Development of a super cloud microphysics scheme
编号:509 访问权限:仅限参会人 更新:2026-04-01 09:40:17 浏览:6次 主题报告

报告开始:2026年04月27日 08:30(Asia/Shanghai)

报告时间:20min

所在会场:[S2-14] 专题2.14 人工影响天气 [F20] 专题2.14 人工影响天气

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摘要
Cloud and precipitation processes remain among the largest sources of uncertainties in weather and climate modelling, and considerable attention has been paid to improving the representation of the cloud and precipitation processes in numerical models in the last several decades. In this study, we develop a weighted ensemble (named EN) scheme by employing several widely used autoconversion (ATC) schemes to represent the ATC from cloud water to rainwater. One unique feature of the EN approach is that the ATC rate is a weighted mean value based on the calculations from several ATC schemes within a microphysics scheme with a negligible increase in computation cost. The EN scheme is compared with the several commonly used ATC schemes by performing real case simulations. In terms of accumulated rainfall and extreme hourly rainfall rate, the EN scheme provides better simulations than by using the single Berry–Reinhardt scheme, which was originally used in the Thompson scheme. It is worth emphasizing, in the present study, that we only pay attention to the ATC process from cloud water into rainwater with the purpose of improving the modelling of the extreme rainfall events over southern China. Actually, any (source and sink) term in a cloud microphysics scheme can be treated with the same approach. The ensemble method proposed herein appears to have important implications for developing cloud microphysics schemes in numerical models, especially for the models with variable grid resolution, which would be expected to improve the representation of cloud microphysical processes in the weather and climate models.
关键词
Cloud microphysics
报告人
尹金方
研究员 中国气象科学研究院

稿件作者
尹金方 中国气象科学研究院
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重要日期
  • 会议日期

    04月25日

    2026

    04月29日

    2026

  • 04月07日 2026

    初稿截稿日期

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未来大气科学论坛理事会
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河海大学海洋学院
南京大学南京赫尔辛基大气与地球系统科学学院
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