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Experimental study of the elastic wave propagation in the granular composite material

机译:粒状复合材料中弹性波传播的实验研究

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摘要

Volume contents of gas hydrates generated in porespace may change properties of elastic wave propagation in rock.One can anticipate estimating the volume of the generated gashydrates, when elastic velocities in this rock are measured bymeans of either seismic data processing or well log.The wave propagation has historically been studied under thecondition of two phases, i.e., matrix and fluid in the pore of thematrix. Once the gas hydrate is generated in the pore space, anadditional solid property to the two-phase model shall be takeninto the accunt to study this wave propagation. New numericalmodel is introduced to examine the relationship between volumeof gas hydrate contents and velocity change of elastic wave. Themodel is namely the extended Biot theory dealt with the threephases; matrix, fluid and second matrix to explain the laboratoryvelocity measurements of three-phase condition.The laboratory specimens filled in an acrylic resin case equippedwith velocity sensors are composed of glass beads as the matrix,Kibushi clay as the second matrix, and air or water in the porespace. The 3 cm sensor depth beneath the specimen surface isconsidered to be simulated the measurement at a poor consolidated porous media.This paper shows the comparison of this three-phase numericalmodel with the elastic velocity measurements.
机译:在孔径中产生的气体水合物的体积含量可以改变Rock中的弹性波传播的性能。当该岩石中的弹性速度通过地震数据处理或良好的日志测量该岩石的弹性速度时,可以预期估计产生的Gashydrate的体积。波传播在历史上,在两个阶段的调味情况下进行了研究,即在Thematrix的孔隙中的矩阵和液体。一旦气体水合物在孔隙空间产生,两相模型的Anadditional固体性质应当是研究该波传播的助手。引入了新的数值模型,以检查体积气水合物含量与弹性波的速度变化之间的关系。 Themodel是延伸的BIOS理论与三个相提并论;矩阵,流体和第二基质解释了三相条件的实验室差价测量。填充在丙烯酸树脂盒中的实验室标本,其配备的速度传感器由玻璃珠作为基质,作为第二基质的玻璃泥,以及空气或水的玻璃珠组成,以及空气或水宿客。在样品表面下方的3cm传感器深度被认为是在较差的综合多孔介质上模拟测量。本文显示了该三相数值模型与弹性速度测量的比较。

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