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首页> 外文期刊>International Journal of Photoenergy >Simulation Analysis of the Four Configurations of Solar Desiccant Cooling System Using Evaporative Cooling in Tropical Weather in Malaysia
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Simulation Analysis of the Four Configurations of Solar Desiccant Cooling System Using Evaporative Cooling in Tropical Weather in Malaysia

机译:马来西亚热带天气中采用蒸发冷却的太阳能干燥剂冷却系统四种配置的仿真分析

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A high demand for air conditioning systems exists in hot and humid regions because of the warm climate during the year. The high energy consumption of conventional air conditioning system is the reason for our investigation of the solar desiccant cooling system as an energy-efficient cooling system. Four model configurations were considered to determine the best configuration of a solar desiccant cooling system: one-stage ventilation, one-stage recirculation, two-stage ventilation, and two-stage recirculation. These models were stimulated for 8,760 hr of operation under hot and humid weather in Malaysia. Several parameters (i.e., coefficient of performance or COP, room temperature and humidity ratio, and the solar fraction of each system) were evaluated by detecting the temperature and humidity ratio of the different points of each configuration by TRNSYS simulation. The latent and sensible loads of the test room were 0.875 kW and 2.625 kW, respectively. By investigating the simulation results of the four systems, the ventilation modes were found to be higher than the recirculation modes in the one- and two-stage solar desiccant cooling systems. The isothermal dehumidification COP of the two-stage ventilation was higher than that of the two-stage recirculation. Hence, the two-stage ventilation mode desiccant cooling system in a hot and humid area has higher efficiency than the other configurations.
机译:由于一年中气候温暖,在炎热和潮湿的地区对空调系统的需求很高。常规空调系统的高能耗是我们研究将太阳能干燥剂冷却系统作为一种节能冷却系统的原因。为了确定太阳能干燥剂冷却系统的最佳配置,考虑了四种模型配置:一级通风,一级再循环,二级通风和二级再循环。在马来西亚炎热潮湿的天气中,这些模型的运行时间为8,760 hr。通过TRNSYS仿真检测每个配置的不同点的温度和湿度比率,从而评估了几个参数(即性能系数或COP,室温和湿度比率以及每个系统的太阳能分数)。测试室的潜在负载和显性负载分别为0.875 kW和2.625 kW。通过研究这四个系统的模拟结果,发现通风模式要比一阶段和两阶段的太阳能干燥剂冷却系统中的再循环模式高。两阶段通风的等温除湿COP高于两阶段再循环的等温除湿COP。因此,在湿热区域中的两级通风模式干燥剂冷却系统具有比其他构造更高的效率。

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