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A Numerical Simulation of Gas-Particle Two-Phase Flow in a Suspension Bed Using Diffusion Flux Model

机译:基于扩散通量模型的悬浮床内气固两相流数值模拟

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摘要

A mathematical model of two-dimensional turbulent gas-particle two-phase flow based on the modified diffusion flux model (DFM) and a numerical simulation method to analyze the gas-particle flow structures are developed. The modified diffusion flux model, in which the acceleration due to various forces is taken into account for the calculation of the diffusion velocity of particles, is applicable to the analysis of multi-dimensional gas-particle two-phase turbulent flow. In order to verify its accuracy and efficiency, the numerical simulation by DFM is compared with experimental studies and the prediction by κ-ε-κp two-fluid model, which shows a reasonable agreement. It is confirmed that the modified diffusion flux model is suitable for simulating the multi-dimensional gas-particle two-phase flow.
机译:建立了基于修正扩散通量模型(DFM)的二维湍流气固两相流数学模型和分析气固两相流结构的数值模拟方法。修正后的扩散通量模型,考虑了各种力的加速度来计算颗粒的扩散速度,适用于多维气固两相湍流分析。为了验证其准确性和有效性,将DFM的数值模拟与实验研究以及κ-ε-κp两流体模型的预测进行了比较,这显示了合理的一致性。可以确定,改进的扩散通量模型适用于模拟多维气体颗粒两相流。

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