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Soil behaviour beneath buildings with structural and foundation rocking

机译:具有结构和基础摇摆的建筑物下方的土壤行为

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Structural or foundation rocking are effective ways to prevent the development of large force demands in building systems experiencing ground shaking. In practice, structural rocking may result in large displacements and therefore is often accompanied with dampers, while residual and differential settlements are sometimes a barrier for utilisation of foundation rocking. This paper presents a novel approach to test simultaneously in a centrifuge the performances of a building model rocking above its foundation level (structural rocking) and of a dynamically equivalent building rocking below its foundation level (foundation rocking). These tests are used to explore the role of the foundation and soil response when considering the relative trade-offs between the two building types. In the experiments, dry sand was used in both dense and loose states and a series of earthquake excitations were applied. Results demonstrate that the rocking motion of the buildings is evident in the soil response beneath the structures, and foundation rocking causes larger dynamic differential settlements than structural rocking for a given rocking amplitude. However, these differential settlements may still be small enough to be tolerated from a serviceability limit state point of view.
机译:结构或基础摇摆是防止在经历地面震动的建筑系统中产生较大力量需求的有效方法。在实践中,结构性摇摆可能会导致较大的位移,因此通常会伴随有阻尼器,而残余沉降和差异沉降有时会成为利用基础摇摆的障碍。本文提出了一种新颖的方法,可以在离心机中同时测试建筑物模型在基础水平以上摇摆(结构摇摆)和动态等效建筑物在基础水平以下摇摆(基础摇摆)的性能。当考虑两种建筑类型之间的相对权衡时,这些测试用于探究地基和土壤响应的作用。在实验中,在密实和松散状态下都使用了干砂,并进行了一系列地震激发。结果表明,建筑物的摇摆运动在结构下方的土壤响应中是明显的,并且在给定的摇摆幅度下,基础摇摆比结构摇摆引起更大的动态微分沉降。但是,这些差异沉降仍可能足够小,从可维修性极限状态的角度来看是可以容忍的。

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