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首页> 外文期刊>Case Studies in Thermal Engineering >A case study of thermal analysis of a solar assisted absorption air-conditioning system using R-410A for domestic applications
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A case study of thermal analysis of a solar assisted absorption air-conditioning system using R-410A for domestic applications

机译:利用R-410A进行国内应用的太阳能辅助吸收空调系统热分析案例研究

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Sustainable future and green environment goals quest for the development of technologies to utilize renewable energy resources to power the people. This study focuses on the designing, modelling, and simulation of an absorption solar air-conditioning system. Key performance parameters are identified, optimized for maximum efficiency and simulated in transient energy simulation software TRNSYS ?. The designed model comprises five thermal loops: a solar loop consisting of an evacuated glass tube solar collector having R-410A as heat transfer fluid in it and a heat exchanger heat tank, second loop has an absorption chiller, and an auxiliary furnace with hot water stream, third is the cooling tower loop, the fourth loop is of chilled water from the chiller and the final thermal loop is for air delivery of cooling to each room. The system is simulated using Lahore, Pakistan’s climate conditions and offered a good tendency for the proposed system to meet air-conditioning demand at the domestic level. The average collector outlet temperature value of 78°C has been recorded throughout the week. Collector provides useful energy gain at an average rate of 71,065 kJ/h. Average storage tank temperature at the outlet of heat exchanger is 92°C. Average room temperature values of three rooms are 27°C, 30°C and 19°C respectively.
机译:可持续的未来和绿色环境目标追求技术开发,利用可再生能源资源为人民提供动力。本研究侧重于吸收太阳能空调系统的设计,建模和仿真。识别关键性能参数,针对最大效率和模拟瞬态能量模拟软件TRNSYS进行了优化。设计的型号包括五个热环:由具有R-410a的疏散玻璃管太阳能收集器组成的太阳能环,作为其上的传热流体和热交换器热罐,第二环具有吸收式冷却器,以及带热水的辅助炉流,第三是冷却塔环,第四环是冷却器的冷却水,最终的热环是用于空气输送到每个房间。该系统采用拉赫罗尔,巴基斯坦的气候条件模拟,并为拟议的系统提供了良好的趋势,以满足国内空调需求。整个星期内记录了78°C的平均收集器出口温度值。收集器以71,065 kJ / h的平均速率提供有用的能源增益。热交换器出口处的平均储罐温度为92°C。平均室温值为27°C,30°C和19°C。

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