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Analysis of seepage evolution law of rock mass based on the numerical algorithm considering strength weakening water absorption

机译:基于弱化吸水性的基于数值算法的岩体渗流演化定律分析

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摘要

Conventional numerical methods for modeling water seepage hardly provide a realistic description for the associated degradation of rock material and the permeability evolution mechanism. A numerical algorithm was utilized to investigate the rock seepage evolution process and the course of deformation failure. A theoretical model for depicting the weakening of rocks modulus and strength caused by water absorption in rock substrate was developed, and the mathematical relationships are presented in this paper. The softening process of a siltstone specimen due to water absorption was simulated under low- and high-fluid pressures as the boundary condition based on the theoretical model. Moreover, uniaxial compression test was performed for the specimen under different time of water absorption. The results indicated that the higher the fluid pressure, the quicker that the rock specimen reached saturation. It was observed that at the beginning of a seepage process, the openings are mainly filled by free water, but as time proceeds, there is a transition from absorption of free water in openings to water absorption by rock substrate. Fluid pressure, as the boundary condition, has a controlling effect on seepage rate but barely has any effect on the rate of water absorption in rock substrate. As the time of water absorption increases, rock strength (cohesion and angle of internal friction) decreases gradually until reaching the residual value. The numerical estimation of the changes in water content of rock substrate over time agrees with the theoretical explanations, which indicates high precision of the developed numerical method.
机译:用于建模水渗流的常规数值方法几乎没有提供岩石材料的相关降解和渗透性进化机制的实际描述。利用数值算法研究了岩渗流进化过程和变形失败的过程。开发了一种理论模型,用于描绘岩石衬底中吸水引起的岩石模量和强度的弱化,本文提出了数学关系。在基于理论模型的边界条件下,在低流体压力下模拟了由于吸水性而导致的硅铁晶试样的软化过程。此外,在不同吸水时间下对样品进行单轴压缩试验。结果表明,流体压力越高,岩石标本达到饱和的越快。观察到在渗流过程开始时,开口主要由自由水填充,但随着时间的继续,随着岩石基材的开口空气吸收的空气吸收,存在从空气吸收的过渡。作为边界条件,流体压力对渗流速率的控制效果,但几乎没有对岩石基材中吸水率的影响。随着吸水时间增加,岩石强度(内摩擦角)逐渐降低,直到达到残余值。随着时间的推移,岩基状含水量变化的数值估计与理论上的解释,这表明了显影数值方法的高精度。

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