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首页> 外文期刊>Journal of Applied Geophysics >Shallow geology characterization using Rayleigh and Love wave dispersion curves derived from seismic noise array measurements
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Shallow geology characterization using Rayleigh and Love wave dispersion curves derived from seismic noise array measurements

机译:使用从地震噪声阵列测量中得出的瑞利波和洛夫波频散曲线来浅层地质特征

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The local geology and shallow S-wave velocity structure of a site are recognized to be key factors for the increase in the damaging potential of seismic waves. Indeed, seismic amplitudes may be amplified in frequency ranges unfavorable for building stock by the presence of soft sedimentary covers over lying hard bedrock. Hence, microzonation activities, which aim at assessing the site response as accurately as possible, have become a fundamental task for the seismic risk reduction of urbanized areas. Methods based on the measurement of seismic noise, which typically are fast, non-invasive, and low cost, have become a very attractive option in microzonation studies.Using observations derived from seismic noise recordings collected by two-dimensional arrays of seismic stations, we present a novel joint inversion scheme for surface wave curves. In particular, the Love wave, the Rayleigh wave dispersion and the HVSR curves are innovatively combined in a joint inversion procedure carried out following a global search approach (i.e., the Genetic Algorithm).The procedure is tested using a data set of seismic noise recordings collected at the Bevagna (Italy) test-site. The results of the novel inversion scheme are compared with the inversion scheme proposed by Parolai et al. (2005), where only Rayleigh wave dispersion and HVSR curves are used, and with a cross-hole survey.
机译:现场的局部地质和浅S波速度结构被认为是增加地震波破坏潜力的关键因素。实际上,由于位于坚硬的基岩上的软沉积覆盖层,地震振幅可能会在不利于建筑材料的频率范围内放大。因此,旨在尽可能准确地评估场地响应的微区划活动已经成为减少城市化地区地震风险的一项基本任务。基于地震噪声的测量方法通常是快速,无创且成本低的方法,已成为微区划研究中非常有吸引力的选择。使用由二维地震台站阵列收集的地震噪声记录得出的观测值,我们提出了一种新颖的表面波曲线联合反演方案。特别是,Love波,Rayleigh波频散和HVSR曲线在按照全局搜索方法(即遗传算法)进行的联合反演程序中进行了创新性的组合。该程序使用地震噪声记录的数据集进行了测试在意大利的Bevagna测试地点收集。将新型反演方案的结果与Parolai等人提出的反演方案进行了比较。 (2005年),其中仅使用瑞利波频散和HVSR曲线,并进行了跨孔测量。

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