利用蒸发抑制减少全球气候模式中的热带气旋活动

IF 3.4 2区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES
Gabriel Rios, Gabriel Vecchi, Wenchang Yang
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引用次数: 0

摘要

没有热带气旋的世界会是什么样子?虽然这样一个世界是不现实的,但解决这个问题将揭示热带气旋(tc)在调节气候系统中的作用。在这项研究中,我们开始通过引入一种新的算法来解决这个问题,该算法通过在检测到类似TC条件的网格点抑制风致表面热交换(WISHE)来降低允许TC的全球气候模型(GCMs)中的TC活动。该算法,缩写为“SWISHE”,在NOAA地球物理流体动力学实验室开发的一套GCM模拟中实现,并与无扰动的控制模拟套件进行了比较。与对照模拟相比,SWISHE的应用使模型平均TC频率减少了44%,飓风强度的TC减少了约90%。对TCs的综合分析表明,SWISHE模拟中的TCs较弱,10米水平风速峰值减少了3.9 m s - 1,最小海平面压力增加了4.7 hPa。复合分析证实SWISHE能有效抑制tc样条件下网格细胞的潜热通量。本文提出的结果旨在为建立理解tc对气候系统的高级影响的方法提供第一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Reducing Tropical Cyclone Activity in Global Climate Models by Evaporative Suppression

Reducing Tropical Cyclone Activity in Global Climate Models by Evaporative Suppression

What would a world without tropical cyclones look like? Although such a world is unrealistic, addressing this question would reveal the role tropical cyclones (TCs) play in modulating the climate system. In this study, we begin to address this question by introducing a novel algorithm for reducing TC activity in TC-permitting global climate models (GCMs) through suppression of wind-induced surface heat exchange (WISHE) at grid points where TC-like conditions are detected. This algorithm, abbreviated as “SWISHE,” was implemented in a suite of GCM simulations developed by NOAA's Geophysical Fluid Dynamics Laboratory and compared to a control suite of simulations with no perturbations. Application of SWISHE resulted in a model-mean 44% reduction of TC frequency compared to control simulations, with TCs of hurricane-strength reduced by approximately 90%. Aggregate analysis of TCs reveals that TCs in the SWISHE simulations are weaker, as peak 10-m horizontal wind speeds decrease by a model-mean of 3.9 m s−1 and minimum sea-level pressures increase by a model-mean of 4.7 hPa. Composite analysis is used to confirm that SWISHE effectively suppressed latent heat fluxes in grid cells with TC-like conditions. The results presented herein are intended to provide a first step in establishing methodology to understand upscale impacts of TCs on the climate system.

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来源期刊
Journal of Geophysical Research: Atmospheres
Journal of Geophysical Research: Atmospheres Earth and Planetary Sciences-Geophysics
CiteScore
7.30
自引率
11.40%
发文量
684
期刊介绍: JGR: Atmospheres publishes articles that advance and improve understanding of atmospheric properties and processes, including the interaction of the atmosphere with other components of the Earth system.
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