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首页> 外文期刊>Journal of Applied Geophysics >The porosity of saturated shallow sediments from seismic compressional and shear wave velocities
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The porosity of saturated shallow sediments from seismic compressional and shear wave velocities

机译:由地震波和切变波速度引起的饱和浅层沉积物的孔隙度

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摘要

This study devises a new analytical relationship to determine the porosity of water-saturated soils at shallow depth using seismic compressional and shear wave velocities. Seismic refraction surveys together with soil sample collection were performed in selected areas containing water-saturated clay-silt, sand and gravely soils. Classification of clay-silt, sand and gravel dense soils provided the coefficient of experimental equation between the data sets, namely, Poisson's ratio, shear modulus and porosity values. This study presents a new analytical relationship between Poisson's ratio and shear modulus values, which are obtained from seismic velocities and porosity values of water-saturated material computed from water content and grain densities, which are determined by laboratory analysis of disturbed samples. The analytical relationship between data sets indicates that when the shear modulus of water-saturated loose soil increases, porosity decreases logarithmically. If shear modulus increases in dense or solid saturated soils, porosity decreases linearly.
机译:这项研究设计了一种新的分析关系,可以利用地震压缩和剪切波速度确定浅深度的水饱和土壤的孔隙度。在选定的含水饱和的粘土-粉砂,沙子和严重土壤的地区进行了地震折射调查以及土壤样品收集。粘土-粉砂,沙子和砾石致密土壤的分类提供了数据集之间的实验方程系数,即泊松比,剪切模量和孔隙率值。这项研究提出了泊松比与剪切模量值之间的新分析关系,泊松比与剪切模量值是从含水量和颗粒密度计算得出的饱和材料的地震速度和孔隙率值中得出的,而含水率和颗粒密度是通过对扰动样品的实验室分析确定的。数据集之间的分析关系表明,当水饱和的松散土的剪切模量增加时,孔隙率将呈对数减小。如果在稠密或固态饱和土壤中的剪切模量增加,则孔隙率线性下降。

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