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Simultaneous measurement and inversion of surface wave dispersion and attenuation curves

机译:同时测量和反转表面波色散和衰减曲线

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摘要

Surface wave tests are non-invasive seismic techniques that have traditionally been used to determine the shear wave velocity (i.e. shear modulus) profile of soil deposits and pavement systems. Recently, Rix et al. [J. Geotech. Geoenviron. Engng 126 (2000) 472] developed a procedure to obtain near-surface values of material damping ratio from measurements of the spatial attenuation of Rayleigh waves. To date, however, the shear wave velocity and shear damping ratio profiles have been determined separately. This practice neglects the coupling between surface wave phase velocity and attenuation that arises from material dispersion in dissipative media. This paper presents a procedure to measure and invert surface wave dispersion and attenuation data simultaneously and, thus, account for the close coupling between the two quantities. The methodology also introduces consistency between phase velocity and attenuation measurements by using the same experimental configuration for both. The new approach has been applied at a site in Memphis, TN and the results obtained are compared with independent measurements.
机译:表面波测试是非侵入性地震技术,传统上已用于确定土壤沉积物和路面系统的剪切波速度(即剪切模量)曲线。最近,Rix等。 [J. Geotech。地球环境。 Engng 126(2000)472]开发了一种从瑞利波的空间衰减测量中获得材料阻尼比的近表面值的程序。然而,迄今为止,已经分别确定了剪切波速度和剪切阻尼比曲线。这种做法忽略了表面波相速度和衰减之间的耦合,衰减是由材料在耗散介质中的分散引起的。本文提出了一种同时测量和反演表面波色散和衰减数据的程序,因此考虑了两个量之间的紧密耦合。该方法还通过使用相同的实验配置在相位速度和衰减测量之间引入一致性。新方法已在田纳西州孟菲斯的一个地点应用,并将获得的结果与独立测量结果进行了比较。

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