We here analyze a new model of transients of pore pressurepand solute densityρ On the Theory of Solitons of Fluid Pressure and Solute Density in Geologic Porous Media, with Applications to Shale, Clay and Sandstone
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On the Theory of Solitons of Fluid Pressure and Solute Density in Geologic Porous Media, with Applications to Shale, Clay and Sandstone

机译:在地质多孔介质中流体压力和溶质密度的孤子理论,应用于页岩,粘土和砂岩

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AbstractWe here analyze a new model of transients of pore pressurepand solute densityρin geologic porous media. This model is rooted in the nonlinear wave theory, its focus is on advection and effect of large pressure jumps on strain. It takes into account nonlinear and also time-dependent versions of the Hooke law about stress, rate and strain. The model solutions strictly relatepandρevolving under the effect of a strong external stress. As a result, the presence of quick and sharp transients in low permeability rocks is unveiled, i.e., the nonlinear “Burgers solitons”. We, therefore, show that the actual transport process in porous rocks for large signals is not only the linear diffusion, but also a solitons presence could control the process. A test of a presence of solitons is applied to Pierre shale, Bearpaw shale, Boom clay and Oznam-Mugu silt and clay. An application about the presence of solitons for nuclear waste disposal and salt water intrusions is also discussed. Finally, in a kind of “theoretical experiment” we show that solitons could also be present in higher permeability rocks (Jordan and St. Peter sandstones), thus supporting the idea of a possible occurrence of osmosis also in sandstones.]]>
机译:<![CDATA [<标题>抽象 我们在此处分析了一个新的孔隙压力瞬态模型<重点类型=“斜体”> P 并溶质密度<重点在地质多孔介质中键入=“斜体”>ρ。该模型植根于非线性波理论,其重点是对大压力跳跃对应变的影响和影响。它考虑了关于应激,速率和菌株的起搏法的非线性和时间依赖性版本。模型解决方案严格相关<重点类型=“斜体”> P 和<重点类型=“斜体”>ρ在强大的外部压力的效果下演变。结果,揭开了低渗透性岩石的快速和尖锐瞬变的存在,即非线性“汉堡孤子”。因此,我们表明,对于大信号的多孔岩石中的实际运输过程不仅是线性扩散,而且孤子存在也可以控制该过程。对Pierre Shale,Bearpaw Shale,Boom Clay和Oznam-Mugu Silt和Clay的测试应用了孤子的存在。还讨论了关于核废料处理和盐水侵入的存在的应用。最后,在一种“理论实验”中,我们表明,孤子也可以存在于更高的渗透性岩石中(Jordan和St. Peter Sandstones),因此支持砂岩中可能发生渗透性的想法。] ]

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