首页> 外文会议>ASME Pressure Vessels and Piping conference >INVESTIGATION ON METHOD OF ELASTO-PLASTIC ANALYSIS FOR PIPING SYSTEM EXCITED BY MULTI-DIRECTION INPUT
【24h】

INVESTIGATION ON METHOD OF ELASTO-PLASTIC ANALYSIS FOR PIPING SYSTEM EXCITED BY MULTI-DIRECTION INPUT

机译:多方向输入激励的管道系统弹塑性分析方法的研究

获取原文

摘要

This paper provides investigation on method of an elasto-plastic analysis for practical seismic design of nuclear piping systems, which are excited by multi-direction input. The Japan Society of Mechanical Engineers (JSME) established a task group to develop an elasto-plastic analysis method for nuclear piping systems, and prepared a case example code proposal for JSME.[1],[2] Our studies in past (ASME PVP2016-63186[3] and ASME PVP2017-65341 [4]) were implemented on tests with unidirectional excitation using simple piping systems. In order to examine the applicability of the proposed case example code for JSME in piping of actual systems, it is necessary to examine cases in which there is multidirectional input excitation in piping systems in scales comparable to those of the piping in actual systems. We therefore conducted an analytical examination on demonstration of "the ultimate strength of piping system," which was implemented at NUPEC. [5] We confirmed in the results of analytical examination that the strain range could be calculated at precision nearly equivalent to our examinations in the past, and that the draft code case was applicable. However, we also found a problem which needs to be solved. In addition, we were able to confirm that the local damping increase caused by the elasto-plastic behavior of the elbow which was subject to examination in this study was 1% or larger.
机译:本文提供了对核管道系统实际地震设计的弹性塑性分析方法的研究,其通过多向输入激发。日本机械工程师协会(JSME)建立了一个任务组,为核管道系统开发了弹性塑性分析方法,并为JSME制定了案例示例代码提案。[1],[2]我们过去的研究(ASME PVP2016 - 使用简单管道系统对具有单向励磁的测试实施了-63186 [3]和ASME PVP2017-65341 [4]。为了检查所提出的案例示例代码的实际系统管道中的JSME的适用性,有必要检查在与实际系统中的管道相当的秤上的管道系统中存在多向输入激励的情况。因此,我们对“管道系统的最终强度”进行了分析检查,该检验在Nupec实施。 [5]我们在分析检查结果中确认,应变范围可以在过去几乎相当于我们过去的考试的精确度,并且守则案件草案适用。但是,我们也发现了一个需要解决的问题。此外,我们能够确认在本研究中进行检查的弯头弹塑性行为引起的局部阻尼增加是1%或更大。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号