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Experimental investigation of the effect of wind speed and wind direction on a solar chimney power plant

机译:风速和风向对太阳能烟囱发电厂影响的实验研究

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Wind has been reported to have adverse effect on the performance of traditional solar chimney power plants but no reference has been made on the wind effect on inclined solar chimneys. An experimental investigation on the effects of ambient wind speed and wind direction on the performance of a south facing inclined solar chimney power plant model is reported in this paper. The effect of ambient wind speed and direction on the system performance was analyzed and the results showed that for the south facing collector, wind speed and directions have strong effects on the plant performance. The wind speed was found to have considerable influence on the convective heat loss through the cover and the walls to the ambient. Considering the wind direction, it was found that the system performance was favoured when the wind direction is from south moving north while the performance is impaired when the wind direction is from east or west. The results also showed some performance degradation when the wind is from the north. The findings also revealed that the walls of the air flow channel of the system resist the wind from sweeping the hot air generated in the system out to the ambient. Based on the findings, the use of inlet guide vanes as wind breakers at the collector inlet of traditional solar chimney power plant can reduce the losses associated to the wind effect inside the collector. The wind breakers will channel the natural energy of the wind into the system and enhance the system performance.
机译:据报道,风对传统的太阳能烟囱发电厂的性能有不利影响,但没有关于倾斜的太阳能烟囱的风影响的参考。本文研究了环境风速和风向对朝南的倾斜太阳能烟囱电站模型性能的影响的实验研究。分析了环境风速和风向对系统性能的影响,结果表明,对于朝南的集热器,风速和风向对电站性能有很大影响。发现风速对通过盖和壁到环境的对流热损失具有相当大的影响。考虑到风向,发现当风向是从南方向北移动时,系统性能会受到偏爱;而当风向是从东或西向来时,系统性能会受到损害。结果还表明,当风来自北方时,性能会有所下降。研究结果还表明,系统气流通道的壁可抵抗风将系统中产生的热空气吹到周围的环境中。基于这些发现,在传统的太阳能烟囱发电厂的集热器入口处使用进口导流叶片作为防风罩可以减少与集热器内部的风效应相关的损失。防风罩将风的自然能引导到系统中,并增强了系统性能。

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