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干旱大陆环境中的冷池与陆地表面相互作用

Cold Pool-Land Surface Interactions in a Dry Continental Environment.

作者信息

Grant Leah D, van den Heever Susan C

机构信息

Department of Atmospheric Science Colorado State University Fort Collins CO USA.

出版信息

J Adv Model Earth Syst. 2018 Jul;10(7):1513-1526. doi: 10.1029/2018MS001323. Epub 2018 Jul 8.

Abstract

Cold pools influence convective initiation and organization, dust lofting, and boundary layer properties, but little is known about their interactions with the land surface, particularly in dry continental environments. In this study, two-way cold pool-land surface interactions are investigated using high-resolution idealized simulations of an isolated, transient cold pool evolving in a dry convective boundary layer. Results using a fully interactive land surface demonstrate that sensible heat fluxes are suppressed at the center of the cold pool but enhanced at the edge due to the spatial patterns of land surface cooling and the air temperature and wind speed perturbations. This leads to cold pool dissipation from the edge inward. Latent heat fluxes are primarily suppressed within the cold pool, and the magnitude of this suppression is controlled by competition between atmospheric and land surface effects. By comparing the fully interactive land surface simulation to a simulation with imposed surface fluxes, the land surface-cold pool feedbacks are shown to reduce the cold pool lifetime, extent, and intensity by up to 50% and influence the pattern of boundary layer turbulent kinetic energy recovery, which have significant implications for cold pool-induced convective initiation.

摘要

冷池影响对流的触发与组织、沙尘扬起以及边界层特性,但人们对它们与陆地表面的相互作用知之甚少,尤其是在干燥的大陆环境中。在本研究中,利用在干燥对流边界层中演化的孤立瞬态冷池的高分辨率理想化模拟,对冷池与陆地表面的双向相互作用进行了研究。使用完全交互式陆地表面的结果表明,由于陆地表面冷却的空间模式以及气温和风速扰动,冷池中心的感热通量受到抑制,但边缘处的感热通量增强。这导致冷池从边缘向内消散。潜热通量主要在冷池内受到抑制,这种抑制的程度由大气和陆地表面效应之间的竞争控制。通过将完全交互式陆地表面模拟与具有规定表面通量的模拟进行比较,结果表明陆地表面 - 冷池反馈可使冷池寿命、范围和强度减少多达50%,并影响边界层湍动能恢复模式,这对冷池引发的对流触发具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b24/6473549/d731d4ca68d8/JAME-10-1513-g001.jpg

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