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A fractal model for the starting pressure gradient for Bingham fluids in porous media

机译:宾汉流体在多孔介质中的起始压力梯度的分形模型

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In this paper, we present a fractal model for the starting pressure gradient for Bingham fluids in porous media based on the fractal characteristics of pores in the media and on the capillary pressure effect. Every parameter in the proposed models has clear physical meaning, and the proposed model relates the starting pressure gradient of Bingham fluids to the structural parameters of porous media, the yield stress, the capillary pressure parameters and the fractal dimensions of porous media. The model predictions from the present model for the starting pressure gradient are in good agreement with the available expression Eq. (2). The results also show that at smaller radii (r < 0.3 mm) and low porosity (φ < 0.3), the capillary pressure has the significant influence on the starting pressure gradient in porous media and thus cannot be neglected. However, at high porosity, the starting pressure gradient is primarily produced by the shear stress and the contribution to the starting pressure gradient from the capillary pressure is negligible.
机译:在本文中,我们基于介质中孔隙的分形特征和毛细管压力效应,提出了多孔介质中Bingham流体的起始压力梯度的分形模型。提出的模型中的每个参数都具有明确的物理意义,并且提出的模型将宾厄姆流体的起始压力梯度与多孔介质的结构参数,屈服应力,毛细管压力参数和多孔介质的分形维数联系起来。从本模型开始的压力梯度的模型预测与可用表达式Eq很好地吻合。 (2)。结果还表明,在较小的半径(r <0.3 mm)和低孔隙率(φ<0.3)下,毛细压力对多孔介质中的起始压力梯度具有显着影响,因此不能忽略。但是,在高孔隙率下,起始压力梯度主要由剪切应力产生,而毛细管压力对起始压力梯度的贡献可忽略不计。

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