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首页> 外文期刊>International Journal of Refrigeration >Thermodynamic and thermo-economic analysis of compression–absorption cascade refrigeration system using low-GWP HFO refrigerant powered by geothermal energy
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Thermodynamic and thermo-economic analysis of compression–absorption cascade refrigeration system using low-GWP HFO refrigerant powered by geothermal energy

机译:采用地热能供电的低GWP HFO制冷剂压缩吸收级联制冷系统热力学和热经济分析

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摘要

This study proposes a simulation that incorporates energy, exergy, and economic factors into the development of an absorption-compression cycle for air-conditioning that makes use of heat sources available in Algeria. The springs have been used on record range in temperature between 60 and 94?°C. LiBr-H2O and LiCl-H2O have been used in the absorption section and low global warming potential fluids including R1234yf, R1234ze (E), and R1233zd (E) in the vapor compression section. In using these combinations of fluids, a recorded (51.36–54.16%) decrease in electricity consumption has been documented in comparison with conventional cycles. Furthermore, the coefficient of performance (COP) values for all of the combinations used ranged between (0.432 and 0.659). Enhanced performance was noted in the systems that used (LiBr-H2O/R1234yf). Economically, the use of geothermal energy is more financially sound in comparison to the use of solar energy in depth of well's less than 16?m.
机译:本研究提出了一种仿真,该模拟将能量,暴力和经济因素纳入了吸收压缩循环的用于空调的吸收压缩循环,这是在阿尔及利亚使用的热源使用的空调。 弹簧在60至94℃之间的记录范围内使用。 Lib-H2O和LICL-H2O已被用于吸收部分和低全球变暖潜在流体,包括R1234YF,R1234ZE(E)和蒸汽压缩部分的R1233ZD(e)。 在使用这些流体的组合时,与常规循环相比,已经记录了所记录的(51.36-54.16%)的电力消耗减少。 此外,所使用的所有组合的性能系数(COP)值(0.432和0.659)。 在使用的系统中注意到增强的性能(Libr-H2O / R1234YF)。 在经济上,与在井中的太阳能少于16米的太阳能的使用相比,地热能的使用更加经济。

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