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Thermal performance of developing flow in a radially rotating parallelogram channel with 45° ribs

机译:具有45°肋的径向旋转平行四边形通道中显影液流动的热性能

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An experimental study was performed to measure the full-field Nusselt number (Nu) distributions over two opposite leading and trailing ribbed walls, the pressure drop coefficients (f) and the overall thermal performance factors (TPF) of a rotating parallelogram channel with radially outward flow. The test conditions in terms of Reynolds (Re), rotation (Ro) and buoyancy (Bu) numbers were respectively in the ranges of 5000 ≤ Re ≤ 15,000, 0 ≤ Ro ≤ 0.3 and 0.001 ≤ Bu ≤ 0.23. The full-field Nu data generated by the infrared thermography method were examined to study the isolated and interdependent Re, Ro and Bu impacts on the detailed Nu distributions as well as on the rib-wise averaged Nusselt numbers (Nu) at rib and mid-rib locations over the leading and trailing walls. With rotation, the Nu distribution over the trailing wall followed the Nu_0 pattern in the static channel; but underwent considerable modification from the Nu_0 pattern on the leading wall by generating a haloed high Nu region at the obtuse entry corner. A parametric analysis which examined the detailed Ro and Bu impacts on Nu at rib and mid-rib locations enlightened the streamwise developments of rotational effects on heat transfer performances over leading and trailing walls. This parametric analysis led to the generation of a set of physically consistent empirical Nu correlations which assisted to evaluate the individual and interdependent Ro and Bu effects on Nu at rib and mid-rib locations over the developing flow region. As an indication of the combined effects of Coriolis force, rotating buoyancy and the geometric features emulated by the present parallelogram ribbed channel, the area-averaged Nusselt numbers on the leading and trailing walls were modified to the respective ranges of 0.78-1.34 and 1.09-1.38 times of the non-rotating Nusselt numbers; while the f coefficients were raised to 1.05-5.2 times of the stationary levels, leading the TPF factors to the range of 0.979-1.575.
机译:进行了一项实验研究,以测量在两个相对的前肋肋和后肋肋上的全场Nusselt数(Nu)分布,径向向外旋转的平行四边形通道的压降系数(f)和整体热性能因子(TPF)流。以雷诺数(Re),旋转数(Ro)和浮力(Bu)数表示的测试条件分别在5000≤Re≤15,000、0≤Ro≤0.3和0.001≤Bu≤0.23的范围内。检查了红外热成像方法生成的全场Nu数据,以研究孤立,相互依赖的Re,Ro和Bu对详细Nu分布以及肋骨和中肋骨的肋骨平均Nusselt数(Nu)的影响。前,后壁的肋骨位置。随着旋转,尾壁上的Nu分布遵循静态通道中的Nu_0模式。但通过在钝角进入角处生成光晕的高Nu区域,对前壁的Nu_0模式进行了相当大的修改。一项参数分析分析了Ro和Bu在肋骨和中肋骨位置对Nu的详细影响,从而揭示了旋转流对前壁和后壁传热性能的沿流发展。该参数分析导致生成了一组物理上一致的经验Nu相关性,这些相关性有助于评估在发育流区域的肋骨和中肋骨位置处对Nu的单独和相互依赖的Ro和Bu效应。为了表明科里奥利力,旋转浮力和本平行四边形带肋通道模拟的几何特征的综合影响,将前壁和后壁上的面积平均努塞尔数修改为各自的0.78-1.34和1.09-非旋转努塞尔数的1.38倍;而f系数提高到固定水平的1.05-5.2倍,导致TPF系数达到0.979-1.575。

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