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Simulation and experimental study of solar-absorption heat transformer integrating with two-stage high temperature vapor compression heat pump

机译:两级高温蒸气压缩式热泵一体化太阳能吸收式热转换器的仿真与实验研究

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In this study, simulation and experiment studies of a 10kW solar H2O–LiBr absorption heat transformer (AHT) integrating with a two-stage vapor compression heat pump (VCHP) were carried out. The whole system was named as compression/absorption heat transformer (CAHT). The VCHP was used to recover rejected heat at the AHT condenser which was transferred back to the AHT evaporator at a higher temperature. The AHT unit took solar heat from a set of flat-plate solar collectors in parallel connection. R-134a and R-123 were refrigerants in the VCHP cycle. From the simulation, the total cycle coefficient (COP) of the solar-CAHT was 0.71 compared with 0.49 of the normal solar-AHT. From the experiment, the total cycle COPs of the solar-CAHT and the solar-AHT were 0.62 and 0.39, respectively. The experimental results were lower than those of the simulated models due to the oversize of the experimental compressor. The annual expense of the solar-CAHT was found to be 5113 USD which was lower than 5418 USD of the solar-AHT. So it could be concluded that the modified unit was beneficial than the normal unit in terms of energy efficiency and economic expense.
机译:在这项研究中,对集成了两级蒸气压缩热泵(VCHP)的10kW太阳能H2O-LiBr吸收式热转换器(AHT)进行了仿真和实验研究。整个系统称为压缩/吸收式热转换器(CAHT)。 VCHP用于在AHT冷凝器中回收排出的热量,该热量在较高温度下传递回AHT蒸发器。 AHT单元从一组并联的平板式太阳能收集器中吸收太阳能。 R-134a和R-123是VCHP循环中的制冷剂。根据仿真,太阳能CAHT的总循环系数(COP)为0.71,而普通太阳能AHT的总循环系数(COP)为0.49。根据实验,太阳能CAHT和太阳能AHT的总循环COP分别为0.62和0.39。由于实验压缩机尺寸过大,实验结果低于模拟模型。太阳能CAHT的年费用为5113美元,低于太阳能AHT的5418美元。因此可以得出结论,在能源效率和经济费用方面,改造后的机组比普通机组更有利。

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