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Permeability Evolution of Granite Gneiss During Triaxial Creep Tests

机译:三轴蠕变试验期间花岗岩肺泡的渗透性演变

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Permeability is an important factor for seepage analysis of rock material, and a key factor in ensuring the safety of underground works. In this study, the permeability evolution of granite gneiss during triaxial creep tests was investigated. In the context of an underground oil storage cavern in China, a series of hydro-mechanical coupling creep tests were conducted on rock cores of granite gneiss at three different pore pressures to reveal the effect of pore pressure on the permeability evolution and to investigate the correlation between the permeability and volumetric strain during the creep process. During the creep tests, the permeability decreases in the initial loading phase. At all deviatoric stress levels, the permeability remains stable in the steady creep stage and increases rapidly in the accelerated creep stage. Based on the test data, the initial permeability, steady permeability and peak permeability at various stress levels are defined. The effect of pore pressure on the permeability is captured by a linear model. In addition, the relationship between permeability and volumetric strain can be described as a process divided into three phases, with different functions in each phase.
机译:渗透性是岩石材料渗流分析的重要因素,以及确保地下工程安全的关键因素。在这项研究中,研究了三轴蠕变试验期间花岗岩片的渗透性演化。在中国地下储油洞穴的背景下,在三种不同的孔隙压力下在花岗岩片的岩石芯上进行了一系列水力机械耦合蠕变试验,以揭示孔隙压力对渗透性进化的影响并研究相关性在蠕变过程中的渗透率和体积应变之间。在蠕变测试期间,磁导率在初始加载阶段减少。在所有偏离偏见的应力水平,渗透率在稳定的蠕变阶段保持稳定,并且在加速蠕变阶段迅速增加。基于测试数据,定义了各种应力水平的初始渗透性,稳定性渗透率和峰值渗透率。通过线性模型捕获孔隙压力对渗透性的影响。另外,可以将渗透率和体积应变之间的关系描述为分为三个阶段的过程,每个阶段具有不同的功能。

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