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SIMPLIFIED EQUIVALENT LINEAR AND NONLINEAR SITE RESPONSE ANALYSIS OF PARTIALLY SATURATED SOIL LAYERS

机译:部分饱和土层的简化等效线性和非线性场地响应分析

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Dynamic properties of soils including small-strain shear modulus (G_(max)), shear modulus reduction function (G/G_(max)), and damping (D) are affected by changes in the degree of saturation. Inter-particle suction forces in partially saturated soils result in higher effective stress values, which in turn, vary the dynamic soil properties. These alterations could lead to different wave propagation mechanisms, acceleration amplification patterns, and seismically induced settlements. This paper aims to identify the challenges involved in nonlinear seismic site response analysis of partially saturated soils by looking at the response of 10-m sand and silt layers with different constant suction profiles. A set of frequency domain equivalent linear and nonlinear site response analysis under scaled Northridge earthquake motion was performed. A modified version of Bishop's effective stress equation for partially saturated soils has been utilized to calculate the dynamic soil properties (i.e. G_(max), G/G_(max), and D). Specifically, surface-to-base intensity amplifications (Peak Ground Amplifications and Arias Intensities), spectral accelerations, and lateral deformation profiles of the sand and silt layers with different suction profiles were generated and compared. The insight gained from this study was used to plan and design more complex nonlinear Finite Element site response analysis.
机译:土的动力特性包括小应变剪切模量(G_(max)),剪切模量降低函数(G / G_(max))和阻尼(D)受饱和度变化的影响。部分饱和土壤中的颗粒间吸力会导致较高的有效应力值,从而改变动态土壤特性。这些变化可能导致不同的波传播机制,加速度放大方式和地震诱发的沉降。本文旨在通过观察具有不同恒定吸力剖面的10 m砂土和粉砂层的响应,来确定部分饱和土壤的非线性地震现场响应分析所面临的挑战。在规模化的Northridge地震运动下,进行了一组频域等效线性和非线性场地响应分析。 Bishop针对部分饱和土壤的有效应力方程的修改版本已用于计算动态土壤特性(即G_(max),G / G_(max)和D)。具体来说,生成并比较了具有不同吸力分布的沙土和粉砂层的地基强度放大(峰值地面放大和Arias强度),光谱加速度和横向变形分布。从这项研究中获得的见识被用于计划和设计更复杂的非线性有限元站点响应分析。

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