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  2. 海洋科學與資源學院
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請用此 Handle URI 來引用此文件: http://scholars.ntou.edu.tw/handle/123456789/17296
Title: Impacts of the Kuroshio Intrusion through the Luzon Strait on the Local Precipitation Anomaly
Authors: Fang, Wen-Pin
Wu, Ding-Rong
Zheng, Zhe-Wen
Gopalakrishnan, Ganesh
Ho, Chung-Ru 
Zheng, Quanan
Huang, Chen-Fen
Ho, Hua
Weng, Min-Chuan
Keywords: SEA-SURFACE TEMPERATURE;EASTERN EQUATORIAL PACIFIC;TROPICAL INSTABILITY WAVES;WINDS;CONVERGENCE;EDDIES;BREEZE;EDDY
Issue Date: Mar-2021
Publisher: MDPI
Journal Volume: 13
Journal Issue: 6
Source: REMOTE SENS-BASEL
Abstract: 
The Kuroshio Current has its origin in the northwestern Pacific, flowing northward to the east of Taiwan and the northern part of Luzon Island. As the Kuroshio Current flows northward, it quasi-periodically intrudes (hereafter referred to as Kuroshio intrusion (KI)) into the northern South China Sea (SCS) basin through the Luzon Strait. Despite the complex generation mechanisms of KI, the purpose of this study is to improve our understanding of the effects of KI through the Luzon Strait on the regional atmospheric and weather variations. Long-term multiple satellite observations, including absolute dynamic topography, absolute geostrophic currents, sea surface winds by ASCAT, multi-scale ultra-high resolution sea surface temperature (MURSST) level-four analysis, and research-quality three-hourly TRMM multi-satellite precipitation analysis (TMPA), was used to systematically examine the aforementioned scientific problem. Analysis indicates that the KI is interlinked with the consequential anomalous precipitation off southwestern Taiwan. This anomalous precipitation would lead to similar to 560 million tons of freshwater influx during each KI event. Subsequently, independent moisture budget analysis suggests that moisture, mainly from vertical advection, is the possible source of the precipitation anomaly. Additionally, a bulk formula analysis was applied to understand how KI can trigger the precipitation anomaly through vertical advection of moisture without causing an evident change in the low-level flows. These new research findings might reconcile the divisiveness on why winds are not showing a synchronous response during the KI and consequential anomalous precipitation events.
URI: http://scholars.ntou.edu.tw/handle/123456789/17296
ISSN: 2072-4292
DOI: 10.3390/rs13061113
Appears in Collections:13 CLIMATE ACTION
海洋環境資訊系

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