首页> 外文期刊>Engineering Structures >Systematic experimental investigation to support the development of seismic performance factors for cross laminated timber shear wall systems
【24h】

Systematic experimental investigation to support the development of seismic performance factors for cross laminated timber shear wall systems

机译:系统实验研究,以支持交叉层压木材剪力墙系统抗震性能因子的发展

获取原文
获取原文并翻译 | 示例
           

摘要

In the US, codified seismic design procedure requires the use of seismic performance factors which are currently not available for CLT shear wall systems. The study presented herein focuses on the determination of seismic design factors for CLT shear walls in platform type construction using the FEMA P-695 process. Results from the study will be proposed for implementation in the seismic design codes in the US. The project approach is outlined and selected results of full-scale shear wall testing are presented and discussed. Archetype development, which is required as part of the FEMA P-695 process, is briefly explained with an example. Quasi-static cyclic tests were conducted on CLT shear walls to systematically investigate the effects of various parameters. The key aspect of these tests is that they systematically investigate each potential modelling attribute that is judged within the FEMA P-695 uncertainty quantification process. Boundary constraints and gravity loading were both found to have a beneficial effect on the wall performance, i.e. higher strength and deformation capacity. Higher aspect ratio panels (4:1) demonstrated lower stiffness and substantially larger deformation capacity compared to moderate aspect ratio panels (2:1). However, based on the test results there is likely a lower bound for aspect ratio (at 2:1) where it ceases to benefit deformation capacity of the wall. This is due to the transition of the wall behaviour from rocking to sliding. Phenomenological models were used in modelling CLT shear walls. Archetype selection and analysis procedure was demonstrated and nonlinear time history analysis was conducted using different wall configurations.
机译:在美国,规范化的抗震设计程序要求使用抗震性能系数,而CLT剪力墙系统目前尚不具备抗震性能系数。本文介绍的研究重点在于使用FEMA P-695工艺确定平台式施工中CLT剪力墙的抗震设计因素。研究结果将在美国的抗震设计规范中提出。概述了该项目方法,并介绍和讨论了全尺寸剪力墙测试的选定结果。举例说明了原型开发,这是FEMA P-695流程的一部分,是必需的。在CLT剪力墙上进行了准静态循环测试,以系统地研究各种参数的影响。这些测试的关键方面是它们系统地调查在FEMA P-695不确定性量化过程中判断出的每个潜在建模属性。发现边界约束和重力载荷都对壁性能具有有益的影响,即更高的强度和变形能力。与中等长宽比的面板(2:1)相比,高长宽比的面板(4:1)显示出较低的刚度和明显更大的变形能力。但是,根据测试结果,宽高比可能会存在下限(在2:1时),它将不再有利于墙体的变形能力。这是由于墙体行为从摇摆过渡到滑动的缘故。现象学模型用于建模CLT剪力墙。演示了原型选择和分析程序,并使用不同的墙配置进行了非线性时程分析。

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