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Experimental investigation of the convective heat transfer coefficient for open-cell porous metal fins at low Reynolds numbers

机译:低雷诺数下开孔多孔金属翅片对流换热系数的实验研究

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摘要

The heat transfer characteristics and convective heat transfer coefficient of porous metal fin are experimentally investigated. The pore density of the porous metal fin and frontal velocity of the working fluid are varied in the range of 20, 40, and 80 pores per inch, and 0.007-0.17 m/s, respectively. The porous metal fins are fabricated from nickel with different porosities and various pore densities. The geometrical parameters of the test samples are measured using an optical method. In this study, porous metals are considered as a fin and the heat transfer performances are experimentally evaluated. An equivalent diameter based on the permeability and porosity is used as the characteristic length to calculate the Reynolds numbers and Nusselt numbers. When the equivalent diameter is used as the characteristic length, the measured Nusselt numbers converge to a single curve regardless of the pore density. The Nusselt number variation appears to be very similar to previous correlations developed for convective heat transfers of turbulent pipe flows. Consequently, an empirical correlation of the Nusselt number for porous metal fins is proposed in the form of a Dittus-Boelter correlation.
机译:实验研究了多孔金属翅片的传热特性和对流传热系数。多孔金属翅片的孔密度和工作流体的正面速度分别在每英寸20、40和80个孔和0.007-0.17 m / s的范围内变化。多孔金属翅片由具有不同孔隙率和各种孔隙密度的镍制成。使用光学方法测量测试样品的几何参数。在这项研究中,多孔金属被视为散热片,并且对传热性能进行了实验评估。基于渗透率和孔隙率的等效直径用作特征长度,以计算雷诺数和努塞尔数。当等效直径用作特征长度时,无论孔密度如何,测得的Nusselt值都收敛为一条曲线。 Nusselt数变化似乎与先前为湍流管道流动的对流传热建立的相关性非常相似。因此,以Dittus-Boelter相关性的形式提出了多孔金属鳍片的Nusselt数的经验相关性。

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