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首页> 外文期刊>Journal of Constructional Steel Research >Seismic performance of single layer steel cylindrical lattice shells
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Seismic performance of single layer steel cylindrical lattice shells

机译:单层钢圆柱格形壳的抗震性能

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This paper examines the elastic and inelastic seismic behaviour of single layer steel cylindrical lattice shells. The main dynamic characteristics for this form of structure are firstly examined through a parametric assessment, which also leads to proposed expressions for estimating the fundamental period and mode of vibration. The seismic response of five typical shell configurations, representing a wide range of rise to span ratios, is then assessed within the linear elastic range under selected earthquake excitations. Particular focus is given to the relative influence of the horizontal and vertical seismic components on the internal actions. In order to provide a means for evaluating the underlying inelastic behaviour, a simple pushover approach, which is suitable for this structural form, is suggested using the forces obtained from the fundamental mode shape. The peak angle change is proposed as a damage parameter within the nonlinear analysis for characterising the inelastic global and local demands in shells of different geometries. Incremental dynamic analysis is subsequently carried out in order to evaluate the detailed nonlinear time history response. The results provide detailed insights into the influence of the horizontal and vertical excitations on the nonlinear seismic response, and illustrate the suitability of the peak angle change as an inelastic deformation measure for shells of different geometric configurations. The main findings from the linear and nonlinear assessments are highlighted within the discussions, with a view to providing guidance for performance based assessment procedures as well as simplified design approaches. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文研究了单层钢圆柱晶格壳的弹性和非弹性地震行为。首先通过参数评估来检查这种结构形式的主要动力特性,这也导致提出了用于估计基本周期和振动模式的表达式。然后,在选定的地震激励下,在线性弹性范围内评估五种典型壳体结构的地震响应,这些结构代表了宽广的跨度比范围。特别关注水平和垂直地震分量对内部作用的相对影响。为了提供一种评估潜在的非弹性行为的方法,建议使用一种从基本模式形状获得的力来适用于此结构形式的简单推覆方法。在非线性分析中,建议将峰角变化作为损伤参数,以表征不同几何形状的壳体中的非弹性整体和局部需求。随后进行增量动态分析,以评估详细的非线性时程响应。结果提供了对水平和垂直激励对非线性地震响应的影响的详细见解,并说明了峰角变化作为不同几何构型的壳体的非弹性变形量度的适用性。讨论中重点介绍了线性和非线性评估的主要发现,以期为基于性能的评估程序以及简化的设计方法提供指导。 (C)2019 Elsevier Ltd.保留所有权利。

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