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Entropy Generation due to Viscous Dissipation around a Wells Turbine Blade: A Preliminary Numerical Study

机译:由于井涡轮叶片周围的粘性耗散导致的熵产生:初步数值研究

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The present work analyzes, through a rigorous numerical investigation, the entropy generation due to viscous dissipation around a Wells turbine blade. Two-dimensional numerical models for four NACA airfoils were built and validated against experimental measurements under steady flow conditions. The models were used to assess the entropy generation for flows achieving 10° angle of attack. It was found that the entropy generation around the NACA0015 airfoil blade is less by approximately 12% than the entropy generation around NACA0012, NACA0020 and NACA0021 airfoils. Then, the NACA0015 and NACA0021 airfoils were simulated under different flow conditions (i.e. Reynolds number and angle of attack). The results were discussed in the light of Wells turbine performance objectives.
机译:通过严格的数值调查,本工作分析,由于井涡轮机叶片周围的粘性耗散导致的熵产生。在稳定的流动条件下,建造并验证了四个NACA翼型的二维数值模型,并验证了实验测量。该模型用于评估实现10°攻角的流动的熵生成。结果发现,NaCA0015翼型叶片周围的熵产生大约比NACA0012,NACA0020和NACA0021翼型的熵产生的12%。然后,在不同的流动条件下模拟NaCA0015和NaCA0021翼型(即Reynolds数和攻角)。根据井涡轮机性能目标讨论了结果。

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