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Similarity solutions for flow of non-Newtonian fluids in porous media revisited under parameter uncertainty

机译:参数不确定性下非牛顿流体在多孔介质中流动的相似解

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摘要

We analyze the transient motion of a non-Newtonian power-law fluid in a porous medium of infinite extent and given geometry (plane, cylindrical or spherical). The flow in the domain, initially at constant ambient pressure, is induced by fluid withdrawal or injection in the domain origin at prescribed pressure or injection rate. Previous literature work is generalized and expanded, providing a dimensionless formulation suitable for any geometry, and deriving similarity solutions to the nonlinear governing equations valid for pseudoplastic, Newtonian and dilatant fluids. A pressure front propagating with finite velocity is generated when the fluid is pseudoplastic; no such front exists for Newtonian or dilatant fluids. The front rate of advance depends directly on fluid flow behavior index and inversely on medium porosity and domain dimensionality. The effects and relative importance of uncertain input parameters on the model outputs are investigated via Global Sensitivity Analysis by calculating the Sobol' indices of (a) pressure front position and (b) domain pressure, by adopting the Polynomial Chaos Expansion technique. For the selected case study, the permeability is the most influential factor affecting the system responses.
机译:我们分析了无限范围和给定几何形状(平面,圆柱或球形)的多孔介质中非牛顿幂律流体的瞬态运动。最初在恒定的环境压力下,在域中的流动是通过以规定的压力或注入速率在域中的流体抽出或注入引起的。先前的文献工作得到了概括和扩展,提供了适用于任何几何形状的无量纲公式,并推导了适用于假塑性流体,牛顿流体和膨胀流体的非线性控制方程的相似解。当流体是假塑性的时,会产生以有限速度传播的压力前沿。对于牛顿流体或膨胀流体不存在这样的前沿。前进的前移速率直接取决于流体流动行为指数,而反过来取决于介质孔隙率和区域尺寸。通过全局灵敏度分析,通过采用多项式混沌展开技术,通过计算(a)压力前沿位置和(b)区域压力的Sobol指数,来研究不确定输入参数对模型输出的影响和相对重要性。对于选定的案例研究,渗透率是影响系统响应的最有影响力的因素。

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