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Surface wave studies for shear wave velocity and bedrock depth estimation over basalts

机译:玄武岩表面波研究的剪切波速度和基岩深度估计

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Shear wave velocity (V_S) estimation is of paramount importance in earthquake hazard assessment and other geotechnical/geo engineering studies. In our study, the shear wave velocity was estimated from ground roll using multichannel analysis of surface wave (MASW) technique making use of dispersive characteristics of Rayleigh type surface waves followed by imaging the shallow subsurface basaltic layers in an earthquake-prone region near Jabalpur, India. The reliability of MASW depends on the accurate determination of phase velocities for horizontally traveling fundamental mode Rayleigh waves. Inversion of data from surface waves resulted in a shear wave velocity (V_S) in the range of 200-1,200 m/s covering the top soil to weathering and up to bedrock corresponding to a depth of 10-30 m. The P-wave velocity (V_P) obtained from refraction seismic studies at these locations found to be comparable with V_S at an assumed specific Poisson’s ratio. A pair of selected set of V_S profiles over basalt which did not result in a hazardous situation in an earthquake of moderate magnitude are presented here as a case study; in other words, the shear wave velocity range of more than 200 m/s indicate that the area is highly unlikely prone to liquefaction during a moderate or strong earthquake. The estimated depth to basalt is found to be 10-12 m in both the cases which is also supported by refraction studies.
机译:剪切波速度(V_S)估计在地震灾害评估和其他岩土/地质工程研究中至关重要。在我们的研究中,利用瑞利型表面波的弥散特性,利用表面波多通道分析(MASW)技术从地滚波中估算出剪切波速度,然后对贾巴尔普尔附近地震多发区的浅层地下玄武岩层成像,印度。 MASW的可靠性取决于对水平传播的基模瑞利波的相速度的准确确定。来自表面波的数据反演导致剪切波速度(V_S)在200-1,200 m / s的范围内,覆盖表层土壤直至风化,直至基岩,深度为10-30 m。从这些位置的折射地震研究获得的P波速度(V_P)在假定的特定泊松比下可与V_S相比。此处提供了一对选定的玄武岩上的V_S剖面图集,它们在案例中没有引起中度地震的危险情况。换句话说,剪切波速度范围大于200 m / s表示该区域在中等或强烈地震期间极不可能发生液化。在两种情况下,估计到玄武岩的深度为10-12 m,这也得到折射研究的支持。

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