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The flow of power law fluids in elastic networks and porous media

机译:幂律流体在弹性网络和多孔介质中的流动

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The flow of power law fluids, which include shear thinning and shear thickening as well as Newtonian as a special case, in networks of interconnected elastic tubes is investigated using a residual-based pore scale network modeling method with the employment of newly derived formulae. Two relations describing the mechanical interaction between the local pressure and local cross-sectional area in distensible tubes of elastic nature are considered in the derivation of these formulae. The model can be used to describe shear dependent flows of mainly viscous nature. The behavior of the proposed model is vindicated by several tests in a number of special and limiting cases where the results can be verified quantitatively or qualitatively. The model, which is the first of its kind, incorporates more than one major nonlinearity corresponding to the fluid rheology and conduit mechanical properties, that is non-Newtonian effects and tube distensibility. The formulation, implementation, and performance indicate that the model enjoys certain advantages over the existing models such as being exact within the restricting assumptions on which the model is based, easy implementation, low computational costs, reliability, and smooth convergence. The proposed model can, therefore, be used as an alternative to the existing Newtonian distensible models; moreover, it stretches the capabilities of the existing modeling approaches to reach non-Newtonian rheologies.
机译:使用基于残差的孔隙尺度网络建模方法,利用新推导的公式,研究了互连的弹性管网络中幂律流体的流动,包括剪切稀化和剪切增稠以及牛顿的特殊情况。在这些公式的推导中,考虑了两个描述局部压力与具有弹性的可扩张管中的局部横截面积之间的机械相互作用的关系。该模型可用于描述主要为粘性性质的剪切相关流。在许多特殊和有限的情况下,通过几次测试可以证明所提出模型的行为,其中可以定量或定性地验证结果。该模型是同类产品中的第一个,它包含了与流体流变性和导管机械特性相对应的多个主要非线性,即非牛顿效应和管的可扩张性。公式,实现和性能表明,该模型相对于现有模型具有某些优势,例如在该模型所基于的限制性假设内精确,易于实现,计算成本低,可靠性高以及平滑收敛等优点。因此,建议的模型可以替代现有的牛顿可扩展模型。此外,它扩展了现有建模方法的功能,以达到非牛顿流变学。

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