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IMPROVED SUBGRID SCALE MODEL FOR DENSE TURBULENT SOLID-LIQUID TWO-PHASE FLOWS

机译:稠密固液两相流的改进亚网格尺度模型

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The dense solid-phase governing equations for two-phase flows are obtained by using the kinetic theory of gas molecules. Assuming that the solid-phase velocity distributions obey the Maxwell equations, the collision term for particles under dense two-phase flow conditions is also derived.In comparison with the governing equations of a dilute two-phase flow, the solid-particle's governing equations are developed for a dense turbulent solid-liquid flow by adopting some relevant terms from the dilute two-phase governing equations. Based on Cauchy-Helmholtz theorem and Smagorinsky model,a second-order dynamic sub-grid-scale (SGS) model, in which the sub-grid-scale stress is a function of both the strain-rate tensor and the rotation-rate tensor, is proposed to model the two-phase governing equations by applying dimension analyses. Applying the SIMPLEC algorithm and staggering grid system to the two-phase discretized governing equations and employing the slip boundary conditions on the walls, the velocity and pressure fields, and the volumetric concentration are calculated. The simulation results are in a fairly good agreement with experimental data in two operating cases in a conduit with a rectangular cross-section and these comparisons imply that these models are practical.
机译:利用气体分子的动力学理论,得到了两相流致密的固相控制方程。假设固相速度分布服从麦克斯韦方程,则导出了在密相两相流条件下粒子的碰撞项,与稀两相流的控制方程相比,固相的控制方程为通过采用稀薄的两相控制方程中的一些相关项来开发用于稠密湍流的固液流动。基于Cauchy-Helmholtz定理和Smagorinsky模型,建立了二阶动态子网格规模(SGS)模型,其中子网格规模应力是应变率张量和旋转率张量的函数提出了通过尺寸分析对两相控制方程建模的模型。将SIMPLEC算法和交错网格系统应用于两相离散控制方程,并利用壁上的滑移边界条件,计算出速度,压力场和体积浓度。在具有矩形横截面的导管的两种操作情况下,仿真结果与实验数据非常吻合,这些比较表明这些模型是实用的。

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