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HYDRODYNAMIC PROPERTIES AND PERMEABILITY OF FRACTAL OBJECTS

机译:分形物体的水动力性质和渗透性

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摘要

Using Lattice Boltzmann numerical simulations, we analyse the hydrodynamic properties of both fractal aggregates and artificial fractal objects. First we show that the hydrodynamic radius actually depends on three quantities: the fractal dimension, the so-called prefactor and the inside connectivity. Second, from the simulated velocity field inside the aggregate, we observe that Darcy's law describes the flow better than Brinkman equation. Finally we measure the permeability - porosity relation and observed that it departs from the prediction of Happel's model.
机译:使用格子Boltzmann数值模拟,我们分析了分形聚集体和人造分形物体的流体动力学特性。首先,我们表明流体力学半径实际上取决于三个量:分形维数,所谓的前置因子和内部连通性。第二,从集料内部的模拟速度场中,我们观察到达西定律比布林克曼方程更好地描述了流动。最后,我们测量了渗透率与孔隙率的关系,并观察到它与Happel模型的预测背道而驰。

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