Modeling and simulation of a small-scale solar-powered absorption cooling system in three cities with a tropical climate

被引:6
|
作者
Boero, Andrea [1 ]
Agyenim, Francis [2 ]
机构
[1] ESPOL Polytech Univ, Escuela Super Politecn Litoral, ESPOL, FIMCP, Campus Gustavo Galindo Km 30-5 Via Perimetral, Guayaquil, Ecuador
[2] CSIR, Inst Ind Res, POB LG 576, East Legon, Accra, Ghana
关键词
solar cooling; absorption chiller; cold store; tropical climate; PERFORMANCE; ENERGY; BUILDINGS; DESIGN; TECHNOLOGIES; ENHANCEMENT; CHILLER; CYCLE;
D O I
10.1093/ijlct/ctz040
中图分类号
O414.1 [热力学];
学科分类号
摘要
This study assessed through numerical simulations, the technical feasibility of a solar-powered absorption cooling system for a small-scale application in an office building in three different cities with a tropical climate in Ecuador. The model and simulations were performed using the dynamic transient software TRNSYS and were compared and validated using experimental data obtained from a real-life system with main components: 12 m(2) vacuum tube solar thermal collector array, a 4.5 kW LiBr/H2O single-effect absorption chiller, a 6 kW fan coil and a 100 l sensible cold store. The results of the simulation showed a good agreement with the experimental data with a deviation of 8.5%. The validated model was used to undertake a parametric study to determine capacities of systems that will be applicable to three Ecuadorian cities: Guayaquil, Manta and San Cristobal. The system capacity predicted by the model for the Ecuadorian cities has the following components: 24 m(2) evacuated tube collector field, a 20 kW heat exchanger, a 15 kW single-stage LiBr/H2O absorption chiller, a 35 kW cooling tower and a cold storage tank of 2 m(3). The results showed that the proposed system could meet most of the required cooling load (90% for Guayaquil and San Cristobal, and 71% for Manta, considering a set point of 24 degrees C) of a typical single-story office building with.
引用
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页码:1 / 16
页数:16
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