Influence of Initial Cloud Droplet Number Concentration on Warm-Sector Rainstorm in the Sichuan Basin

IF 1.9 4区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS pure and applied geophysics Pub Date : 2024-11-14 DOI:10.1007/s00024-024-03599-6
Peiwen Zhang, Pengguo Zhao, Zhiwei Heng, Qing Zheng, Yong Feng, Xingwen Jiang
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Abstract

Warm-sector rainstorms (WSR) are among the main weather events that cause significant casualties in the Sichuan Basin (SCB). These events are challenging to predict accurately using numerical models, partly due to the locally high air pollution that complicates WSR microphysical and precipitation processes. Aerosols affect the initial cloud droplet number concentration (CDNC) directly, and the CDNC is a key parameter in microphysical schemes that directly influences precipitation prediction. However, how and to what extent the CDNC affects WSR predictions in the SCB remains unclear. In this study, sensitivity experiments were conducted using a cloud-resolving model to investigate how the CDNC affects WSRs in the SCB. The study showed that when the CDNC is high, warm rainfall is reduced, while the cold rainfall is increased, which changes with convection development. First, a higher initial CDNC inhibits warm rainfall during the initial stage of convection. Second, during convection development, a higher initial CDNC accelerates graupel growth and its transformation into rainwater. The cold rainfall process plays a dominant role in this process, leading to an increase in rainfall intensity. Finally, during the convection mature stage, the promoting effect of the CDNC on the cold rainfall process weakens, leading to a decreased rainfall intensity in the higher initial CDNC. In the “initial-development-mature” stage, a higher initial CDNC distinctly affects the precipitation intensity in the form of "suppression-promotion-suppression." The findings of this study contribute to the ability to anticipate the development of WSRs based on pollution conditions in the SCB.

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初始云滴数浓度对四川盆地暖区暴雨的影响
暖区暴雨是造成四川盆地重大人员伤亡的主要天气事件之一。这些事件很难使用数值模式进行准确预测,部分原因是局部高度空气污染使WSR微物理和降水过程复杂化。气溶胶直接影响初始云滴数浓度(CDNC),而CDNC是直接影响降水预报的微物理方案中的关键参数。然而,CDNC如何以及在多大程度上影响SCB的WSR预测仍不清楚。在这项研究中,使用云分辨模型进行了灵敏度实验,以研究CDNC如何影响SCB中的wrs。研究表明,当CDNC高时,暖降水减少,冷降水增加,且随对流发展而变化。首先,较高的初始CDNC抑制了对流初始阶段的暖降水。其次,在对流发展过程中,较高的初始CDNC加速了霰的生长和向雨水的转化。冷降水过程在这一过程中起主导作用,导致降雨强度增加。最后,在对流成熟阶段,CDNC对冷降水过程的促进作用减弱,导致初始CDNC较高的降水强度减小。在“初始-发育-成熟”阶段,较高的初始CDNC以“抑制-促进-抑制”的形式明显影响降水强度。这项研究的结果有助于根据南海的污染情况预测水rs的发展。
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来源期刊
pure and applied geophysics
pure and applied geophysics 地学-地球化学与地球物理
CiteScore
4.20
自引率
5.00%
发文量
240
审稿时长
9.8 months
期刊介绍: pure and applied geophysics (pageoph), a continuation of the journal "Geofisica pura e applicata", publishes original scientific contributions in the fields of solid Earth, atmospheric and oceanic sciences. Regular and special issues feature thought-provoking reports on active areas of current research and state-of-the-art surveys. Long running journal, founded in 1939 as Geofisica pura e applicata Publishes peer-reviewed original scientific contributions and state-of-the-art surveys in solid earth and atmospheric sciences Features thought-provoking reports on active areas of current research and is a major source for publications on tsunami research Coverage extends to research topics in oceanic sciences See Instructions for Authors on the right hand side.
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