首页> 外文会议>IIR International Conference on Thermophysical Properties and Transfer Processes of Refrigerants >INFLUENCE OF HEAT CAPACITY OF ADSORBENT HEAT EXCHANGER ON COOLING AND HEATING ENERGY SUPPLY FROM ADSORPTION CHILLER DRIVEN BY SOLAR THERMAL ENERGY
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INFLUENCE OF HEAT CAPACITY OF ADSORBENT HEAT EXCHANGER ON COOLING AND HEATING ENERGY SUPPLY FROM ADSORPTION CHILLER DRIVEN BY SOLAR THERMAL ENERGY

机译:吸附剂热交换器热容量对太阳能热能驱动的吸附冷却器冷却和加热能量供应的影响

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The objective of this study is to estimate cooling and heating energy from adsorption refrigeration and heat pump system driven by solar thermal energy. The system composed of a CPC type collector and zeolite (FAM-Z02)/water adsorption system. We evaluated numerically the supplied cooling and heating energy at 20°C from the system every hour for a year with an assumption of the adsorption equilibrium theory using solar irradiation, dry air and wet-bulb temperatures at Fukuoka of Japan in 2004. The cooling and heating energies decreased 10% and 4% by counting heat capacity of the adsorbent heat exchanger. The ratio of supplying energy to the collected solar was also 1.16 which was 0.08 smaller than the ratio without a counting the heat capacity. Additionally, this influence was significant at low heat source temperature condition. Consequently, a development of an adsorbent heat exchanger with low heat capacity will be urgent issue.
机译:本研究的目的是估算由太阳能热能驱动的吸附制冷和热泵系统的冷却和加热能量。由CPC型收集器和沸石(FAM-Z02)/水吸附系统组成的系统。我们在2004年使用日本福冈福冈福冈福冈的太阳辐射,干燥空气和湿灯泡温度,每小时在20°C下从系统的每小时向系统进行数量评价。通过计算吸附剂热交换器的热量,加热能量降低10%和4%。供应能量与收集的太阳能的比率也是1.16,比比比率小于0.08,没有计数热量。另外,这种影响在低热源温度条件下显着。因此,具有低热容量的吸附剂热交换器的开发将是迫切的问题。

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