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首页> 外文期刊>Journal of Heat Transfer >Large Eddy Simulation of Liquid Metal Turbulent Mixed Convection in a Vertical Concentric Annulus
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Large Eddy Simulation of Liquid Metal Turbulent Mixed Convection in a Vertical Concentric Annulus

机译:垂直同心环空中液态金属湍流混合对流的大涡模拟

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摘要

In the present study, turbulent forced and mixed convection heat transfer to a liquid metal flowing upwards in a concentric annulus is numerically investigated by means of large eddy simulation (LES). The inner-to-outer radius ratio is 0.5. The Reynolds number based on bulk velocity and hydraulic diameter is 8900, while the Prandtl number is set to a value of 0.026. A uniform and equal heat flux is applied on both walls. LES has been chosen to provide sufficiently accurate results for validating Reynolds-averaged turbulence models. Moreover, with the thermal sublayer thickness of liquid metals being much larger than the viscous hydrodynamic one, liquid metals present a separation between the turbulent thermal and hydrodynamic scales. Thus, with the same grid resolution, it is possible to perform a LES for the flow field and a “thermal” direct numerical simulation (DNS) for the temperature field. Comparison of the forced convection results with available DNS simulations shows satisfying agreement. Results for mixed convection are analyzed and the differences with respect to forced convection at the same Reynolds number are thoroughly discussed. Moreover, where possible, a comparison with air is made.
机译:在本研究中,通过大涡模拟(LES)数值研究了湍流强迫和混合对流传热到在同心环空中向上流动的液态金属。内外半径比为0.5。基于体积速度和水力直径的雷诺数为8900,而普朗特数为0.026。在两壁上施加均匀且相等的热通量。选择LES是为了提供足够准确的结果来验证雷诺平均湍流模型。而且,由于液态金属的热子层厚度远大于粘性流体动力层的厚度,因此液态金属在湍流的热尺度和流体动力尺度之间呈现出分离。因此,在相同的网格分辨率下,可以对流场执行LES,对温度场进行“热”直接数值模拟(DNS)。将强制对流结果与可用的DNS模拟进行比较,显示出令人满意的协议。分析了混合对流的结果,并彻底讨论了在相同雷诺数下强制对流的差异。此外,在可能的情况下,与空气进行比较。

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