首页> 外文期刊>Izvestiya. Physics of the solid earth >Tidal Generated Electric Field in the Multi-Layer Structure and the Possibilities of Its Employment for Deriving the Elastic Properties and Permeability of the Subsurface Formations
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Tidal Generated Electric Field in the Multi-Layer Structure and the Possibilities of Its Employment for Deriving the Elastic Properties and Permeability of the Subsurface Formations

机译:潮汐产生的电场在多层结构中,以及其采用的可能性,用于导出地下地层的弹性性质和渗透性

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An analytical solution of pore pressure equations assuming the source of its perturbation in the form of lunar-solar tidal deformations, is generalized to the case of a model with an arbitrary number of layers. The calculation of the electric field of the electrokinetic nature is made. An assessment is made of the sensitivity of pore pressure and its vertical derivative to the elastic properties and permeability of rock strata. An inverse problem soultion program code is developed, capable of recovering the Biot modulus and Biot coefficient, as well as the permeability coefficient in a horizontally layered model. The possibilities of mapping these parameters are discussed, involving the borehole measurements of the vertical electric field of electrokinetic origin.
机译:假设月球太阳能潮汐变形形式的孔隙压力方程的分析溶液是以月度太阳能潮汐变形的形式推广到具有任意数量的模型的情况。 制造电动性质的电场的计算。 评估是对孔隙压力的敏感性及其垂直衍生物与岩石地层的弹性性能和透性的敏感性。 开发了一个逆问题,能够恢复Biot模量和Biot系数,以及水平分层模型中的渗透系数。 讨论了映射这些参数的可能性,涉及垂直电动源的垂直电场的钻孔测量。

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