首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.8: Seismic Engineering >APPLICATION OF OPTIMAL DESIGN METHODOLOGY ON THE SEISMIC DESIGN OF PIPING SYSTEMS SUPPORTED BY ELASTO-PLASTIC DAMPERS
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APPLICATION OF OPTIMAL DESIGN METHODOLOGY ON THE SEISMIC DESIGN OF PIPING SYSTEMS SUPPORTED BY ELASTO-PLASTIC DAMPERS

机译:最优设计方法在弹塑性阻尼器支配管道系统抗震设计中的应用

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摘要

In this study, the optimal seismic design methodology which can consider the structural integrity of both the piping systems and the elasto-plastic supporting devices are developed. This methodology employs genetic algorithm and can search the opti-mal conditions such as the supporting location, the capacity and stiffness of the supporting devices. The lead extrusion damper is treated here as a typical elasto-plastic damper. Four kinds of evaluation functions; stress of piping systems, energy absorption, lead melt of dampers and energy absorbing balance are consid-ered and each optimal condition is clarified and discussed.rnAs the results, it is found that the optimal seismic design methodology proposed here is very effective and can be applied to the actual seismic designs for the piping systems supported by the elasto-plastic dampers, and can be also applied to the piping systems exposed to the actual earthquake waves which have var-ious frequency components and the piping systems with a heavy local mass.
机译:在这项研究中,开发了可以同时考虑管道系统和弹塑性支撑装置结构完整性的最佳抗震设计方法。该方法采用遗传算法,可以搜索最佳条件,例如支撑位置,支撑设备的容量和刚度。铅挤压阻尼器在这里被视为典型的弹塑性阻尼器。四种评估功能;考虑了管道系统的应力,能量吸收,阻尼器的铅熔体和能量吸收平衡,并阐明和讨论了每个最佳条件。作为结果,发现本文提出的最佳抗震设计方法是非常有效的,可以适用于由弹塑性阻尼器支撑的管道系统的实际抗震设计,也可应用于暴露于具有各种频率分量的实际地震波的管道系统和局部质量较重的管道系统。

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