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WANG Liping,ZHANG Jianfang,LI Yongping,ZHANG Yufang.A statistical analysis of typhoon frequency and application in design wave height[J].Acta Oceanologica Sinica,2011,(4):24-32
A statistical analysis of typhoon frequency and application in design wave height
A statistical analysis of typhoon frequency and application in design wave height
投稿时间:2010-05-19  修订日期:2011-03-16
DOI:10.1007/s13131-011-0130-7
中文关键词:  discrete maximum entropy  compound extreme values  typhoon  wave heights
英文关键词:discrete maximum entropy  compound extreme values  typhoon  wave heights
基金项目:Open Fund of the Key Laboratory of Research on Marine Hazards Forecasting under contract No. LOMF1101; the National Natural Science Foundation of China under contract No. 40776006; Shanghai Typhoon Research Fund under contract No. 2009ST05.
作者单位E-mail
WANG Liping College of Mathematical Science, Ocean University of China, Qingdao 266071, China wlpjsh@163.com 
ZHANG Jianfang College of Mathematical Science, Ocean University of China, Qingdao 266071, China  
LI Yongping Shanghai Typhoon Institute, Shanghai 200030, China  
ZHANG Yufang College of Mathematical Science, Ocean University of China, Qingdao 266071, China  
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中文摘要:
      A typhoon leading is an important natural disaster to many disasters to China. A giant wave caused by it has brought large threat for an offshore project. Based on the maximum entropy principle, one new model which has 4 undetermined parameters is constructed, which is called the discrete maximum entropy probabilistic model. In practical applications, the design wave height is considered as soon as possible in a typhoon affected sea areas, the result fits the observed data well. Further more this model does not have the priority compared with other distributions as Poisson distribution. The model provides a theoretical basis for the engineering design more reasonable when considering typhoon factors comprehensively.
英文摘要:
      A typhoon leading is an important natural disaster to many disasters to China. A giant wave caused by it has brought large threat for an offshore project. Based on the maximum entropy principle, one new model which has 4 undetermined parameters is constructed, which is called the discrete maximum entropy probabilistic model. In practical applications, the design wave height is considered as soon as possible in a typhoon affected sea areas, the result fits the observed data well. Further more this model does not have the priority compared with other distributions as Poisson distribution. The model provides a theoretical basis for the engineering design more reasonable when considering typhoon factors comprehensively.
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