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首页> 外文期刊>Solar Energy >An adaptive aerodynamic approach to mitigate convective losses from solar cavity receivers
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An adaptive aerodynamic approach to mitigate convective losses from solar cavity receivers

机译:一种自适应空气动力学方法,以减轻太阳能腔接收器的对流损失

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摘要

We explore the potential for adaptive air barriers to mitigate convective heat losses from cavity receivers, especially at large tilt angles, using both suction and blowing nozzles. A heated scaled-down cylindrical cavity receiver was fitted with nozzles on four sides of the aperture, at 30 degrees to the aperture plane. The tilted cavity receiver was mounted in a large wind tunnel to allow systematic variation of wind speed and direction. The effectiveness of different nozzle arrangements was calculated from the measured convective heat losses for a series of different mitigation strategies. The results reveal that a suction nozzle mounted at the bottom of the aperture is more effective than a blowing nozzle mounted at the top of aperture for tilt angles of theta = 45 degrees, and under different wind speeds. The effectiveness ranged from 0 at a low suction flow rate to similar to 80% at a high suction flow rate. With the use of three suction nozzles, at the bottom and both sides of aperture, the effectiveness decreased markedly for both tilt angles and all wind speeds. For more challenging conditions of a 45 degrees tilt angle and 45 degrees yaw angle, the most effective approach is the use of suction through nozzles aligned diametrically opposite to the wind, while other nozzle combinations were ineffective in mitigating losses. Finally, the results highlight the need to apply an adaptive aerodynamic strategy that can respond to measured changes in the environmental conditions to achieve the highest thermal efficiency.
机译:我们探讨了自适应空气屏障的可能性,以减轻腔接收器的对流热损失,特别是在大倾斜角度,使用抽吸和吹喷喷嘴。加热的缩小圆柱形腔接收器装配有孔的四个侧面的喷嘴,在30度到孔平面。倾斜腔接收器安装在大型风洞中以允许风速和方向的系统变化。不同喷嘴布置的有效性是根据一系列不同缓解策略的测量的对流热损失计算。结果表明,安装在孔的底部的吸嘴比安装在孔顶部的吹气喷嘴更有效,用于θ= 45度的倾斜角度,并且在不同的风速下。在高吸入流速下,功效在低吸入流速下的0次以0.8%相似。随着三个吸入喷嘴,在孔的底部和两侧,倾斜角度和所有风速都显着降低了有效性。对于45度倾斜角度和45度偏航角度的更具挑战性的条件,最有效的方法是使用喷嘴的抽吸使用径向对照的径向对齐,而其他喷嘴组合在减轻损失方面是无效的。最后,结果突出了应用自适应空气动力学策略的需要,可以响应环境条件的测量变化,以实现最高的热效率。

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