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Modified governing equation and numerical simulation of seepage flow in a single fracture with three-dimensional roughness

机译:具有三维粗糙度的单裂缝渗流修正控制方程及数值模拟

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摘要

Roughness and tortuosity influence groundwater flow through a fracture. Steady flow through a single fracture can be described primitively by the well-known Cubic Law and Reynolds equation with the assumption that the fracture is made of smooth parallel plates. However, ignoring the roughness and tortuosity of the fracture will lead to inaccurate estimations of the flow rate. To obtain a more accurate flow rate through a rough fracture, this paper has derived a modified governing equation, taking into account the three-dimensional effect of the roughness. The equation modifies the Reynolds equation by adding correction coefficients to the terms of the flow rates, which are relative to the roughness angles in both the longitudinal and transverse directions. Experiments of steady seepage flow through sawtooth fractures were conducted. The accuracy of the modified equation has been verified by comparing the experimental data and the theoretical computational data. Furthermore, three-dimensional numerical models were established to simulate the steady flow in rough fractures with the triangular, sinusoidal surfaces and the typical joint roughness coefficient (JRC) profiles. The simulation results were compared with the calculation results of the modified equation and the current equations. The comparison indicates that the flow rate calculated by the modified equation is the closest to the numerical result.
机译:粗糙度和曲折度影响地下水流过裂缝。可以通过众所周知的立方定律和雷诺方程最初描述通过单个裂缝的稳定流动,并假定裂缝由光滑的平行板构成。但是,忽略裂缝的粗糙度和曲折度将导致流量估算不准确。为了获得通过粗糙裂缝的更精确的流速,本文考虑了粗糙度的三维效应,推导了修正的控制方程。该方程式通过向流率项添加校正系数来修改雷诺方程式,该校正系数与纵向和横向方向上的粗糙度角有关。进行了通过锯齿形裂缝的稳定渗流的实验。通过比较实验数据和理论计算数据,已验证了修正方程的准确性。此外,建立了三维数值模型来模拟具有三角形,正弦形表面和典型接头粗糙度系数(JRC)轮廓的粗裂缝中的稳定流动。将仿真结果与修正方程和当前方程的计算结果进行了比较。比较结果表明,通过修正公式计算出的流量最接近数值结果。

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