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Gas Turbulence Modulation Model for Gas-Solid Flows in Two-Fluid Approach 被引量:1

Gas Turbulence Modulation Model for Gas-Solid Flows in Two-Fluid Approach
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摘要 <Abstract>Turbulence enhancement by particle wake effect is studied by numerical simulation of gas turbulent flows passing over particle under various particle sizes,inlet gas velocities,gas viscosity,gas density and the distance of particles.By performing dimension analysis and using the form of gas-particle interaction source term for reference,a new semi-empirical turbulence enhancement model by the particle-wake effect is proposed. The turbulence model is then incorporated into second-order moment model for simulating gas-particle flows in a horizontal channel with different wall roughness and a sudden-expansion chamber.The results show that this model is with higher calculating accuracy than another two turbulence models in comparison with the experimental results. Turbulence enhancement by particle wake effect is studied by numerical simulation of gas turbulent flows passing over particle under various particle sizes, inlet gas velocities, gas viscosity, gas density and the distance of particles. By performing dimension analysis and using the form of gas-particle interaction source term for reference, a new semi-empirical turbulence enhancement model by the particle-wake effect is proposed. The turbulence model is then incorporated into second-order moment model for simulating gas-particle flows in a horizontal channel with different wall roughness and a sudden-expansion chamber. The results show that this model is with higher calculating accuracy than another two turbulence models in comparison with the experimental results.
出处 《Journal of Shanghai Jiaotong university(Science)》 EI 2010年第4期428-433,共6页 上海交通大学学报(英文版)
基金 the National Natural Science Foundation of China(No.50736006) the Aero-Science Fund(No.2009ZB56004) the Jiangxi Provincial Natural Science Foundation(Nos.2009GZC0100 and 2008GZW0016)
关键词 湍流数值模拟 气体粘度 增强模型 气固两相流动 粒子相互作用 调制 湍流模型 尾流效应 gas-particle flows, turbulence modulation, particle wake effect
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