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Full-Scale Tests and Numerical Simulations of Failure Mechanism of Power Transmission Towers

机译:电力传动塔故障机构的全尺度试验和数值模拟

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Full-scale tests are conducted to investigate the load-bearing capacity and failure mechanism of power transmission towers subjected to various loading patterns (broken lines, wind and ice). Detailed finite element models of power transmission towers are established based on these experimental prototypes. To capture the member instability, the integral stability coefficients are obtained from different specifications and introduced into a user-defined material model. Subsequently, the failure analysis of power transmission towers is carried out using an explicit algorithm, and good agreement is found in comparison with experimental results. The results show that the proposed procedure is effective in simulating the power transmission tower failure process. The full-scale test and numerical simulation studies can provide a valuable database for the design of power transmission towers subjected to various loads.
机译:进行全规模测试以研究经过各种装载图案的动力传动塔的承载力和故障机制(虚线,风和冰)。 基于这些实验原型建立了电力传动塔的详细有限元模型。 为了捕获成员不稳定性,整体稳定性系数是从不同的规格获得并引入用户定义的材料模型中。 随后,使用显式算法进行动力传输塔的故障分析,与实验结果相比,发现了良好的一致性。 结果表明,该方法在模拟电力传输塔故障过程方面是有效的。 全尺寸测试和数值模拟研究可以为经过各种负载的电力传动塔设计提供有价值的数据库。

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