Increasing precipitation variability on daily-to-multiyear timescales in a warmer world
ID:13 View Protection:PUBLIC Updated Time:2021-07-27 16:39:15 Hits:1832 Oral Presentation

Start Time:2021-11-07 13:30(Asia/Shanghai)

Duration:15min

Session:S4 全球气候变化:过去和未来 » S411.7日(下午) 议题四

Abstract
The hydrological cycle intensifies under global warming with precipitation increases. How the increased precipitation varies temporally at a given location has vital implications for regional climates and ecosystem services. Based on ensemble climate model projections under a high-emission scenario, here we show that approximately two-thirds of land on Earth will face a “wetter and more variable” hydroclimate on daily to multiyear timescales. This means wider swings between wet and dry extremes. Such an amplification of precipitation variability is particularly prominent over climatologically wet regions, with percentage increases in variability more than twice those in mean precipitation. Thermodynamic effects, linked to increased moisture availability, increase precipitation variability uniformly everywhere. It is the dynamic effects (negative) linked to weakened circulation variability that make precipitation variability changes strongly region dependent. The increase in precipitation variability poses a new challenge to the climate resilience of infrastructures and human society.
 
Keywords
precipitation variability,thermodynamic,dynamic
Speaker
张文霞
副研究员 中国科学院大气物理研究所

Submission Author
张文霞 中国科学院大气物理研究所
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Important Date
  • Conference Date

    Nov 06

    2021

    to

    Nov 07

    2021

  • Oct 16 2021

    Draft paper submission deadline

  • Nov 25 2021

    Registration deadline

  • Dec 07 2021

    Contribution Submission Deadline

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中国气象学会
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