sea surface temperature warming confined in the far‐eastern equatorial…”
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