Development of thermally-driven hybrid LiBr-water absorption system for simultaneously supplying steam and refrigeration effect

被引:11
作者
Hong, Sung Joo [1 ,2 ]
Bae, Kyung Jin [3 ]
Nguyen, Thi-Nhan [4 ]
Kim, Han Gil [5 ]
Kim, In Gwan [5 ]
Kim, Nam Yong [6 ]
Kwon, Oh Kyung [5 ]
Park, Chan Woo [4 ,7 ]
机构
[1] Jeonju Univ, Dept Mech & Automot Engn, Jeonju Si 55069, Jeonbuk, South Korea
[2] Jeonju Univ, Dept Carbon Convergence Engn, Jeonju Si 55069, Jeonbuk, South Korea
[3] Korea Inst Ind Technol KITECH, Thermal & Fluid Syst Grp, Cheonan Si 31056, Chungnam, South Korea
[4] Jeonbuk Natl Univ, Dept Energy Storage, Convers Engn Grad Sch, Jeonju Si 54896, Jeonbuk, South Korea
[5] World E&C Co Ltd, 102 Dolseoji Gil, Hwaseong Si 18574, Gyeonggi, South Korea
[6] Chungwoon Syst Co Ltd, KGIT Ctr, Seoul 03925, South Korea
[7] Jeonbuk Natl Univ, Sch Mech Design Engn, Jeonju Si 54896, Jeonbuk, South Korea
基金
新加坡国家研究基金会;
关键词
Absorption system; coefficient of performance (COP); Heat pump; LiBr solution; Refrigeration; Steam generation; HEAT TRANSFORMERS; MASS-TRANSFER; SINGLE-STAGE; ENERGY; CONFIGURATIONS; OPTIMIZATION; GENERATOR;
D O I
10.1016/j.applthermaleng.2021.117792
中图分类号
O414.1 [热力学];
学科分类号
摘要
Waste heat is a form of renewable energy discarded into the atmosphere. Waste heat-driven absorption systems (i.e., heat pumps and refrigeration systems) have attracted attention as district heating and cooling systems. This study proposes a waste heat-driven hybrid lithium bromide-water absorption system for the simultaneous generation of available steam and refrigeration effects. The proposed system is a form of the combined closed thermal cycle between the sub-heat pump and the sub-refrigeration system. It shares a generator and condenser, which allows the system to be more compact and flexible. We first present a description of the proposed system, designed for a cooling capacity of 350 kW with a steam generation rate of 200 kg/h. Our preliminary study proposed a pilot-scale system to clarify the flexible and simultaneous control means of the heating and cooling capacities by partially distributing the flow rate of the LiBr solution entering each sub-cycle. In addition to the results from the preliminary study, the present work examined the effect of part-load conditions on the operating parameters of the hybrid absorption system. The results showed that the coefficient of performances of subrefrigeration and sub-heat pump cycle were approximately 0.787 and 0.658, respectively, and as a result, the total coefficient of performance of 0.463 was achieved. The theoretical model was validated by the experimental data, and the payback analysis was suggested to assure the economic validity of the proposed system. It was noted that the proposed hybrid absorption system demanded high initial facility cost than the comparison groups, but a payback of 2.79 and 2.36 years was evaluated because of the use of low-grade energy.
引用
收藏
页数:11
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