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Permeability and permeability anisotropy in Crab Orchard sandstone:experimental insights into spatio-temporal effects

机译:螃蟹果园砂岩的渗透率和渗透率各向异性:对时空效应的实验见解

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摘要

Permeability in tight crustal rocks is primarily controlled by the connected porosity, shape and orientation of microcracks, the preferred orientation of cross-bedding, and sedimentary features such as layering. This leads to a significant permeability anisotropy. Less well studied, however, are the effects of time and stress recovery on the evolution of the permeability hysteresis which is becoming increasingly important in areas ranging from fluid migration in ore-forming processes to enhanced resource extraction. Here, we report new data simulating spatio-temporal permeability changes induced using effective pressure, simulating burial depth, on a tight sandstone (Crab Orchard). We find an initially (measured at 5 MPa) anisotropy of 2.5% in P-wave velocity and 180% in permeability anisotropy is significantly affected by the direction of the effective pressure change and cyclicity; anisotropy values decrease to 1% and 10% respectively after 3 cycles to 90 MPa and back. Furthermore, we measure a steadily increasing recovery time (10–20 min) for flow parallel to cross-bedding, and a far slower recovery time (20–50 min) for flow normal to cross-bedding. These data are interpreted via strain anisotropy and accommodation models, similar to the “seasoning” process often used in dynamic reservoir extraction.
机译:在致密的地壳岩石中的渗透率主要受孔隙度,微裂纹的形状和方向,交叉层理的首选方向以及诸如分层等沉积特征的控制。这导致明显的渗透率各向异性。然而,时间和应力恢复对渗透率滞后演变的影响研究较少,这在从成矿过程中的流体运移到增强的资源开采等领域变得越来越重要。在这里,我们报告了一个新数据,该数据模拟了在致密砂岩(蟹园)上使用有效压力诱导的时空渗透率变化,模拟了埋藏深度。我们发现有效压力变化方向和周期性会显着影响初始(在5 MPa下测量)各向异性(P波速度为2.5%,渗透率各向异性为180%)。 3个循环至90 MPa后,各向异性值分别降低至1%和10%。此外,我们测量了与交叉层流平行的流的恢复时间(10-20分钟)稳定增加,而垂直于交叉层流的流的恢复时间(20-50分钟)则慢得多。这些数据是通过应变各向异性和适应模型来解释的,类似于动态储层提取中经常使用的“调​​味”过程。

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