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  1. National Taiwan Ocean University Research Hub

Effects of Environmental Changes on Ocean Circulation in the East China Sea

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基本資料

Project title
Effects of Environmental Changes on Ocean Circulation in the East China Sea
Code/計畫編號
NSC98-2611-M019-020
Translated Name/計畫中文名
東海長期觀測與研究(IV)---子計畫---海洋環流與環境變遷數值模式之發展
 
Project Coordinator/計畫主持人
Hung-Jen Lee
Funding Organization/主管機關
National Science and Technology Council
 
Co-Investigator(s)/共同執行人
劉康克
 
Department/Unit
Department of Marine Environmental Informatics
Website
https://www.grb.gov.tw/search/planDetail?id=1892429
Year
2009
 
Start date/計畫起
01-08-2009
Expected Completion/計畫迄
31-07-2010
 
Bugetid/研究經費
919千元
 
ResearchField/研究領域
海洋科學
 

Description

Abstract
"一個西北太平洋解析度1/6o 度的三海(東海,黃海及渤海)系統模式,被使用來研究 長江水量減少時對東海及周邊海域海洋水體環流的可能衝擊。對於可利用性的延伸, 物理環流模式大部份是由月平均風場及流量進/出並且透過模式開口邊界來驅動模式。 依據季節的改變,夏季時長江的水舌擴散分佈在長江口的東北方,冬季時將隨著中國 沿岸流(China Coastal Current)到南方。三海模式也曾經提供給生地化模式去研究東海的 生態問題,經過與實測資料比較,物理模式結果顯示夏季時長江的水舌擴散分佈在長 江口的東北方,但由實測資料顯示長江的水舌擴散分佈是時常往東或偶爾往南。可以 想像地模式的長江的水舌分佈較實測資料偏北,除了長江的水舌擴散分佈外,生地化 模式結果也同樣顯示一些營養鹽的濃度偏低,例如DIN。因此,海洋環流物理模式需 要改進包括風應力、波浪、潮流及懸浮沉積物的輸送等因子。""A three-sea system model of the northwestern Pacific Ocean with 1/6o resolution is used to investigate possible effects of reduced Yangtze River discharge on the circulation of surrounding seas. To the extent of data availability, the model is mostly driven by monthly climatological winds and inflows/outflows through open-ocean boundaries. With climatological discharge rate, the Yangtze River plume disperses to the northeast in summer but follows the China Coastal Current (CCC) to the south in winter. And, the model also provides a base for developing the biogeochemical studies of the East China Sea. By comparison, the Yangtze River plume disperses to the northeast from its mouth in summer time, but the observations show that the plume range extends usually to the east or occasionally to the south. Conceivably, the plume position of the ECS model is prominent deflecting to the north than the observed data. Besides the River plume, the concentration of some nutrient species derived from the biogeochemical model are often underestimated in the sea surface, for example, DIN. In consequence, model needs improvement in some physical factors including wind stress, waves, tidal current and sediment transportation."
 
 
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