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Modelling turbulent heat flux accounting for Turbulence-Radiation Interactions

机译:湍流热通量造成湍流 - 辐射相互作用

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摘要

The present work investigates the modeling of turbulent heat transfer in flows where radiative and convective heat transfer are coupled. In high temperature radiatively participating flows, radiation is the most relevant heat transfer mechanism and, due to its non-locality, it causes counter intuitive interactions with the turbulent temperature field. These so-called Turbulence-Radiation Interactions (TRI) largely affect the temperature field, modifying substantially the turbulent heat transfer. Therefore, in the context of modeling (RANS/LES), these interactions require a closure model. This work provides the inclusion of TRI in the modeling of the turbulent heat transfer by adopting a unique approach which consists in approximating the fluctuations of the radiative field with temperature fluctuations only. Based on this approximation, coefficients of proportionality are employed in order to close the unknown terms in the relevant model equations. A closed form of all radiation-temperature-velocity correlation is explicitly derived depending on the chosen turbulent heat transfer model. This model is applied to a standard two equation turbulent heat transfer closure and used to reproduce results obtained with high-fidelity DNS simulations. While a standard approach (i.e., neglecting TRI) is not able to correctly predict the DNS data, the new model's results shows exceptional agreement with the high-fidelity data. This clearly proves the validity (and the necessity) of the proposed model in non-reactive, radiative turbulent flows.
机译:目前的工作研究了辐射和对流传热耦合的流动中湍流传热的建模。在高温辐射参与流动中,辐射是最相关的传热机制,并且由于其非局部性,它导致与湍流温度场相反的相互作用。这些所谓的湍流 - 辐射相互作用(三)在很大程度上影响温度场,基本上改变湍流传热。因此,在建模(RAN / LES)的上下文中,这些交互需要闭合模型。这项工作通过采用独特的方法来提供TRI在湍流传热的建模中,该方法包括仅在近似于辐射场的波动与温度波动的波动。基于该近似,采用比例系数以在相关模型方程中关闭未知术语。根据所选择的湍流传热模型明确地得出所有辐射温度相关性的封闭形式。该模型应用于标准的两个方程湍流传热闭合,并用于使用高保真DNS模拟获得的结果。虽然标准方法(即,忽略TRI)无法正确预测DNS数据,但新模型的结果显示了与高保真数据的特殊协议。这清楚地证明了拟议模型在非反应性,辐射湍流流动中的有效性(和必要性)。

著录项

  • 来源
    《International Journal of Heat and Fluid Flow》 |2021年第6期|108728.1-108728.16|共16页
  • 作者单位

    Delft Univ Technol Proc & Energy Dept Delft Netherlands;

    Delft Univ Technol Proc & Energy Dept Delft Netherlands|Eindhoven Univ Technol Dept Mech Engn Eindhoven Netherlands;

    Delft Univ Technol Proc & Energy Dept Delft Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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