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A methodology for coupling DNS and discretised population balance for modelling turbulent precipitation

机译:用于耦合DNS和离散的人口平衡的方法,用于造型湍流降水

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摘要

In this paper, we present a methodology for simulating nanoparticle formation in a turbulent flow by coupling Direct Numerical Simulation (DNS) and population balance modelling. The population balance equation (PBE) is solved via a discretisation method employing a composite grid that provides sufficient detail over the wide range of particle sizes reached during the precipitation process. The coupled DNS/PBE approach captures accurately the strong interaction between the dynamics of turbulent mixing and particle formation processes. It also allows the calculation of the particle size distribution (PSD) of the product and enables an investigation on how it is controlled by turbulent mixing. Finally, it provides the statistics of kinetic processes and their timescales so that further analysis can be performed. The methodology is applied to the simulation of experiments of hydrodynamics and nanoparticle precipitation in a T-mixer (Schwertfirm et al., Int. J. of Heat and Fluid Flow 28, pp. 1429-1442; Schwarzer et al., Chem. Eng. Sci. 61, pp. 167-181), and the agreement with the experimental results is very good.
机译:在本文中,我们通过耦合直接数值模拟(DNS)和群体平衡建模,提出了一种在湍流中模拟纳米粒子形成的方法。人口平衡方程(PBE)通过采用复合网格的离散方法来解决,该栅格在沉淀过程中达到的广泛粒径上提供足够的细节。耦合的DNS / PBE接近精确地捕获湍流混合和颗粒形成过程的动态之间的强相互作用。它还允许计算产品的粒度分布(PSD),并能够调查如何通过湍流混合控制。最后,它提供动力学过程及其时间尺度的统计,以便可以进行进一步分析。该方法应用于T型混合器中流体动力学和纳米粒子沉淀的实验模拟(SchwertFirm等,int。J.热量和流体流动28,PP。1429-1442; Schwarzer等,Chem。Eng 。SCI。61,PP。167-181),与实验结果的协议非常好。

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