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Experimental insights into the mechanism of heat losses from a cylindrical solar cavity receiver equipped with an air curtain

机译:对装有气帘的圆柱形太阳腔接收器的热损失机理的实验见解

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摘要

We report on the effectiveness of an air curtain to mitigate convective heat losses from a heated cylindrical cavity receiver operated at fixed tilt (15 degrees) and yaw angles (0 degrees). The cavity was heated electrically with a controller to maintain a constant inside temperature of 300 degrees C, varying wind speed, air curtain velocity and discharge angle. It was found that the greatest convective heat losses occur over the lower internal surfaces of the cavity for all cases, spanning both natural and forced convection regimes, while a discharge angle of 30 degrees relative to the face of the cavity is more effective than a parallel curtain, which was found to increase heat losses. It was also found that, for a discharge angle of 0 degrees, increasing the velocity of the air curtain leads to higher convective heat losses. However, for a curtain discharge angle of 30 degrees, increasing the air curtain velocity can reduce heat losses by up to 60%. The measured distribution of air temperature across the aperture plane and convective heat losses through the surface were used to provide insight into the causes of these observations. These results suggest that, for tilted, tower-mounted cavity receivers, the orientation of an air curtain should be directed with a component towards the wind, rather than parallel to the aperture plane.
机译:我们报告了气幕减轻在固定倾斜度(15度)和偏航角(0度)下工作的加热圆柱腔接收器对流热损失的有效性。用控制器对空腔进行电加热,以保持内部恒定温度为300摄氏度,从而改变风速,气幕速度和排放角度。发现在所有情况下,在自然和强制对流范围内,最大的对流热损失发生在腔体的下部内表面上,而相对于腔体的表面,相对于腔体的表面,与腔体表面成30度的排放角则更有效。幕,发现会增加热量损失。还发现,对于0度的排出角,增加气帘的速度导致更高的对流热损失。但是,对于30度的帘幕排放角,提高气帘速度可以减少多达60%的热量损失。测得的整个孔平面上的空气温度分布以及通过表面的对流热损失可用于深入了解这些观测的原因。这些结果表明,对于倾斜的,塔顶安装的腔体接收器,气幕的方向应朝向风,而不是平行于孔径平面。

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