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A Modified Cubic Law for single-phase saturated laminar flow in rough rock fractures

机译:粗糙岩骨折单相饱和层流的改性立方法

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The purpose of the study presented was to develop a Modified Cubic Law (MCL) for single-phase saturated laminar flow in rough rock fractures. Based on the fundamental assumptions made for the Cubic Law (CL), the proposed MCL incorporates modifications to the aperture field by considering flow tortuosity, aperture variation and local roughness effects. We assess the performance of the MCL by applying it to synthetic fractures with different surface roughness and varying aperture and compare the outputs to numerical simulation results from solving the Navier-Stokes Equations and results from previous versions of CL-based models. In general, the MCL performs well in predicting the volumetric flow rate in synthetic fractures with deviations (D) from simulation results ranging from -11.1% to 8.4% and an average effective deviation of 4.7%. The proposed model retains the simplicity of CL models and improves the accuracy of flow prediction in terms of single-phase saturated laminar flow in rough rock fractures and it can be extended to analyse other hydro-related problems.
机译:本研究的目的是在粗糙岩石骨折中开发用于单相饱和层流的改性立方法(MCL)。基于对立方法(CL)所做的根本假设,所提出的MCL通过考虑流动曲折,孔径变异和局部粗糙度效应来掺入孔径的修改。我们通过将其应用于具有不同表面粗糙度和变化的孔径的合成骨折来评估MCL的性能,并将输出与数值模拟的结果进行比较,从而解决了Navier-Stokes方程和来自先前版本的基于CL的模型的结果。通常,MCL在预测与偏差(D)的合成骨折中的体积流速,从模拟结果从-11.1%到8.4%,平均有效偏差为4.7%。所提出的模型保留了CL模型的简单性,提高了在粗糙岩石骨折中单相饱和层流程的流动预测的准确性,并且可以扩展到分析其他与水电有关的问题。

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