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首页> 外文期刊>Journal of Applied Geophysics >Shallow and in depth seismic testing in urban environment: A case study in Lisbon Miocene stiff soils using joint inversion of active and passive Rayleigh wave measurements
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Shallow and in depth seismic testing in urban environment: A case study in Lisbon Miocene stiff soils using joint inversion of active and passive Rayleigh wave measurements

机译:城市环境中浅层和深度地震检测:利用主动和无源瑞利波测量的联合反演中的里斯本中间丁烯土壤案例研究

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The use of Surface Wave Methods for the characterization of the shear wave velocity profile of the soil has become increasingly attractive due to its non-invasive nature and its ability to provide information at a larger scale. Their main drawbacks are the non-uniqueness of the solution and high uncertainty of the results at higher depths. Its application in dense urban areas can be challenging due to the proximity to underground structures, high background noise level and space limitations. This paper describes a case study on the use of surface wave based methods on stiff soil in urban environment within a confined area located in Lisbon city, Portugal, surrounded by buildings and between an underground car park and the subway tunnel. The old building, built in the study area, was demolished for the construction of a new building with five basement floors. During this process, passive and active linear array and passive three-component single-station measurements were made at the surface level, before the works started, and at 2 deeper excavation levels. The results obtained using shallow and in depth measurements were compared, including HVSR and Rayleigh wave ellipticity curves and Vs profiles obtained through the conventional MASW method and through the joint inversion of both Rayleigh wave dispersion and ellipticity curves. A deeper Vs profile with low uncertainty was obtained through the joint analysis of Rayleigh wave dispersion and ellipticity curves, compatible with Vs profile obtained in depth. (C) 2019 Published by Elsevier B.V.
机译:由于其非侵入性性质及其提供更大规模的信息,因此使用用于剪切波速曲线的表征的表面波方法已经越来越吸引。它们的主要缺点是解决方案的非唯一性,并且在更高深度的结果的高不确定性。由于靠近地下结构,高背景噪声水平和空间限制,其在密集城市地区的应用可能具有挑战性。本文介绍了在位于里斯本市,葡萄牙的狭窄区域内城市环境对城市环境僵硬土壤的使用案例研究。由建筑物周围的建筑物和地铁隧道之间。在研究区内建造的旧建筑被拆除,以建造一个有五​​层地下地板的新建筑。在此过程中,在开始工作之前,在表面级和2个更深的挖掘水平之前,在表面级进行了被动和有源线性阵列和被动三组件单台测量。比较使用浅和深度测量获得的结果,包括通过传统的MASW方法获得的HVSR和瑞利波椭圆曲线和VS型材,并通过瑞利波分散和椭圆曲线的联合反演。通过对瑞利波色散和椭圆形曲线的联合分析获得具有低不确定性的更深的VS型材,与深度获得的VS曲线兼容。 (c)2019年由elestvier b.v发布。

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