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Effect of wind speed and direction on convective heat losses from solar parabolic dish modified cavity receiver

机译:风速和风向对太阳能抛物面碟形空腔接收器对流热损失的影响

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The performance of solar parabolic dish collector is significantly influenced by heat losses due to wind speed and direction. In this article, investigation of convective heat losses from the modified cavity receiver of solar parabolic dish collector is carried out numerically by considering the wind direction, wind speed, receiver configuration and receiver orientation. The effect of wind on the receiver in various directions (phi = -90 degrees to 90 degrees), wide range of operating wind speeds (V = 0-10 m/s), receiver inclinations (beta = 0-90 degrees) and varying surface temperature on convective heat loss from the receiver are studied. Velocity vectors, velocity contours, temperature contours are presented to show the effect of wind on the heat loss from the modified cavity receiver. The forced convection is found to have similar trend of free convection heat loss at lower wind speed. However at higher wind speed, such a pattern is not observed. At lower wind speeds say less than critical wind speed (<2.5 m/s), the forced convection heat loss is lower than natural convection heat loss for lower receiver inclinations and wind direction ranging between -90 degrees and 0 degrees. The forced convection heat loss is more significant than free convection heat loss above 5 m/s for all phi and beta values. For side-on winds, at higher wind speeds above 5 m/s, irrespective of receiver inclination, the variation of forced convection heat loss is marginal (less than 5%). The maximum forced convection heat loss occurs for partly open receivers (receiver aperture diameter ratio, R-AD = 0.4 and 0.6) at phi = 0 (side-on wind) for all receiver inclinations and at phi = 30 degrees for R-AD = 0.8 and 1. The receiver inclination has less effect on heat loss from the receiver for V > 2.5 m/s due to side-on wind. The highest convection heat loss occurs for fully open (R-AD = 1) receiver as compared to partly open (R-AD < 1) modified cavity receiver. Nusselt number correlation is proposed to calculate combined convection heat losses from the receiver as a function of receiver inclination, wind direction, wind velocity and aperture diameter ratio. (C) 2016 Elsevier Ltd. All rights reserved.
机译:太阳能抛物面集热器的性能受风速和风向引起的热损失的影响很大。在本文中,通过考虑风向,风速,接收器配置和接收器方向,从数值上研究了太阳能抛物面集热器的改进型腔接收器对流热损失。风在不同方向上对接收器的影响(phi = -90度至90度),工作风速范围很广(V = 0-10 m / s),接收器倾斜度(beta = 0-90度)并且变化研究了表面温度对接收器对流热损失的影响。给出了速度矢量,速度等高线,温度等高线,以显示风对改进型腔体接收器的热损失的影响。发现强制对流在较低风速下具有相似的自由对流热损失趋势。但是,在较高的风速下,不会观察到这种模式。在较低风速下(例如低于临界风速(<2.5 m / s)),对于较低的接收器倾斜度和-90度至0度的风向,强制对流热损失低于自然对流热损失。对于所有phi和beta值,强制对流热损失比5 m / s以上的自由对流热损失更为重要。对于侧风,在高于5 m / s的较高风速下,无论接收器倾斜度如何,强制对流热损失的变化都很小(小于5%)。对于所有接收器倾斜,部分打开的接收器(接收器孔径直径比,R-AD = 0.4和0.6)在phi = 0(侧风)时和在phi = 30度时(对于R-AD = 0.8和1。由于侧风,当V> 2.5 m / s时,接收器倾斜对接收器的热损失影响较小。与部分打开(R-AD <1)的改进型腔体接收器相比,完全打开(R-AD = 1)接收器的对流热损失最高。提出了Nusselt数相关性,以计算接收器的组合对流热损失,该损失是接收器倾斜度,风向,风速和孔径直径比的函数。 (C)2016 Elsevier Ltd.保留所有权利。

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