首页> 外文期刊>International journal of steel structures >Dynamic Increase Factor for Pushdown analysis of Seismically Designed Steel Moment-resisting Frames
【24h】

Dynamic Increase Factor for Pushdown analysis of Seismically Designed Steel Moment-resisting Frames

机译:抗震钢制抗弯框架下推分析的动力增大因子

获取原文
获取原文并翻译 | 示例
           

摘要

The independent threat scenario of sudden column loss under localised damage is usually considered in progressive collapse assessment. The effect of the sudden removal of a column is like the sudden application of the gravity load on the structure when significant deformations occur. This conventional approach is based on the simplifying but realistic hypothesis that the peak dynamic response can be assessed with reasonable accuracy using the nonlinear static response. In this approach, amplified gravity loads are applied to the bays that are affected by the removed column to compensate for the dynamic effects corresponding to the real load redistribution. The paper investigates the dynamic increase factor to be considered in the nonlinear pushdown analysis of seismically designed steel moment-resisting frames. The influence of the fundamental parameters involved in progressive collapse analysis was highlighted. The effect of various design variables, such as the number of stories, the number of bays, the location of the removed column and the level of seismic design load was investigated. The dynamic increase factor was estimated in a way to generate the best match of the peak dynamic responses through the nonlinear static analysis. Finally, the values obtained were expressed as a function of the vertical displacement at the location of the removed column and then compared with the GSA formulation based on the ductility factor.
机译:在逐步倒塌评估中通常考虑局部破坏下立柱突然丢失的独立威胁情景。突然移走圆柱的效果就像重力荷载在结构发生重大变形时突然施加在结构上一样。此常规方法基于简化但现实的假设,即可以使用非线性静态响应以合理的精度评估峰值动态响应。在这种方法中,将放大后的重力载荷施加到受移除立柱影响的舱室,以补偿与实际载荷重新分配相对应的动力效应。本文研究了在抗震设计的抗弯钢框架的非线性下垂分析中要考虑的动力增加因子。强调了逐步倒塌分析中涉及的基本参数的影响。研究了各种设计变量的影响,例如层数,隔间数,拆除的立柱的位置以及抗震设计荷载的水平。通过非线性静态分析,以某种方式生成动态响应的最佳匹配,以估计峰值动态响应的最佳匹配。最后,将获得的值表示为在移出的色谱柱位置处的垂直位移的函数,然后将其与基于延展性因子的GSA配方进行比较。

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