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《Hydro-Science and Engineering》 2008-04
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Study of interaction between estuary dynamic and storm surge in the Yangtze River

ZHANG Jin-shan1,2,3,KONG Jun4,ZHANG Wei-sheng1,TENG Ling1(1.Nanjing Hydraulic Research Institute,Nanjing 210029,China;2.School of Geography Science of Nanjing Normal University,Nanjing 210097,China;3.Research Center for Climate Change,Ministry of Water Resources,Nanjing 210029,China;4.School of Communication and Ocean of Hohai University,Nanjing 210098,China)  
The Yangtze River estuary is the largest one in China,and the storm surge is regarded as one of the most seriously natural disasters in the estuary.Based on occurrence features,a numerical model,which is driven by mesoscale meteorological model and used for storm surge′s forecasting for the Yangtze River tidal reach and estuary,is established.The regularity of interaction between the storm surge and the estuarine dynamics of the Yangtze Rive is studied.The results indicate that the storm surge have significant influence on the Yangtze River estuary.The maximum water level increase caused by the storm surge can be monitored between Jiangyin and Xuliujing,whose exact position fluctuates owing to the effects of the upstream runoff and estuarine tide.Furthermore the paper reveals the general laws governing the relationships among astronomical tide,storm surge,and flood.It also predicts flood water level under storm surge events.
【Fund】: 水利部公益行业科研专项经费项目“气候变化对我国水安全影响及对策研究”(200801001);; 水利部“948”项目“河口海岸风暴潮和洪水灾害模拟系统的引进”(200705)联合资助;; 交通部“十一五”专项“风暴潮对港口水陆域航道安全影响研究”(200632800003-03);; 科技部社会公益研究专项基金项目(2000DIB20096)
【CateGory Index】: P731.23
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【Citations】
Chinese Journal Full-text Database 5 Hits
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【Co-citations】
Chinese Journal Full-text Database 10 Hits
1 HUANG Shi-chang a,b,1,LI Yu-cheng a,ZHAO Xin b and XIE Ya-li b a State Key Laboratory of Coastal and Offshore Engineering,Dalian University of Technology,Dalian 116024,China b Zhejiang Institute of Hydraulics and Estuary,Hangzhou 310020,China;Numerical Investigation of High Tide Level Due to A Super Typhoon in A Coastal Region[J];中国海洋工程(英文版);2007-03
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3 YU Yubin 1,DUAN Haixia 2,YAN Lijun 3,and ZHAO Dajun 41 China Meteorological Administration Training Center,Beijing 1000812 Lanzhou Institute of Arid Meteorology,China Meteorological Administration,Lanzhou 7300203 Foshan Prefectural Meteorological Bureau of Guangdong Province,Foshan 5280004 Nanjing University of Information Science and Technology,Nanjing 210044;Numerical Simulation of Rapid Intensification Change of Super Typhoon Saomai(2006) over the Coastal Water of China[J];Chinese Journal of Atmospheric Sciences;2008-06
4 CHEN Ren-sheng,GAO Yan-hong,L Shi-hua,KANG Er-si,JI Xi-bin,YANG Yong(Cold and Arid Regions Environmental and Engineering Research Institute,Chinese Academy of Sciences,Lanzhou 730000,China);A Distributed Water-Heat Coupled (DWHC) Model for Mountainous Watershed of An Inland River Basin(Ⅲ): Model Results Using the Results from MM5 Model[J];Advances in Earth Science;2006-08
5 LOU Wei-ping1,CHEN Hai-yan2,ZHENG Feng3,WU Rui1(1.Xinchang County Meteorological Bureau,Xinchang 312500,Zhejiang,China;2.Zhejiang Provincial Meteorological Office,Hangzhou 310017,China;3.Wenzhou City Meteorological Bureau,Wenzhou 312500,Zhejiang,China);Economic loss assessment of typhoon based on principal component analysis and neural network[J];Geographical Research;2009-05
6 HUANG Hua,ZHU Jian-rong,WU Hui(State Key Laboratory of Estuarine and Coastal Research,East China Normal University,Shanghai 200062,China);3-D Numerical Simulation of Storm Surge in the Changjiang Estuary and the Hangzhou Bay[J];Journal of East China Normal University(Natural Science);2007-04
7 XIA Bo1,2, WU Xiang-zhong2, ZHANG Qing-he2(1.College of Water Conservancy,Changsha University of Science and Technology,Changsha 410076,China;2.School of Civil Engineering,Tianjin University,Tianjin 300072,China);Modeling of tide and storm surge in the southwest coast of the Bohai bay[J];Journal of Changsha University of Science & Technology(Natural Science);2008-03
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