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Collapse Analysis of Transmission Tower Subjected to Earthquake Ground Motion

机译:地震作用下输电塔的倒塌分析

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The collapse of transmission towers involves a series of complex problems, including geometric nonlinearity, material nonlinearity, dynamic nonlinearity, and the failure of members. Simulation of the process of collapse is difficult using traditional finite element method (FEM), which is generated from continuum and variation principle, whereas the finite particle method (FPM) enforces equilibrium on each point. Particles are free to separate from one another, which is advantageous in the simulation of the structural collapse. This paper employs the finite particle method (FPM) to simulate the collapse of a transmission steel tower under earthquake ground motions; the three-dimensional (3D) finite particle model using MATLAB and the 3D finite element model using ANSYS of the transmission steel tower are established, respectively. And the static and elastic seismic response analyses indicate that the results of the FPM agree well with those of the FEM. To simulate the collapse of the transmission steel tower, a failure criterion based on the ideal elastic-plastic model and a failure mode are proposed. Finally, the collapse simulation of the transmission steel towers subjected to unidirectional earthquake ground motion and the collapse seismic fragility analysis can be successfully carried out using the finite particle method. The result indicates that the transmission steel tower has better seismic safety performance and anticollapse ability.
机译:输电塔的倒塌涉及一系列复杂的问题,包括几何非线性,材料非线性,动态非线性以及构件失效。使用传统的有限元方法(FEM)难以模拟崩溃过程,而传统的有限元方法是根据连续性和变化原理生成的,而有限粒子方法(FPM)则需要在每个点上实现平衡。粒子彼此之间可以自由分离,这在结构崩溃的模拟中是有利的。本文采用有限粒子法(FPM)模拟了地震作用下输电钢塔的倒塌现象。分别建立了基于MATLAB的三维有限元模型(3D)和基于ANSYS的3D有限元模型。静态和弹性地震响应分析表明,FPM的结果与FEM的结果吻合良好。为了模拟输电钢塔的倒塌,提出了基于理想弹塑性模型的破坏准则和破坏模式。最后,利用有限粒子法可以成功地进行单向地震地震动的输电钢塔的倒塌模拟和倒塌地震脆性分析。结果表明,输电钢塔具有较好的抗震安全性能和抗倒塌能力。

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