首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >FINITE ELEMENT SIMULATION OF DYNAMIC BEHAVIOR OF PRESSURIZED PIPING SYSTEM UNDER LARGE SEISMIC LOAD
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FINITE ELEMENT SIMULATION OF DYNAMIC BEHAVIOR OF PRESSURIZED PIPING SYSTEM UNDER LARGE SEISMIC LOAD

机译:大型地震荷载作用下加压管道系统动力特性的有限元模拟

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The nuclear power plant piping systems are often subjected to the cyclic loading conditions due to transients, seismic or other unexpected events. During these events, the probable mode of failure for piping component is fatigue-ratcheting. Earlier the design of piping subjected to seismic excitation was based on the principle of static collapse. Later on, it was postulated that the cause of failure of piping components is fatigue ratcheting and not plastic collapse. The 1995 ASME Boiler & Pressure Vessel code, Section-Ill, has incorporated the reverse dynamic loading and ratcheting into the code. An Analytical study is carried out to investigate the behavior of the pressurized piping system under large seismic loading. The analysis is performed using equivalent inertial forces. Chaboche nonlinear kinematic hardening model is used for ratcheting simulation. The capability of the model to simulate the ratcheting response of the piping system is ofrnparticular interest. Comparison of analysis results against test results are presented in the paper.
机译:核电站管道系统经常由于瞬态,地震或其他意外事件而承受周期性载荷条件。在这些事件中,管道部件可能的故障模式是疲劳棘轮。早期,地震激励管道的设计是基于静态坍塌原理。后来推测,管道部件失效的原因是疲劳棘轮而不是塑料塌陷。 1995年的ASME锅炉和压力容器规范,第III部分,已将反向动态加载和棘轮结合到了规范中。进行了分析研究,以研究大地震荷载下的压力管道系统的行为。使用等效惯性力进行分析。 Chaboche非线性运动硬化模型用于棘轮仿真。该模型模拟管道系统的棘轮响应的能力特别受关注。本文介绍了分析结果与测试结果的比较。

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