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Dynamic Responses of the High Slender Structure Under Non-Gaussian Model of Wind Load
引用本文:WANG Zhong-gang~. Dynamic Responses of the High Slender Structure Under Non-Gaussian Model of Wind Load[J]. 保鲜与加工, 2004, 0(1): 66-68
作者姓名:WANG Zhong-gang~
摘    要:With reference to the effect of the quadratic component of turbulent-wind fluctuation, the statistical moments of wind load up to the 4~(th) order are derived and the spectrum densities are given based on the Fourier transformation. By means of the Gram-Charlier series, the first-order probability densities of the structure responses are then constituted with the former 4~(th) order central moments of responses. Under the independent hypothesis of the structural displacement and its derivative, whose applicability is verified by the correlation between the two signals, the joint probability density function is developed and a numerical scheme for the analysis of the dynamic behaviors of the high-slender structure under wind excitation is obtained. Parametric analysis on dynamic responses and reliability under both Gaussian and non-Gaussian models of wind load are then investigated.

关 键 词:dynamic responses  high slender structure  non-Gaussian  wind load  P
修稿时间:2003-10-20

Dynamic Responses of the High Slender Structure Under Non-Gaussian Model of Wind Load
WANG Zhong-gang. Dynamic Responses of the High Slender Structure Under Non-Gaussian Model of Wind Load[J]. Storage & Process, 2004, 0(1): 66-68
Authors:WANG Zhong-gang
Affiliation:WANG Zhong-gang~
Abstract:With reference to the effect of the quadratic component of turbulent-wind fluctuation, the statistical moments of wind load up to the 4~(th) order are derived and the spectrum densities are given based on the Fourier transformation. By means of the Gram-Charlier series, the first-order probability densities of the structure responses are then constituted with the former 4~(th) order central moments of responses. Under the independent hypothesis of the structural displacement and its derivative, whose applicability is verified by the correlation between the two signals, the joint probability density function is developed and a numerical scheme for the analysis of the dynamic behaviors of the high-slender structure under wind excitation is obtained. Parametric analysis on dynamic responses and reliability under both Gaussian and non-Gaussian models of wind load are then investigated.
Keywords:dynamic responses  high slender structure  non-Gaussian  wind load  P
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