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DOI | 10.1175/JAS-D-20-0092.1 |
Frictionally Induced Feedback in a Reduced Dynamical Model of Tropical Cyclone Intensification | |
Kieu, Chanh; Rotunno, Richard; Wang, Quan | |
2020-11-01 | |
发表期刊 | Journal of the Atmospheric Sciences
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出版年 | 2020 |
英文摘要 | This study examines the role of frictional feedback in the atmospheric boundary layer during tropical cyclone (TC) development. Using a reduced model of TC dynamics, it is shown that a feedback between frictional convergence and convective heating in the absence of slantwise moist neutrality is capable of producing a stable maximum-intensity limit, even without surface fluxes. However, the efficiency of this frictional-convergence feedback depends crucially on how effectively boundary layer moisture convergence is converted into convective heating, which decreases rapidly as the TC inner core approaches a state of moist neutrality. This decreasing efficiency during TC intensification explains why the effect of the frictional-convergence feedback is generally small compared to that of the wind-induced surface heat exchange (WISHE) feedback under the strict conditions of slantwise moist neutrality. Examination of the reduced TC model with a constant-heating source reveals that TC intensification is not peculiar to any specific feedback mechanism but, rather, is a direct consequence of the inward advection of absolute angular momentum, regardless of feedback mechanism. |
领域 | 地球科学 ; 气候变化 |
URL | 查看原文 |
引用统计 | |
文献类型 | 期刊论文 |
条目标识符 | http://119.78.100.173/C666/handle/2XK7JSWQ/300191 |
专题 | 地球科学 气候变化 |
推荐引用方式 GB/T 7714 | Kieu, Chanh,Rotunno, Richard,Wang, Quan. Frictionally Induced Feedback in a Reduced Dynamical Model of Tropical Cyclone Intensification[J]. Journal of the Atmospheric Sciences,2020. |
APA | Kieu, Chanh,Rotunno, Richard,&Wang, Quan.(2020).Frictionally Induced Feedback in a Reduced Dynamical Model of Tropical Cyclone Intensification.Journal of the Atmospheric Sciences. |
MLA | Kieu, Chanh,et al."Frictionally Induced Feedback in a Reduced Dynamical Model of Tropical Cyclone Intensification".Journal of the Atmospheric Sciences (2020). |
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