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Building integrated solar air heating with waste heat utilization

机译:利用余热利用的建筑一体化太阳能空气供暖

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摘要

A novel waste heat utilization system, which consists of transpired solar collector panels and capillary tube heat exchanger, is studied; its function principle is described, and its experimental performance is presented for the first time. A test unit of capillary tubes was installed at the solar wall air heater at the factory of an automotive company in Turkey in 2012. Capillary tubes utilized waste heat energy which is obtained from heat recovery unit of an air compressor. Thermal power output, ambient temperature, temperature rise, collector cavity temperatures, and water supply temperatures were monitored over the course of two winters. The results showed that capillary tubes can provide 15 degrees C temperature rise during night-time operation. The heat exchange effectiveness in air cavity is found to be maximum 0.7. The results also show that waste heat energy utilization can reach up to 85% depending on operating conditions.
机译:研究了一种新型的废热利用系统,该系统由透热式太阳能集热板和毛细管热交换器组成。描述了其功能原理,并首次展示了其实验性能。 2012年,在土耳其一家汽车公司的工厂的太阳能墙式空气加热器上安装了一个毛细管测试单元。毛细管利用了从空气压缩机的热回收单元获得的废热能。在两个冬天的过程中,监测了热功率输出,环境温度,温度升高,集热腔温度和供水温度。结果表明,在夜间操作期间,毛细管可以提供15摄氏度的温度升高。发现气腔中的热交换效率最大为0.7。结果还表明,根据运行条件,废热能利用率可达到85%。

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