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Studies on failure of transmission line towers in testing

机译:输电线路铁塔故障测试研究

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The towers are vital components of the transmission lines and hence, accurate prediction of their failure is very important for the reliability and safety of the transmission system. When failure occurs, direct and indirect losses are high, leaving aside other costs associated with power disruption and litigation. Different types of premature failures observed during full scale testing of transmission line towers at Tower Testing and Research Station, Structural Engineering Research Centre, Chennai are presented. Failures that have been observed during testing are studied and the reasons discussed in detail. The effect of non-triangulated hip bracing pattern and isolated hip bracings connected to elevation redundant in 'K' and 'X' braced panels on tower behaviour are studied. The tower members are modeled as beam column and plate elements. Different types of failures are modeled using finite element software and the analytical and the test results are compared with various codal provisions. The general purpose finite element analysis program NE-NASTRAN is used to model the elasto-plastic behaviour of towers. Importance of redundant member design and connection details in over all performance of the tower is discussed.
机译:塔是传输线的重要组成部分,因此,准确预测其故障对于传输系统的可靠性和安全性非常重要。发生故障时,直接和间接损失很高,不包括与电源中断和诉讼相关的其他成本。介绍了在钦奈结构工程研究中心的塔架测试和研究站对输电塔进行全面测试期间观察到的不同类型的过早失效。研究了在测试过程中发现的故障,并详细讨论了原因。研究了“ K”和“ X”支撑面板中非三角连接的髋部支撑模式和孤立的髋部支撑与仰角冗余连接对塔架行为的影响。塔构件建模为梁柱和板单元。使用有限元软件对不同类型的故障进行建模,并将分析结果和测试结果与各种测试方法进行比较。通用有限元分析程序NE-NASTRAN用于对塔的弹塑性行为进行建模。讨论了冗余构件设计和连接细节在整个塔架性能中的重要性。

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