孔力学
比奥数
孔隙水压力
地质学
岩土工程
多孔性
变形(气象学)
流体力学
流体压力
机械
压缩(物理)
多孔介质
材料科学
复合材料
物理
海洋学
作者
Emmanuel Detournay,Alexander H.‐D. Cheng
出处
期刊:Elsevier eBooks
[Elsevier]
日期:1993-01-01
卷期号:: 113-171
被引量:558
标识
DOI:10.1016/b978-0-08-040615-2.50011-3
摘要
This chapter focuses on fundamentals of poroelasticity. The presence of a freely moving fluid in a porous rock modifies its mechanical response. Two mechanisms play a key role in the interaction between the interstitial fluid and the porous rock: (i) an increase of pore pressure induces a dilation of the rock; and (ii) compression of the rock causes a rise of pore pressure, if the fluid is prevented from escaping the pore network. These coupled mechanisms bestow an apparent time-dependent character to the mechanical properties of the rock. If excess pore pressure, induced by compression of the rock, is allowed to dissipate through diffusive fluid mass transport, further deformation of the rock progressively takes place. The rock is more compliant under drained conditions than undrained ones. The chapter discusses the formulation and analysis of coupled deformation–diffusion processes, within the framework of the Biot theory of poroelasticity. The Biot model of a fluid-filled porous material is constructed on the conceptual model of a coherent solid skeleton and a freely moving pore fluid.
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