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Influence of soil-structure interaction on seismic demands in shear wall building gravity load frames

机译:土-结构相互作用对剪力墙建筑物重力荷载框架中地震需求的影响

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This paper presents a complete and simple linear method, with a suitable force modification factor, to compute seismic demands in the gravity load resisting system (GLRS) of shear wall buildings including foundation movement. Based on the method first proposed by Beauchamp, Paultre and Leger in 2017, this paper compares two approaches to consider foundation movement on linear soil media such as (a) a simple rotational spring under each core and (b) a complete set of springs and dashpots. A fixed-base model using code foundation factors is also used for comparison. Springs and dashpots are assessed by modelling soil-structure interaction (SSI) with solid finite elements. Then, these approaches are evaluated for a typical 12-storey concrete shear wall building considering several nonlinear time history analyses (NLTHAs). SSI is modelled with a set of springs and dashpots, and ground motions are selected from the conditional spectrum method. NLTHAs are performed for soil classes ranging from stiff to soft, and the effect of the underground structure cracking is analysed. Analysis results show that the proposed methods are accurate in computing seismic demands in the GLRS compared to NLTHA. Foundation movements should be explicitly modelled for soil class D or softer, and underground structure cracking should be considered. For the very soft soil class E, the behaviour of the building is poorly captured in linear analysis methods; thus, nonlinear analyses are required.
机译:本文提出了一种完整且简单的线性方法,具有适当的力修正因子,可以计算剪力墙建筑物的重力抵抗系统(GLRS)的地震需求,包括地基运动。基于Beauchamp,Paultre和Leger于2017年首次提出的方法,本文比较了两种考虑线性土壤介质上地基运动的方法,例如(a)每个岩心下方的简单旋转弹簧和(b)完整的弹簧组以及阻尼器。使用代码基础因子的固定基础模型也用于比较。通过对具有固体有限元的土壤-结构相互作用(SSI)进行建模来评估弹簧和减震器。然后,考虑了几种非线性时程分析(NLTHA),对典型的12层混凝土剪力墙建筑物评估了这些方法。用一组弹簧和减震器对SSI进行建模,并从条件频谱方法中选择地震动。 NLTHAs适用于从硬到软的各种土壤类型,并分析了地下结构开裂的影响。分析结果表明,与NLTHA相比,所提方法在GLRS中的地震需求计算中是准确的。应为D类或更软的土壤明确模拟地基运动,并应考虑地下结构的开裂。对于E类非常柔软的土壤,在线性分析方法中很难捕捉到建筑物的行为。因此,需要进行非线性分析。

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