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Performance research of solar hybrid desiccant cooling systems

机译:太阳能混合干燥剂冷却系统的性能研究

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Two types of hybrid systems are investigated here. One was composed of vapor compressor and desiccant (VC+D) cooling system, and the other was composed of vapor compressor, desiccant and direct evaporative cooler (VC+D+EC) cooling system. The system regenerated by electricity and solar energy was conventional and solar hybrid systems respectively. Mathematical model of rotary desiccant wheel was established by considering thermal storage of supportive structure, and the physical model and numerical model of the hybrid system were established too. It was found that under the same operating condition, compared with conventional vapor-compression (VC) cooling system, Coefficient of performance (COP) and energy saving of two VC subsystem for hybrid systems are increased 16.09%, 28.71% and 58.37%, 78.71%; energy saving of whole loads for conventional hybrid and solar hybrid systems are 11.76%, 20.51% and 38.22%, 53.62%. It was also found that with the inside design temperature increased and relative humidity unchanged, energy saving potential of VC subsystems and of the whole loads for conventional hybrid and solar hybrid cycles was strengthened. The performances of the two hybrid cycles were studied in some typical area of China. The results show that more energy was saved in hot, dry climates and less was saved in hot, humid climates for the conventional hybrid cycles, while the solar hybrid cycles always saved more energy than conventional VC cycles.
机译:这里研究了两种类型的混合系统。一种由蒸汽压缩机和干燥剂(Vc + D)冷却系统组成,另一个由蒸汽压缩机,干燥剂和直接蒸发冷却器(Vc + D + EC)冷却系统组成。电力和太阳能再生的系统分别是常规的和太阳能混合系统。通过考虑支撑结构的热储存来建立旋转干燥剂的数学模型,建立了混合系统的物理模型和数值模型。结果发现,在相同的操作条件下,与传统的蒸汽压缩(VC)冷却系统相比,两种杂种系统的两个VC子系统的性能系数(COP)和节​​能增加了16.09%,28.71%和58.37%,78.71 %;传统杂种和太阳能混合系统的整体载荷节能为11.76%,20.51%和38.22%,53.62%。还发现,随着内部设计温度的增加和相对湿度不变,VC子系统的节能电位和传统混合和太阳杂交循环的整个载荷的节能潜力。在中国的一些典型地区研究了两个杂交循环的性能。结果表明,在热,干气候较少的情况下节省了更多的能量,以常规的混合循环的热,潮湿气候较少,而太阳杂交循环总是节省比传统VC循环更多的能量。

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