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Performance of a solar ejector cooling-system in the southern region of Turkey

机译:土耳其南部地区太阳能喷射器冷却系统的性能

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Performance variations of a solar-powered ejector cooling-system (SECS) using an evacuated-tube collector are presented for Antalya, Aydin, Konya and Urfa cities located in the southern region of Turkey by means of hourly and monthly average ambient temperature and solar radiation meteorological data. A SECS, based on a constant-area ejector flow model and using R-123, was considered. The cooling season and period were taken into account for the 6 months (May-October) and the hours 8:00-17:00, respectively. It was found that the evacuated-tube collector efficiency depending upon the ambient temperature and solar radiation within the day was remarkably varied. However, for all the cities, the cooling capacities of the SECS were very similar. When generator, condenser, and evaporator temperatures were taken, namely, 85℃, 30℃ and 12℃, the maximum overall coefficient of performance and the cooling capacity were obtained as 0.197 and 178.26 W/m~2, respectively, at 12:00 in August for Aydin. The evacuated-tube collector area per ton cooling was found to be around 21 m~2 at noontime in August for all the cities. Furthermore, at the off-design conditions, a performance map of the system was derived and discussed. It was determined that the SECS could be used for office-cooling purposes during the hours (8:00-15:00) in the southern region of Turkey.
机译:通过每小时和每月的平均环境温度和太阳辐射,介绍了位于土耳其南部地区的安塔利亚,艾登,科尼亚和乌法的城市中使用真空管集热器的太阳能喷射冷却系统(SECS)的性能变化。气象数据。考虑了基于恒定面积喷射器流动模型并使用R-123的SECS。六个月(5月至10月)和8:00-17:00分别考虑了冷却季节和冷却时间。已经发现,取决于一天中的环境温度和太阳辐射的真空管收集器效率显着变化。但是,对于所有城市,SECS的制冷能力都非常相似。取发电机,冷凝器和蒸发器温度为85℃,30℃和12℃时,在12:00时,最大综合性能系数和冷却能力分别为0.197和178.26 W / m〜2。在八月的艾登。在所有城市中,8月中午时每吨冷却的真空管集热器面积约为21 m〜2。此外,在非设计条件下,得出并讨论了系统的性能图。已确定SECS可以在土耳其南部地区的小时(8:00-15:00)中用于办公室制冷。

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