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Entropy Generation Assessment for Wall-Bounded Turbulent Shear Flows Based on Reynolds Analogy Assumptions

机译:基于Reynolds类比假设的围绕壁有限湍流剪切流动的熵生成评估

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摘要

Heat transfer modeling plays a major role in design and optimization of modern and efficient thermal-fluid systems. Further, turbulent flows are thermodynamic processes, and thus, the second law of thermodynamics can be used for critical evaluations of such heat transfer models. However, currently available heat transfer models suffer from a fundamental shortcoming: their development is based on the general notion that accurate prediction of the flow field will guarantee an appropriate prediction of the thermal field, known as the. In this work, an assessment of the capability of the in predicting turbulent heat transfer when applied to shear flows of fluids of different Prandtl numbers will be given. Towards this, a detailed analysis of the predictive capabilities of the concerning entropy generation is presented for steady and unsteady state simulations. It turns out that the provides acceptable results only for mean entropy generation, while fails to predict entropy generation at small/sub-grid scales.
机译:传热建模在现代和高效的热流体系统的设计和优化中起着重要作用。此外,湍流流动是热力学过程,因此,第二热力学定律可用于这种传热模型的临界评估。然而,目前可用的传热模型遭受基本缺点:他们的发展是基于总体观念,即对流场的精确预测将保证适当的热场预测,称为。在这项工作中,将给出在应用于不同Prandtl号的剪切流量时预测湍流传热的能力的评估。为此,提出了对熵生成的预测能力的详细分析,用于稳定和不稳定的状态模拟。事实证明,仅提供可接受的结果,仅用于平均熵生成,而未能预测小/子网格尺度的熵生成。

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