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Heterogeneous ice slurry flow and concentration distribution in horizontal pipes

机译:水平管道中非均质冰浆流动和浓度分布

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Ice slurry is an energy-intensive solid-liquid mixture fluid which may play an important role in various cooling purposes. Knowing detailed flow information is important from the system design point of view. However, the heterogeneous ice slurry flow makes it difficult to be quantified due to the complex two phase flow characteristic. The present study applies a Mixture computational fluid dynamics (CFD) model based on different rheological behavior to characterize the heterogeneous ice slurry flow. The Mixture CFD model was firstly validated by three different experiments. Then the validated Mixture CFD model was applied to solve the ice slurry isothermal flow by considering the rheological behavior piecewise. Finally, the numerical solutions have displayed the coupled flow information, such as slurry velocity, ice particle concentration and pressure drop distribution. The results show that, the ice slurry flow distribution will appear varying degree of asymmetry under different operating conditions. The rheological behavior will be affected by the asymmetric flow distributions. When mean flow velocity is high, Thomas equation can be appropriate for describing ice slurry viscosity. While with the decreasing of mean flow velocity, the ice slurry behaves Bingham rheology. As compared with experimental pressure drop results, the relative errors of numerical computation are almost within ±15%. The Mixture CFD model is validated to be an effective model for describing heterogeneous ice slurry flow and could supply plentiful flow information.
机译:冰浆是一种能源密集型的固液混合流体,可能在各种冷却目的中发挥重要作用。从系统设计的角度来看,了解详细的流量信息非常重要。然而,由于复杂的两相流特性,非均质的冰浆流难以量化。本研究应用基于不同流变行为的混合物计算流体动力学(CFD)模型来表征非均质冰浆流。 Mixture CFD模型首先通过三个不同的实验进行了验证。然后,通过逐段考虑流变行为,将经过验证的混合物CFD模型应用于求解冰浆等温流。最后,数值解已经显示了耦合的流动信息,例如泥浆速度,冰粒浓度和压降分布。结果表明,在不同的工况下,冰浆的流量分布会出现不同程度的不对称性。流变行为将受到不对称流动分布的影响。当平均流速较高时,Thomas方程可能适合描述冰浆的粘度。随着平均流速的降低,冰浆表现出宾厄姆流变学。与实验压降结果相比,数值计算的相对误差几乎在±15%之内。经过验证,混合物CFD模型是描述异质冰浆流动的有效模型,可以提供丰富的流动信息。

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