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Numerical Simulation on the Seepage Properties of Soil-Rock Mixture

机译:土石混合料渗流特性的数值模拟

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To reveal the mechanism of water inrush in a fault tunnel and study the influence of different structures on the seepage process, a filling structure composed of a soil skeleton (fixed particles), a movable particles phase, and a water phase is constructed to simulate the rock mass broken by the fault. Fluent software is used to simulate the migration of the water phase in three different filling structures under different initial water velocities and dynamic viscosities. The variation law of the seepage time with the initial water velocity and dynamic viscosity in the three types of filling structures is obtained. The research shows the following (1) the looser the filling structure, the greater the influence of gravity on the water phase seepage; the more compact the filling structure, the greater the spread range of the water phase and the more uniform the spread of the water phase. (2) The seepage time decreases with the increase in the initial water velocity. The seepage time and initial water velocity can be fitted by an exponential function. The effect of initial water velocity on seepage time is much greater than that of the structure. (3) The seepage time is related to both the dynamic viscosity and the structure. The seepage time increases with the increase in dynamic viscosity.
机译:为了揭示断层隧道突水的机理并研究不同结构对渗流过程的影响,构造了由土壤骨架(固定颗粒),可移动颗粒相和水相组成的填充结构,以模拟渗流过程。断层破坏了岩体。 Fluent软件用于模拟三种不同填充结构在不同初始水速和动态粘度下水相的迁移。得到了三种填充结构中渗流时间随初始水速和动态黏度的变化规律。研究表明:(1)填充结构越松散,重力对水相渗流的影响越大;填充结构越紧凑,水相的扩散范围越大,水相的扩散越均匀。 (2)渗水时间随着初始水速的增加而减少。渗透时间和初始水速可以通过指数函数拟合。初始水流速对渗透时间的影响远大于结构的影响。 (3)渗透时间与动力粘度和结构有关。渗透时间随动态粘度的增加而增加。

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