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Determination of the Effective Stress Law for Deformation in Coalbed Methane Reservoirs

机译:煤层气储层变形有效应力定律的确定

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摘要

Effective stress laws and their application are not new, but are often overlooked or applied inappropriately. The complexity of using a proper effective stress law increases when analyzing stress variation in coal as a result of gas production or mining. In this paper, an effective stress law is derived analytically for coalbed methane reservoirs, combining the concepts of matrix shrinkage/ swelling and external stress by including the effect of sorbing gas pressure on the elastic response of the reservoir. The proposed law reduces to that of Terzaghi when the compressibility of bulk material is sufficiently greater than the compressibility of the solid grain, and without the strain associated with matrix shrinkage/swelling effect. Moreover, it is shown that the Biot coefficient (a) can have a value larger than unity for self-swelling/dilation materials, such as coal. The proposed stress-strain relationship was validated using experimental results. Overall, the effective stress law for deformation was extended for sorptive materials, providing a new and unique technique to analyze the elastic behavior of coal by reducing three variables, namely, external stress, pore pressure and matrix shrinkage/swelling along with the associated stress, down to one variable, "effective stress".
机译:有效的压力定律及其应用并不是新事物,但常常被忽视或不适当地应用。当分析由于天然气生产或开采而导致的煤的应力变化时,使用适当的有效应力定律的复杂性会增加。在本文中,通过包括吸附气体压力对储层弹性响应的影响,结合了基质收缩/膨胀和外部应力的概念,通过分析得出了煤层气储层的有效应力定律。当散装材料的可压缩性充分大于固体颗粒的可压缩性,并且没有与基质收缩/溶胀效应相关的应变时,拟议的法则简化为Terzaghi的法则。此外,还显示出对于自溶胀/膨胀材料,例如煤,毕奥系数(a)可以具有大于1的值。利用实验结果验证了所提出的应力-应变关系。总体而言,吸附材料的变形有效应力定律得到了扩展,通过减少三个变量(即外部应力,孔隙压力和基体收缩/溶胀以及相关应力)提供了一种新颖独特的技术来分析煤的弹性行为,归结为一个变量,即“有效压力”。

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