首页> 外文期刊>Bulletin of earthquake engineering >Dynamic behavior of buildings with non-uniform stiffness along their height assessed through coupled flexural and shear beams
【24h】

Dynamic behavior of buildings with non-uniform stiffness along their height assessed through coupled flexural and shear beams

机译:通过弯曲和剪切梁耦合评估刚度不均匀的建筑物的动态行为

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

A novel model for assessing building behavior has been developed by coupling a Bernoulli beam with a quartic stiffness variation and a shear beam with a parabolic stiffness variation, trends that are expected in buildings designed for earthquake actions. Then the partial differential equation of motion governing the behavior of the model has been solved, obtaining analytic expressions (Closed form solutions) for mode shapes in terms of Legendre functions. These closed form solutions were validated with finite element model analyses and effects of non-uniformity of stiffness were assessed in a generalized manner. It was found that period lengthening is mild for the first mode, but for higher modes can be far more noticeable if shear stiffness at beam top is < 20 % of its base value. Mode shapes also change notoriously for reductions beyond the same limit, potentially inducing large floor acceleration demands at unexpected locations. Also it was found that drift demands can be noticeably enhanced even if shear stiffness at top is 75 % of the base value, in what would be considered uniform buildings. This model has several applications for assessing the response or large stocks of buildings, calibrate complex models, assess damage on building contents, establishing in short time damage scenarios for large cities, and could be helpful for education, as emphasis is brought back on fundamental concepts.
机译:通过将具有四次刚度变化的伯努利梁和具有抛物线刚度变化的剪切梁耦合,可以开发出一种评估建筑物行为的新颖模型,这是为地震作用而设计的建筑物所期望的趋势。然后求解了控制模型行为的偏微分运动方程,获得了基于勒让德函数的模式形状的解析表达式(闭式解)。这些封闭形式的解决方案已通过有限元模型分析进行了验证,并以广义方式评估了刚度不均匀性的影响。发现第一模式的周期延长是温和的,但是如果梁顶部的剪切刚度小于其基准值的20%,则对于较高的模式,周期延长会更加明显。众所皆知,模态形状也会发生变化,以减少超出同一极限的距离,从而可能在意想不到的位置引起较大的地面加速度要求。还发现,即使在顶部的抗剪刚度是基准值的75%,在被认为是均匀建筑物的情况下,漂移需求也可以得到显着提高。该模型可用于评估建筑物的响应或大量存量,校准复杂模型,评估建筑物内容物的损坏,在短时间内建立大城市的损坏情况,并可以帮助教育,因为重点已重新回到基本概念上。

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