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首页> 外文期刊>International Journal of Heat and Mass Transfer >Buoyancy impact on secondary flow and heat transfer in a turbulent liquid metal flow through a vertical square duct
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Buoyancy impact on secondary flow and heat transfer in a turbulent liquid metal flow through a vertical square duct

机译:浮力对通过垂直方管的湍流液态金属流中的二次流和传热的影响

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摘要

Direct Numerical and Large-Eddy Simulations of the turbulent flow through a vertical square duct at different Reynolds and Richardson numbers are presented for a fluid with low Prandtl number. Buoyancy substantially affects the flow field, Reynolds stresses and heat transfer. A strong coupling between secondary flow and buoyancy effects is found and a double vortex pattern develops with increasing Richardson number which transports hot fluid from the hot to the cold wall. The alterations in the balance of the individual Reynolds stress components leading to the development of this vortex pattern are highlighted. An analysis of the global scaling of secondary flow strength and other quantities identifies the onset of the mixed convection regime.
机译:对于低普朗特数的流体,给出了在不同雷诺数和理查森数下通过垂直方管的湍流的直接数值模拟和大涡模拟。浮力会显着影响流场,雷诺应力和热传递。发现次级流与浮力效应之间存在强耦合,并且随着Richardson数的增加,形成了双涡旋模式,从而将热流体从热壁传输到冷壁。雷诺应力分量的平衡变化会导致这种涡旋模式的发展。对次级流动强度和其他数量的整体标度的分析确定了混合对流形式的开始。

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