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Heat wave trends in Southeast Asia during 1979-2018: The impact of humidity

机译:东南亚的热浪趋势在1979 - 2018年期间:湿度的影响

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摘要

In tropics, especially Southeast Asia (SEA), heat wave (HW) research is seriously scarce although several global studies have projected this region to be greatly susceptible to increasing HW events under climate change scenarios. Using the recently released ERA5 reanalysis data, we find that in most parts of SEA, HWs are becoming more frequent, longer-lasting and stronger, no matter using dry-bulb or wet-bulb temperatures to define HW. The increasing trends of HW characteristics based on minimum temperatures are larger than those based on maximum temperatures, suggesting an alarming situation of anomalously warm night. HW characteristics based on wet-bulb temperatures show higher increasing rates in the IndoChina Peninsula and Malay Peninsula than those based on dry-bulb temperatures. Nearly all HW characteristics are significantly correlated with El Nino index, but Indian Ocean Dipole only significantly impacts HW characteristics based on wet-bulb temperature in Java. Results derived from other reanalysis products exhibit general agreement with those from ERA5, lending support to the findings reported herein. This study highlights the different role of humidity in changing HW trends in different regions of SEA, and calls for attention to the associated risk of increasing nighttime temperatures during HWs.
机译:在热带地区,特别是东南亚(海),热浪(HW)研究严重稀缺,尽管有几项全球研究已经预测了该地区,非常容易受到气候变化情景下的提高HW事件的影响。使用最近发布的ERA5再分析数据,我们发现,在大多数海洋中,HWS正在变得更加频繁,更持久,更强大,无论使用干灯泡还是湿灯泡温度定义HW。基于最小温度的HW特性的增加趋势大于基于最大温度的HW特性,表明异常温暖的夜晚的令人惊叹的情况。基于湿灯泡温度的HW特性显示出吲哚载体半岛和马来半岛的速率高于基于干灯泡温度的速率。几乎所有HW特性与El Nino指数显着相关,但印度洋偶极子仅显着影响Java中湿灯泡温度的HW特性。结果来自其他再分析产品的结果表现出与ERA5的一般协议,向本文报告的研究结果贷款支持。本研究突出了湿度在不同地区改变HW趋势中的不同作用,并呼吁关注HW期间增加夜间温度的相关风险。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第15期|137664.1-137664.13|共13页
  • 作者

    Xian-Xiang Li;

  • 作者单位

    School of Atmospheric Sciences Sun Yat-sen University China Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai) China Guangdong Province Key Laboratory for Climate Change and Natural Disaster Studies Sun Yat-sen University China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Climate extreme; Heat stress; Wet-bulb temperature; Reanalysis; ERA5;

    机译:气候极端;热应激;湿灯泡温度;重新分析;ERA5.;

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