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UNCONFINED FLOW THROUGH JOINTED ROCK1

机译:通过节理岩的无承压流动1

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ABSTRACTThe two‐dimensional, steady‐state, unconfined flow of a homogeneous fluid through jointed rock is studied for both laminar and turbulent conditions by use of a method which is based on previously developed theoretical and experimental flow relationships. However, only the independent unknowns are selected in order to reduce the complexity of the problem and render it more readily tractable. The intact rock is assumed to be impermeable, and two intersecting systems of plane, parallel joints are used in the mathematical model, taking into account the surface roughness of the joints. The mathematical solution of the resulting nonlinear (due to turbulent flow in some joints) system of equations is obtained by use of a rapidly converging iterative procedure, wherein each iteration takes special advantage of the banded nature of the associated matrix. For the particular case where a free surface exists, the general flow equations are not satisfied, because some of the joints in the vicinity of the free surface do not flow full; therefore, new equations must be established to handle this condition. Once the development of the mathematical model is accomplished, several cases involving different geometric characteristics (width, orientation, and roughness of joints) are solved for a rectangular domain, and graphs are given to illustrate the influence of the various parameters on the manifested flow behav
机译:摘要使用一种基于先前开发的理论和实验流动关系的方法,研究了均匀流体在层流和湍流条件下通过节理岩石的二维、稳态、无约束流动。但是,仅选择独立的未知数,以降低问题的复杂性并使其更易于处理。假设完整的岩石是不可渗透的,并在数学模型中使用了两个相交的平面平行节理系统,同时考虑了节理的表面粗糙度。通过使用快速收敛迭代过程获得所得到的非线性(由于某些节理中的湍流)方程组的数学解,其中每次迭代都特别利用了相关矩阵的带状性质。对于存在自由面的特殊情况,一般流动方程不满足,因为自由面附近的一些节理没有完全流动;因此,必须建立新的方程来处理这种情况。一旦数学模型的开发完成,就为一个矩形域求解了涉及不同几何特征(宽度、方向和节理粗糙度)的几个案例,并给出了图表来说明各种参数对表现的流动行为的影响

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