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Physical Hydrography and Algal Bloom Transport in Hong Kong Waters
作者姓名:匡翠萍  李行伟
作者单位:[1]Department of Geotechnical Engineering, School of Civil Engineering, Tongji University, Shanghai 200092, China [2]Department of Civil Engineering, The University of Hong Kong, Hong Kong, China
基金项目:This study was supported by a Hong Kong Research Grants Council Group Research Project (RGC//HKU 1/02C), and partially by a grant from the University Grants Committee of the Hong Kong Special Administrative Region, China (Project No. AoE/P-04/04 and P-04/02) to the Area of Excellence in Marine Environment Research and Innovative Technology (MERIT).
摘    要:In sub-tropical coastal waters around Hong Kong, algal blooms and red tides are usually first sighted in the Mirs Bay, in the eastern waters of Hong Kong. A calibrated three-dimensional hydrodynamic model for the Pearl River Estuary (Delft3D) has been applied to the study of the physical hydrography of Hong Kong waters and its relationship with algal bloom transport patterns in the dry and wet seasons. The general 3D hydrodynamic circulation and salinity structure in the partially-mixed estuary are presented. Extensive numerical surface drogue tracking experiments are performed for algal blooms that are initiated in the Mirs Bay under different seasonal, wind and tidal conditions. The probability of bloom impact on the Victoria Harbour and nearby urban coastal waters is estimated. The computations show that: i) In the wet season (May - August), algal blooms initiated in the Mirs Bay will move in a clockwise direction out of the bay, and be transported away from Hong Kong due to SW monsoon winds which drive the SW to NE coastal current; ii) In the dry season (November- April), algal blooms initiated in the northeast Mirs Bay will move in an anti-clockwise direction and be carried away into southern waters due to the NE to SW coastal current driven by the NE monsoon winds; the bloom typically flows past the east edge of the Victoria Harbeur and nearby waters. Finally, the role of hydrodynamic transport in an important episodic event -- the spring 1998 massive red tide -- is quantitatively examined. It is shown that the strong NE to E wind during late March to early April, coupled with the diurnal tide at the beginning of April, significantly increased the probability of bloom transport into the Port Shelter and East Lamma Channel, resulting in the massive fish kill. The results provide a basis for risk assessment of harmful algal bloom (HAB) impact on urban coastal waters around the Victoria Habour.

关 键 词:海藻  水华  海洋生物  浮标  水质工程  富营养化  水力模型
收稿时间:2005-06-06
修稿时间:2005-10-18

Physical Hydrography and Algal Bloom Transport in Hong Kong Waters
KUANG Cui-ping , LEE Joseph H.W..Physical Hydrography and Algal Bloom Transport in Hong Kong Waters[J].China Ocean Engineering,2005,19(4):539-556.
Authors:KUANG Cui-ping  LEE Joseph HW
Abstract:
Keywords:red tide  harmful algal blooms  mariculture  fish kill  drogue tracking  eutrophication  hydrodynamic modelling  water quality  environmental hydraulics  wind-induced transport
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