首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Natural convection analysis for both protruding and flush-mounted heaters located in triangular enclosure
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Natural convection analysis for both protruding and flush-mounted heaters located in triangular enclosure

机译:位于三角形外壳中的嵌入式和嵌入式加热器的自然对流分析

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摘要

A numerical was performed analysis on laminar natural convection heat transfer and fluid flow in both protruding heaters (PHs) and flush-mounted heaters (FMHs) located in a triangular enclosure using finite-difference technique. The heaters were isothermal and the temperature of the inclined wall was lower than that of the heaters while the remaining walls of the triangular enclosure were adiabatic. Results are presented according to the location of the heaters in two cases. In the first case, the PH was located near the vertical wall and the FMH near the right corner. In the second case, the PH was located near the right corner of the enclosure, whereas the FMH was located close to the vertical wall. The governing parameters on natural convection were Rayleigh number (10{sup}4 ≤ Ra ≤ 10{sup}6), dimensionless length of the PH (W{sub}1), dimensionless length of the FMH (W{sub}2), dimensionless height of the PH (Hp), dimensionless distance between the heater and the vertical wall (S{sub}1), dimensionless distance between the PH and the FMH (S{sub}2), and aspect ratio of the triangular enclosure (0.25 ≤ AR ≤ 1.0). It was found that better heat transfer occured when the PH was located near the right corner of the triangular enclosure, while the other heater was mounted near the left vertical wall. Heaters behaved as a single heater when they were close to each other.
机译:使用有限差分技术对位于三角形外壳中的凸出加热器(PH)和平装加热器(FMH)中的层流自然对流传热和流体流动进行了数值分析。加热器是等温的,倾斜壁的温度低于加热器,而三角形外壳的其余壁是绝热的。在两种情况下,根据加热器的位置显示结果。在第一种情况下,PH位于垂直墙附近,FMH位于右角附近。在第二种情况下,PH位于机柜的右角附近,而FMH位于垂直壁附近。自然对流的控制参数为瑞利数(10 {sup} 4≤Ra≤10 {sup} 6),PH的无量纲长度(W {sub} 1),FMH的无量纲长度(W {sub} 2) ,PH的无量纲高度(Hp),加热器和垂直壁之间的无量纲距离(S {sub} 1),PH和FMH之间的无量纲距离(S {sub} 2)以及三角形外壳的长宽比(0.25≤AR≤1.0)。已发现,当PH位于三角形外壳的右角附近时,而另一个加热器安装在左侧垂直壁附近,则传热效果更好。当加热器彼此靠近时,它们表现为单个加热器。

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