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Study of Vertical Seismic Response of Concrete Self-Anchored Suspension Bridges

Study of Vertical Seismic Response of Concrete Self-Anchored Suspension Bridges
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摘要 Based on the variational prineiple of incomplete generalized potential energy with large deflection, the vertical nonlinear vibrational differential equation of self-anchored suspension bridge is presented by taking the effect of coupling of flexural and axial action into consideration. The linear vertical equation is obtained by omitting the nonlinear term, and the pseudo excitation method(PEM). Taking the self-anchored concrete suspension bridge over Lanqi Songhua river for an example, the expected peak responses of main beam, towers and cables are calculated. And the seismic spatial effects on vertical seismic response of self-anchored suspension bridges are discussed. Based on the variational prineiple of incomplete generalized potential energy with large deflection, the vertical nonlinear vibrational differential equation of self-anchored suspension bridge is presented by taking the effect of coupling of flexural and axial action into consideration. The linear vertical equation is obtained by omitting the nonlinear term, and the pseudo excitation method(PEM). Taking the self-anchored concrete suspension bridge over Lanqi Songhua river for an example, the expected peak responses of main beam, towers and cables are calculated. And the seismic spatial effects on vertical seismic response of self-anchored suspension bridges are discussed.
出处 《Journal of China University of Mining and Technology》 2004年第1期17-21,共5页 中国矿业大学学报(英文版)
关键词 地震响应 混凝土结构 吊桥 非线性微分方程 variational principle self-anchored suspension bridge vertical seismic response spatial variation effect coupling of axial and flexural action pseudo excitation method
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参考文献6

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