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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Cooling performance and energy saving of a compression-absorption refrigeration system assisted by geothermal energy
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Cooling performance and energy saving of a compression-absorption refrigeration system assisted by geothermal energy

机译:地热能辅助压缩吸收式制冷系统的制冷性能和节能

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The objectives of this paper are to develop a novel combined refrigeration system, and to discuss the thermodynamic analysis of the cycle and the feasibility of its practical development. The aim of this work was to study the possibility of using geothermal energy to supply vapour absorption system cascaded with conventional compression system. Three working fluids (R717, R22, and R I 34a) are selected for the conventional compression system and the ammonia-water pair for the absorption system. The geothermal temperature source in the range 343-349 K supplies a generator operating at 335 K. Results show that the COP of a combined system is significantly higher than that of a single stage refrigeration system. It is found that the COP can be improved by 37-54%, compared with the conventional cycle, under the same operating conditions, that is an evaporation temperature at 263 K and a condensation temperature of 308 K. For industrial refrigeration, the proposed system constitutes an alternative solution for reducing energy consumption and greenhouse gas emissions.
机译:本文的目的是开发一种新型的组合制冷系统,并讨论该循环的热力学分析及其实际开发的可行性。这项工作的目的是研究利用地热能提供与常规压缩系统级联的蒸气吸收系统的可能性。为常规压缩系统选择了三种工作流体(R717,R22和R I 34a),为吸收系统选择了氨水对。地热温度源在343-349 K范围内,为发电机提供了335 K的工作温度。结果表明,组合系统的COP明显高于单级制冷系统的COP。发现在相同的操作条件下,即263 K的蒸发温度和308 K的冷凝温度,在相同的操作条件下,COP可以比常规循环提高37-54%。对于工业制冷,建议的系统构成减少能耗和温室气体排放的替代解决方案。

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