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Implementation and analysis of numerical solution of the population balance equation in CFD packages

机译:CFD软件包中人口平衡方程数值解的实现与分析

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Simulation of polydisperse flows must include the effects of particle-particle interaction, as breakage and aggregation, coupling the population balance equation (PBE) with the multiphase modelling. In fact, the implementation of efficient and accurate new numerical techniques to solve the PBE is necessary. The direct quadrature method of moments, known as DQMOM, is a moment-based method that uses an optimal adaptive quadrature closure and came into view as a promising choice for this implementation. In the present work, DQMOM was implemented in two CFD packages: the commercial ANSYS CFX, through FORTRAN subroutines, and the open-source OpenFOAM, by directly coding the PBE solution. Transient zero-dimensional and steady one-dimensional simulations were performed in order to explore the PBE solution accuracy using several interpolation schemes. Simulation cases with dominant breakage, dominant aggregation and invariant solution (equivalent breakage and aggregation) were simulated and validated against an analytical solution. The solution of the population balance equation was then coupled to the two-fluid model, considering that all particles classes share the same velocity field. Momentum exchange terms were evaluated using the local instantaneous Sauter mean diameter of the size distribution function. The two-dimensional tests were performed in a backward facing step geometry where the vortex zones traps the particles and provides high rates of breakage and aggregation.
机译:多分散流的模拟必须包括颗粒间相互作用的影响(如破裂和聚集),并将总体平衡方程(PBE)与多相建模耦合起来。实际上,实施有效而准确的新数值技术来解决PBE是必要的。直接矩量的正交方法称为DQMOM,它是一种基于矩量的方法,它使用最佳的自适应正交闭包,并被视为实现该方法的有希望的选择。在当前的工作中,DQMOM是通过两个CFD包实现的:通过FORTRAN子例程的商用ANSYS CFX,以及通过直接编码PBE解决方案的开源OpenFOAM。进行了瞬态零维和稳态一维模拟,以便使用几种插值方案来探索PBE解决方案的准确性。对具有显性破坏,显性聚集和不变解(等效破坏和聚集)的模拟案例进行了仿真,并针对解析解进行了验证。然后,考虑所有粒子类别共享相同的速度场,将种群平衡方程的解耦合到双流体模型。动量交换项使用大小分布函数的局部瞬时Sauter平均直径进行评估。二维测试是在朝后的台阶几何形状中进行的,其中涡流区会捕获颗粒并提供高破损和聚集率。

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