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Experimental results of a direct air-cooled ammonia-lithium nitrate absorption refrigeration system

机译:直接空冷氨氮硝酸锂吸收式制冷系统的实验结果

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摘要

Absorption thermal cooling systems driven by renewable energy are a viable option in order to reduce fossil fuel consumption and the associated emissions. This work shows the results of an air cooled absorption cooling prototype working with an ammonia-lithium nitrate mixture at high ambient temperatures. An absorption refrigeration system was designed and built. The prototype is a one stage ammonia-lithium nitrate air cooled chiller. The experimental system was instrumented to evaluate each component. This paper shows the operation conditions in the experimental unit as well as some of the heat loads encountered at different operating conditions. The system was operated successfully at ambient temperatures in the range of 25-35℃. A series of test showed that even at ambient temperatures it can be operated at evaporator temperatures below 10℃ producing chilled water for air conditioning applications such as radiative cooling panels. The system proved to stabilize very quickly and no risk of crystallization was encountered so the first results are promising in order to continue with the development of a more advanced prototype.
机译:由可再生能源驱动的吸收式热冷却系统是减少矿物燃料消耗和相关排放的可行选择。这项工作显示了在高环境温度下使用氨-硝酸锂混合物进行空气冷却的吸收式冷却原型的结果。设计并建造了吸收式制冷系统。原型是一台氨-硝酸锂风冷式冷却器。实验系统用于评估每个组件。本文展示了实验装置的运行条件以及在不同运行条件下遇到的一些热负荷。该系统在25-35℃的环境温度下成功运行。一系列测试表明,即使在环境温度下,它也可以在低于10℃的蒸发器温度下运行,从而产生用于空调应用的冷却水,例如辐射冷却板。事实证明,该系统非常稳定,没有遇到结晶的危险,因此,最初的结果很有希望,以便继续开发更先进的原型。

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