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首页> 外文期刊>Chemical Engineering Science >PRESSURE DROP IN NON-NEWTONIAN PURELY VISCOUS FLUID FLOW THROUGH POROUS MEDIA
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PRESSURE DROP IN NON-NEWTONIAN PURELY VISCOUS FLUID FLOW THROUGH POROUS MEDIA

机译:非牛顿纯粘性流体通过多孔介质的压降

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摘要

The flow of non-Newtonian purely viscous fluids through packed beds of different structures has been investigated and a model of calculation of the pressure drop is proposed. This model takes into account the structural parameters of the porous medium: the tortuosity tau, the dynamic specific surface area a(vd) and the porosity epsilon. This model has been verified experimentally for the flow of a power-law fluid through fixed beds of spherical particles, long cylinders and very flat plates. The present investigation covers a large range of Reynolds number including creeping and inertial flow regimes. [References: 19]
机译:研究了非牛顿纯粘性流体通过不同结构的填充床的流动,并提出了压降计算模型。该模型考虑了多孔介质的结构参数:曲折度tau,动态比表面积a(vd)和孔隙度ε。该模型已通过实验验证了幂律流体通过球形颗粒,长圆柱体和非常平坦的平板的固定床的流动。本研究涵盖了大范围的雷诺数,包括蠕变和惯性流态。 [参考:19]

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