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An experimental study on convection heat transfer from an array of discrete heat sources

机译:来自离散热源阵列的对流传热的实验研究

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Convection heat transfer from an array of discrete heat sources inside a rectangular channel has been investigated experimentally for air. The lower surface of the channel was equipped with 8 x 4 flush-mounted heat sources subjected to uniform heat flux; the sidewalls and the upper wall were insulated and adiabatic. The experimental parametric study was made for an aspect ratio of AR=2, Reynolds numbers 864≤ Re_(D_h)≤ 7955, and modified Grashof numbers Gr~*=1.72x 10~8 to 2.76x 10~9. From the experimental measurements, surface temperature distributions of the discrete heat sources were obtained and effects of Reynolds and Grashof numbers on these temperatures were investigated. Furthermore, Nusselt number distributions were calculated for different Reynolds and Grashof numbers. Results show that surface temperatures increase with increasing Grashof number and decrease with increasing Reynolds number. However, with the increase in the buoyancy affected secondary flow and the onset of instability, temperatures level off and even drop as a result of heat transfer enhancement. This outcome can also be observed from the variation of the row-averaged Nusselt number showing an increase towards the exit.
机译:实验研究了矩形通道内离散热源阵列的对流传热。通道的下表面装有8 x 4齐平安装的热源,它们受到均匀的热通量。侧壁和上壁是绝热的和绝热的。针对AR = 2的长宽比,雷诺数864≤Re_(D_h)≤7955以及修改的Grashof数Gr〜* = 1.72x 10〜8至2.76x 10〜9进行了实验参数研究。通过实验测量,获得了离散热源的表面温度分布,并研究了雷诺数和格拉斯霍夫数对这些温度的影响。此外,针对不同的雷诺数和Grashof数计算了Nusselt数分布。结果表明,表面温度随Grashof数的增加而增加,随雷诺数的增加而降低。然而,随着浮力的增加影响了次级流量和不稳定的开始,由于传热的增强,温度趋于稳定甚至下降。从行平均努塞尔数的变化也可以观察到这一结果,显示出向出口的增加。

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