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Geometric Nonlinear Behavior Analysis Of Long-Span Cable-Stayed Bridge

Posted on:2009-01-14Degree:MasterType:Thesis
Country:ChinaCandidate:C F LuFull Text:PDF
GTID:2132360272978593Subject:Bridge and tunnel project
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The long-span cable-stayed bridge, a king of indeterminate flexible structure with many redundant degrees, consists of three basic members: the tower, the cable and the girder. Because of its variant internal force under dead load, nonlinear behavior and coupling between construction method and completed structure, the construction nonlinear analysis that considers those factors become very important in the design of the cable-stayde bridge.This thesis focuses on geometric nonlinear behavior analysis of long-span cable-stayed bridge. Firstly, the basic theory of geometric nonlinear analysis for long-span cable-stayed bridge is introduced. Then three pinciple factors that affect geometric nonlinearity of the cable-stayed bridges are described, which are large displacement, cable sag effects and combined effects of bending moment and axial force, then the finite element methods are introduced separately. In this thesis, the feasibility of several nonlinear solution of geometric nonlinearity is discussed for the cable-stayde bridge and the relative calculations are operated to get the influence of each nonlinear factor, especially emphasize structure large displacement and cable sag effects. And then, using large-scale finite element program Midas, the geometric nonlinear static analysis are made on the main bridge of Huangpu Zhujiang River Bridge in Guangzhou.At last, the linear and nonlinear analysis of all load cases under construction stage and finished stage are made. According to the comparison between those results, conclusions are obtained as followed:1) Cable sag effect has the largest effect on the moment of main girder and nonlinearity of large displacement has larger effect, while the combined effect of moment and axial force has the least effect. Further more, the effect degree is different in different construction phases.2) Under dead load the cable sag effects is the main point of nonlinear behaviors of cable-stayed bridges, and the combined effects of bending moment and axial force and the large displacement are relatively small. So it is nor enough if we only execute linear analysis to cable-stayed bridge.3) Linear analysis is enough to live load since the difference between linear analysis and nonlinear analysis to the structure is relatively small under live load.
Keywords/Search Tags:cable-stayed bridge, finite element, geometric nonlinear behavior analysis, sag effect
PDF Full Text Request
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