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Experimental Study on Fluid Flow and Heat Transfer from a Rectangular Prism Approaching the Wall of a Wind Tunnel

机译:矩形棱柱接近风洞壁的流体流动和传热的实验研究

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Experimental investigations in fluid flow and heat transfer have been carried out to study the effect of wall proximity due to flow separation around rectangular prisms. Experiments have been carried out for the Reynolds number 2.6 × 10~4, blockage ratios are 0.1, 0.2, 0.3, and 0.4, aspect ratios (d/c) are 1.5, 1.33, 0.667, and 0.333, with different height-ratios and various angles of attack. The static pressure distribution has been measured on all faces of the rectangular prisms. The results have been presented in the form of pressure coefficient, drag coefficient for various height-ratios and blockage ratios. The pressure distribution shows positive values on the front face whereas on the rear face negative values of the pressure coefficient have been observed. The drag coefficient decreases with the increase in angle of attack as the height-ratio decreases. The heat transfer experiments have been carried out under constant heat flux conditions. Heat transfer coefficients are determined from the measured wall temperature and ambient temperature and presented in the form of a Nusselt number. Both local and average Nusselt numbers have been presented for various height-ratios. The variation of the local Nusselt number has been shown with nondimensional distance for different angles of attack and blockage ratios. The variation of the average Nusselt number has also been shown with different angles of attack for blockage ratios. The local as well as average Nusselt number decreases as the height-ratio decreases for all nondimensional distances and angles of attack, respectively, for rectangular prisms. Empirical correlations for the average Nusselt number have been presented for a rectangular prism as a function of the Reynolds number, Prandtl number and relevant nondimensional parameters.
机译:已经进行了流体流动和热传递的实验研究,以研究由于矩形棱柱周围的流动分离而引起的壁邻近效应。已经进行了雷诺数2.6×10〜4的实验,阻挡比为0.1、0.2、0.3和0.4,纵横比(d / c)为1.5、1.33、0.667和0.333,并且高度比和各种攻击角度。已经在矩形棱柱的所有面上测量了静压分布。结果以压力系数,各种高度比和阻滞比的阻力系数的形式表示。压力分布在正面显示正值,而在背面观察到压力系数为负值。阻力系数随着攻角的增加而减小,随着高度比的减小。传热实验是在恒定热通量条件下进行的。传热系数由测得的壁温和环境温度确定,并以努塞尔数形式表示。已经显示了各种高度比的本地和平均Nusselt数。对于不同的迎角和阻塞率,已经显示出局部Nusselt数随无量纲距离的变化。还显示了平均Nusselt数的变化与阻塞率的不同迎角。对于矩形棱镜,对于所有无量纲距离和迎角,随着高度比的减小,局部Nusselt数和平均Nusselt数都会减小。已经给出了矩形棱柱的平均努塞尔数的经验相关性,该相关性是雷诺数,普朗特数和相关的无量纲参数的函数。

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