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气候变化对浙江沿海风暴潮的影响
引用本文:孙志林,卢美,聂会,黄森军.气候变化对浙江沿海风暴潮的影响[J].浙江大学学报(理学版),2014,41(1):90-94.
作者姓名:孙志林  卢美  聂会  黄森军
作者单位:浙江大学海洋科学与工程学系;浙江省海洋与渔业局;
基金项目:浙江省科技重大专项资助项目(2009C03008-1);浙江省水利厅重点资助项目(RB1212)
摘    要:基于浙江沿海多个气象观测站和潮位观测站近50年的气温、潮位及风暴潮的资料,研究了气候变化背景下浙江沿海台风暴潮变化特征.分析表明,随着沿海地区年平均气温的上升,浙江沿海相对海平面、登陆台风、超警戒风暴潮、较大风暴增水、年极值高潮位等都呈现出上升或增多趋势;在此背景下,浙江沿海风暴潮灾害风险也随之增大,特别是2000年以来,登陆浙江沿海的台风个数和最大增水超过300cm的风暴潮次数都显著增多.对气候变化背景下浙江沿海风暴潮灾害的影响分析,将为今后风暴潮预警及防灾、减灾的应对提供重要的启示和参考.

关 键 词:气候变化  台风个数  风暴潮
收稿时间:2012-11-06;

Impacts of climatological change on storm surge in Zhejiang coastal water
SUN Zhilin,I.U Mei,NIE HuiI,HUANG Senjun.Impacts of climatological change on storm surge in Zhejiang coastal water[J].Journal of Zhejiang University(Sciences Edition),2014,41(1):90-94.
Authors:SUN Zhilin  IU Mei  NIE HuiI  HUANG Senjun
Institution:1 (1. Department of Ocean Science and Engineering, Zhejiang Uni- versity, Hangzhou 310027, China; 2. Zhejiang Provincial Ocean and Fisheries Bureau, Hangzhou 310007, China)
Abstract:The variations of storm surge during typhoon in Zhejiang costal water based on the data of temperature, tidal height and storm surge in weather stations and tidal stations during the past 50 years are described and ana lysed. The results demonstrate that the rise in sea surface temperature and sea-level will be accompanied by a corre sponding increase in the numbers of typhoon, the value of setup, higher than the warning elevation and the extreme annual high tidal elevation. The analysis also reveals that the higher temperature causes the rise of risk of storm surge disaster. With the acceleration of temperature rise the number of typhoon and the frequency of maximum storm surge which is more than 300 centimeters have doubled since 2000. Therefore, the disaster risk caused by storm surge in Zhejiang coastal water from the point of the climatological change is analysed. This information would be a value to researcher for future disaster preventing and mitigating and storm surge forecasting.
Keywords:climatological change  number of typhoon  storm surge
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