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Cable force adjustment and post-adjusting nonlinear analysis of a cable-stayed bridge based on ANSYS

机译:基于ANSYS的斜拉桥电缆力调节与调整后的非线性分析

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In the analysis of the live load nonlinearity and ultimate bearing capacity of a cable-stayed bridge, the planned construction state or the completed state of the bridge must be first obtained by adjusting the cable forces; then, further analysis for the next load step can be done by adding loads to the structure of this kind state. To achieve this aim, the paper re-develops an ANSYS-based finite element program, which takes the large displacement effect, p−Δ effect and cable sag effect into account, by using APDL in ANSYS software and the virtual temperature load method for cable force adjustment. A cable-stayed bridge test model is computationally analyzed for its cable force adjustment and the follow-up nonlinearity under live loads. The analysis results are in good accord with the experimental ones, which verifies that the program is reasonable and practicable for the calculation of adjusting cable forces and the nonlinear analysis of post-adjusting cable-stayed bridge can be done in the very same model.
机译:在分析电缆停留桥的活载非线性和极限承载力的情况下,必须首先通过调节电缆力来首先获得计划的施工状态或桥的完成状态;然后,可以通过将负载添加到这种类型状态的结构来完成对下一个负载步骤的进一步分析。为了实现这一目标,本文重新开发了一种基于ANSYS的有限元程序,它采用大的位移效果,P −Δ 效果和电缆截取效果,通过在ANSYS软件中使用APDL和虚拟温度负荷方法,用于电缆力调节。电缆停留的桥梁测试模型被计算地分析其电缆力调节和实时负载下的后续非线性。分析结果与实验结果符合符合实验结果,该实验结果验证了该程序对于计算调整电缆力和调节后电缆储存桥的非线性分析可以在相同的型号中进行合理且切实可行。

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