黑潮侵入吕宋海峡对局地大气的影响

Zhewen Zheng, Mingrui Weng, W. Fang
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引用次数: 0

摘要

黑潮是北太平洋的西部边界流。黑潮通过吕宋海峡侵入南海北部。侵入的黑潮常在吕宋海峡以北形成反气旋环流。以往的研究证实了海表温度对局地大气影响的共变性。本文利用卫星资料和数值模拟方法,研究了进入吕宋海峡北部的黑潮入侵(KI)对当地大气的影响。首先,卫星资料分析显示,在11月至4月的东风期间,KI使台湾西南部海表温度升高,风速和雨量增强。此外,基于再分析资料的大气垂直速度(w),结果表明,局地海温升高(与KI相关)通过增强低层大气垂直运动,减少垂直风切变,引发风速和降雨增强,导致垂直混合加剧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impacts of the Kuroshio intrusion entering the Luzon Strait on the local atmosphere by satellite observations
The Kuroshio is the western boundary current of the North Pacific Ocean. Kuroshio intrudes into the north of South China Sea (SCS) through the Luzon Strait. The intruded Kuroshio often forms an anticyclonic current loop north of the Luzon Strait. Previous studies confirmed co-variability of sea surface temperature (SST) influence on the local atmosphere. In this study, by using satellite data and numerical modeling, the impact of Kuroshio intrusion (KI) entering north Luzon Strait on the local atmosphere is investigated. First, satellite data analysis shows that KI causing increased local sea surface temperature and enhanced intensity of wind speed and rainfall off southwestern Taiwan during easterly winds (from November to April). Moreover, based on vertical velocity (w) of atmosphere derived from reanalysis data, the result shows that higher local SST (associated with KI) triggering enhanced wind speed and rainfall by enhancing lower atmosphere vertical motion and thus decreasing vertical wind shear, which leads to intensify of vertical mixing.
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