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首页> 外文期刊>Chemical Engineering Science >Numerical simulation of the high Reynolds number slit nozzle gas-particle jet suing subgrid-scale coupling large eddy simulation
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Numerical simulation of the high Reynolds number slit nozzle gas-particle jet suing subgrid-scale coupling large eddy simulation

机译:高雷诺数狭缝喷嘴气固两相耦合大涡模拟的数值模拟

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摘要

Large eddy simulation (LES) model in which the effect of the particle existence on subgrid-scale flows have been taken into account is proposed. The kinetic energy of the subgrid-scale flow to obtain a turbulent viscosity coefficient of the subgrid-swcale flow in the LES has been calculated in assuming that the interaction terms between the gas and particles, the turbulent production term and the viscous dissipation term were balanced with each other in the kinetic energy equation of the subgrid-scale turbulent flow. Using this model. three-dimensional Navier-Stokes equations and the Lagrangian particle motion equations are simultaneously solved to describe the high Reynolds number (Re=10~4) gas-particle jet flow and the effect of particle existence on it. The calculated results of air and particle turbulent characteristics which are mean velocity, turbulent intensity and Reynolds stress distributions are in good agreement with experimental data measured by a laser Doppler velocimeter. The existence of particles usually reduces the grid-scale turbulence in the high Reynolds number developed turbulent jet. On the other hand, the particle existence which is some kind of flow disturbance produces grid-scale fluctuations in the initial and the transitional regions of the jet and then it increases the subgrid-scale turbulence. however, when the produce of the gas and particle relative velocity and the particle concentration gradient is very large, the particle existence is able to increase the subgrid-scale turbulence.
机译:提出了大涡模拟(LES)模型,该模型考虑了颗粒存在对次网格规模流的影响。假设气体和颗粒之间的相互作用项,湍流产生项和粘性耗散项是平衡的,则计算出了LES中亚网格尺度流的动能,以获得亚网格旋流的湍流粘度系数。在亚网格尺度湍流的动能方程中彼此相对。使用此模型。同时求解了三维Navier-Stokes方程和Lagrangian粒子运动方程,以描述高雷诺数(Re = 10〜4)的气体粒子射流以及粒子的存在对其的影响。空气和颗粒湍流特性的平均速度,湍流强度和雷诺应力分布的计算结果与激光多普勒测速仪测得的实验数据非常吻合。粒子的存在通常会降低高雷诺数湍流射流中的网格尺度湍流。另一方面,作为某种流动扰动的粒子存在会在射流的初始和过渡区域产生网格规模的波动,然后增加子网格规模的湍流。但是,当气体和颗粒的相对速度和颗粒浓度梯度的产生很大时,颗粒的存在会增加亚网格尺度的湍流。

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