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Status and perspectives of turbulent heat transfer modelling in low-Prandtl number fluids

机译:低普朗特数流体中湍流传热建模的现状和观点

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Thermal-hydraulics is recognized as a key safety challenge in the development of liquid metal cooled reactors. At nominal operating conditions, the Prandtl number of liquid metals which are used as primary coolants, such as lead and sodium, is very low: typically of the order of 0.025-0.001. Obtaining an accurate prediction of the turbulent heat transfer at such a low Prandtl number is not an easy task for the standard turbulence models and has challenged the modellers over several decades. In the framework of the EU SESAME project, an effort has been put forward to assess and/or further develop/calibrate different turbulent heat flux closures. In this regard, the present article reports an assessment of four different turbulent heat flux closures for applications involving low-Prandtl fluids. These closures include: (i) the Reynolds analogy based on a constant turbulent Prandtl number (ii) a four-equation explicit algebraic heat flux model (AHFM) (ii) a three-equation implicit AHFM called AHFM-NRG and (iv) a non-linear second-order heat flux model called Turbulence Model for Buoyant Flows (TMBF). The performance of these turbulence models has been assessed in three different test cases against high-fidelity numerical reference data been generated within the SESAME project. The three test cases are: a natural Rayleigh-Benard convection flow, a mixed convection planar channel flow and a forced convection impinging jet flow. The shortcomings of the classical Reynolds analogy approach for low-Prandtl fluids in all flow regimes are highlighted; hence, more advanced and well-calibrated closures are recommended.
机译:在开发液态金属冷却反应堆时,热工液压被认为是关键的安全挑战。在正常运行条件下,用作主要冷却剂的液态金属(例如铅和钠)的普朗特数非常低:通常为0.025-0.001。对于如此低的Prandtl数,要获得准确的湍流传热预测,对于标准湍流模型而言,并不是一件容易的事,并且几十年来一直对建模者构成挑战。在EU SESAME项目的框架内,已经提出了评估和/或进一步开发/校准不同湍流通量封闭装置的努力。在这方面,本文报道了对涉及低普朗特流体的应用的四种不同湍流热通量封闭的评估。这些闭包包括:(i)基于恒定湍流Prandtl数的雷诺类比(ii)四方程式显式代数热通量模型(AHFM)(ii)称为AHFM-NRG的三方程式隐式AHFM和(iv)a非线性二阶热通量模型,称为浮流湍流模型(TMBF)。针对SESAME项目中生成的高保真数字参考数据,在三个不同的测试案例中评估了这些湍流模型的性能。这三个测试案例是:自然瑞利-贝纳德对流,混合对流平面通道流和强迫对流撞击射流。强调了经典雷诺类比法在所有流动状态下对低普朗特流体的缺点;因此,建议使用更高级且校准良好的瓶盖。

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