Experimental Investigation into Natural Convection Heat Transfer inside Triangular Enclosure with Internal Hot Cylinder

Akeel Abdullah Mohammed, Ansam Adil Mohammed, Shylesha V. Channapattanac
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Abstract

Natural convection air heat transfer and fluid movement currents around a hot circular cylinder inside an inclined triangular enclosure has been analyzed experimentally. Three different sizes of an enclosure with a long side of 20, 25, and 30 cm, the thickness of 1 mm, and depth of 50 cm were used in the present work to give three radius ratios. The effect of Rayleigh number, radius ratio, the rotation angle of triangle enclosure, and the inclination angle of the apparatus with horizontal axis ? on the heat transfer process was investigated. The ranges of these parameters were: Rayleigh number from 5×106 to 2.5×108, radius ratio (0.345, 0.455, and 0.618), rotation angle (0o, 45o, and 90o), and inclination angle (0o, 45o and 90o). The results show that the heat transfer rates increase with increase in Rayleigh number and as the rotation angle of enclosure is changed from 0o to 90o. Moreover, the heat transfer rate increases linearly with Rayleigh number at higher radius at rotation angle 0o, 90o only. While, it increases slightly with Rayleigh number at rotation angle 45o. Additionally, the higher heat transfer rates occur at vertical position of enclosure inclination angle 90o and rotation angle 0o (the base of triangle at the bottom) and it decreases as inclination angle deviates from 90o to 0o. This behavior is reverse completely at higher radius ratio 0.618. Empirical correlations for the average Nusselt number has been found to depend on Rayleigh number., radius ratio, rotation angle and inclination angle.
带内热筒的三角罩内自然对流换热实验研究
实验分析了斜三角罩内热圆柱周围的自然对流、空气换热和流体运动电流。在本工作中,使用了三种不同尺寸的外壳,其长边分别为20、25和30厘米,厚度为1毫米,深度为50厘米,以给出三种半径比。瑞利数、半径比、三角形外壳的旋转角度、仪器与水平轴的倾斜角的影响?对传热过程进行了研究。参数取值范围为:瑞利数5×106 ~ 2.5×108,半径比0.345、0.455、0.618,旋转角度0、45、90度,倾角0、45、90度。结果表明:随着瑞利数的增加和壳体旋转角度从0°到90°的变化,换热率增大;仅在旋转角度为0o、90o时,换热率随瑞利数的增加呈线性增加。旋转角度为45o时,随着瑞利数的增加,瑞利数略有增加。换热率在壳体倾角为90o和旋转角度为0o的垂直位置(底部三角形的底角)出现较高的换热率,当倾角从90o到0o时,换热率降低。在较高的半径比为0.618时,这种行为完全相反。发现平均努塞尔数的经验相关性依赖于瑞利数。、半径比、转角、倾角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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