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首页> 外文期刊>Bulletin of earthquake engineering >Spatial variability of the urban ground motion in a highly heterogeneous site-city configurations
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Spatial variability of the urban ground motion in a highly heterogeneous site-city configurations

机译:高度异构地点城市配置中城市地面运动的空间变异性

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摘要

Free-field conditions on the ground surface are widely used to assess the local seismic response. Nevertheless, this assumption is a very strong approximation in urban areas since the dynamic interaction between the urban agglomerate and the soil cannot be neglected. Several studies evidenced the transmission of vibrations from the buildings to the soil and the multiple interactions between a building network and the site through so-called Site-City Interaction (SCI). This paper focuses on the spatial variability of the seismic ground motion due to SCI in the case of highly heterogeneous site-city configurations. The Fosso di Vallerano valley in Rome (Italy) has been chosen as a case study because of the high heterogeneity of the deposits which characterize the local geological setting as well as the intensive urbanization. A proper 2D numerical modelling (Finite Elements Method) of the seismic response in free-field conditions as well as with the city agglomerates (SCI-based condition) has been performed. The numerical results show a strong spatial variability of the wave field induced by the presence of the buildings and their interaction with the heterogeneous soil. The SCI effect causes a strong or global reduction of ground motion, amplification levels and kinetic energy close to the buildings. Induced perturbations affect the ground motion along the surface of the model, increasing the amplification values and the kinetic energy in the vicinity of the buildings. These findings highlight that buildings generate significant variability effects all around their foundations as well as in the entire alluvial basin.
机译:地表自由场条件被广泛用于评估局部地震响应。然而,由于城市群与土壤之间的动态相互作用不可忽视,这一假设在城市地区是一个很强的近似值。几项研究证明了振动从建筑物传递到土壤,以及建筑网络和场地之间通过所谓的场地-城市相互作用(SCI)的多重相互作用。本文主要研究在高度不均匀的场地-城市配置情况下,SCI引起的地震地面运动的空间变异性。罗马(意大利)的Fosso di Vallerano山谷之所以被选为案例研究,是因为其矿床的高度非均质性是当地地质环境以及密集城市化的特征。对自由场条件下以及城市群(基于SCI的条件)下的地震响应进行了适当的二维数值模拟(有限元法)。数值结果表明,由于建筑物的存在及其与非均质土壤的相互作用,波场具有很强的空间变异性。SCI效应导致建筑物附近的地面运动、放大水平和动能强烈或整体降低。诱导扰动会影响模型表面的地面运动,从而增加建筑物附近的放大值和动能。这些发现突出表明,建筑物在其地基周围以及整个冲积盆地产生了显著的变异效应。

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