首页> 外文会议>ASME Fluids Engineering Division summer meeting >COMPUTATIONAL FLUID DYNAMICS ANALYSIS OF VERTICAL MIXING IN ALGAE BIOFUEL RACEWAYS THROUGH THE ADDITION OF DELTA WINGS AT ANGLE- OF-INCIDENCE
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COMPUTATIONAL FLUID DYNAMICS ANALYSIS OF VERTICAL MIXING IN ALGAE BIOFUEL RACEWAYS THROUGH THE ADDITION OF DELTA WINGS AT ANGLE- OF-INCIDENCE

机译:通过在入射角处增加三角翼,在藻类生物燃料航道中垂直混合的计算流体动力学分析

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CFD calculations of experimental algae raceways under consideration for biofuel production studies were performed in an effort to assess the effectiveness of delta wing vortex formation as a means of enhancing vertical mixing. The impact of delta wings on the level of turbulence dissipation rate in these raceways was also investigated. All simulations were completed at a constant level of power input into the raceway. Velocity profiles as well as characteristic mixing times were used to analyze and quantify the vertical mixing both with and without delta wings. The velocity profiles and turbulent dissipation rate calculations suggest that delta wings are a viable method of increasing vertical motion. However, the mixing time results for the configuration of delta wings tested suggest that the additional mixing was insignificant to the raceway as a whole. Additional work on optimizing the use of delta wings is suggested.
机译:为了评估三角翼涡流形成作为增强垂直混合的手段的有效性,正在对生物燃料生产研究中正在考虑的实验藻类航道进行CFD计算。还研究了三角翼对这些滚道中湍流耗散率水平的影响。所有模拟都是在输入到滚道的恒定功率水平下完成的。速度分布图和特征混合时间用于分析和量化带有或不带有三角翼的垂直混合。速度剖面和湍流耗散率计算表明,三角翼是增加垂直运动的可行方法。但是,测试的三角翼配置的混合时间结果表明,额外的混合对于整个滚道是无关紧要的。建议在优化三角翼的使用方面进行其他工作。

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