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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Experimental and Numerical Investigation of Preferential Flow in Fractured Network with Clogging Process
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Experimental and Numerical Investigation of Preferential Flow in Fractured Network with Clogging Process

机译:堵塞过程中裂隙网络优先流的实验与数值研究

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摘要

In this study, physical experiments and numerical simulations are combined to provide a detailed understanding of flow dynamics in fracture network. Hydraulic parameters such as pressure head, velocity field, Reynolds number on certain monitoring cross points, and total flux rate are examined under various clogging conditions. Applying the COMSOL Multiphysics code to solve the Navier-Stokes equation instead of Reynolds equation and using the measured data to validate the model, the fluid flow in the horizontal 2D cross-sections of the fracture network was simulated. Results show that local clogging leads to a significant reshaping of the flow velocity field and a reduction of the transport capacity of the entire system. The flow rate distribution is highly influenced by the fractures connected to the dominant flow channels, although local disturbances in velocity field are unlikely to spread over the whole network. Also, modeling results indicate that water flow in a fracture network, compared with that in a single fracture, is likely to transit into turbulence earlier under the same hydraulic gradient due to the influence of fracture intersections.
机译:在这项研究中,物理实验和数值模拟相结合,以提供对裂缝网络流动动力学的详细了解。在各种堵塞条件下,都要检查液压参数,例如压头,速度场,某些监控交叉点的雷诺数和总通量率。应用COMSOL Multiphysics代码而不是Reynolds方程来求解Navier-Stokes方程,并使用实测数据对模型进行验证,模拟了裂缝网络水平二维截面中的流体流动。结果表明,局部堵塞会导致流速场的重塑,并降低整个系统的传输能力。尽管速度场的局部扰动不太可能分布在整个网络中,但流量分布受连接到主要流动通道的裂缝的影响很大。此外,建模结果表明,与裂缝中的水流相比,裂缝中的水流在相同的水力梯度下可能会由于裂缝相交的影响而更早地转化为湍流。

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