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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Numerical simulation of double-diffusion driven convective flow and rock alteration in three-dimensional fluid-saturated geological fault zones
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Numerical simulation of double-diffusion driven convective flow and rock alteration in three-dimensional fluid-saturated geological fault zones

机译:三维流体饱和地质断层带双扩散驱动的对流流动和岩石蚀变的数值模拟

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摘要

Numerical methods are used to simulate the double-diffusion driven convective pore-fluid flow and rock alteration in three-dimensional fluid-saturated geological fault zones. The double diffusion is caused by a combination of both the positive upward temperature gradient and the positive downward salinity concentration gradient within a three-dimensional fluid-saturated geological fault zone, which is assumed to be more permeable than its surrounding rocks. In order to ensure the physical meaningfulness of the obtained numerical solutions, the numerical method used in this study is validated by a benchmark problem, for which the analytical solution to the critical Rayleigh number of the system is available. The theoretical value of the critical Rayleigh number of a three-dimensional fluid-saturated geological fault zone system can be used to judge whether or not the double-diffusion driven convective pore-fluid flow can take place within the system. After the possibility of triggering the double-diffusion driven convective pore-fluid flow is theoretically validated for the numerical model of a three-dimensional fluid-saturated geological fault zone system, the corresponding numerical solutions for the convective flow and temperature are directly coupled with a geochemical system. Through the numerical simulation of the coupled system between the convective fluid flow, heat transfer, mass transport and chemical reactions, we have investigated the effect of the double-diffusion driven convective pore-fluid flow on the rock alteration, which is the direct consequence of mineral redistribution due to its dissolution, transportation and precipitation, within the three-dimensional fluid-saturated geological fault zone system.
机译:数值方法用于模拟三维扩散饱和地质断层带中双扩散驱动的对流孔隙流和岩石蚀变。双重扩散是由三维饱和流体地质断层带内的正向上温度梯度和正向下盐度浓度梯度共同引起的,该断层被认为比其周围的岩石更具渗透性。为了确保所获得的数值解的物理意义,本研究中使用的数值方法通过基准问题进行了验证,针对该问题可以使用系统临界瑞利数的解析解。三维流体饱和地质断层带系统的临界瑞利数的理论值可用于判断系统内是否会发生由双扩散驱动的对流孔隙流。理论上验证了三维流体饱和地质断裂带系统数值模型触发双扩散驱动对流孔隙流的可能性后,将对流和温度的相应数值解直接与地球化学系统。通过对流流体,传热,传质和化学反应之间耦合系统的数值模拟,我们研究了双扩散驱动的对流孔隙流对岩石蚀变的影响,这是岩石的直接结果。在三维流体饱和地质断层带系统中,由于其溶解,运输和沉淀而导致的矿物重新分布。

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