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Alternative refrigerants for the heat pump of a ground source heat pump system

机译:地源热泵系统热泵的替代制冷剂

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It is attempted to define more environment friendly working fluids for the heat pump of ground source heat pump systems (GSHPSs). The examined case is an office building with total cooled area 1000 m(2), which is connected with such a system. The energy demands are computed by TRNSYS 16.1 and the ground loop is modeled by GLD2009. Alternative refrigerants are proposed instead of the one that has been extensively used worldwide, for many years, the R-22. The proposed replacements are the binary mixtures R-32/R-134a in compositions 20/80%, 30/70%, 40/60% by mass, and the ternary blends R-407B (10wt% R-32, 70wt% R-125, 20wt% R-134a), R-152a/R-125/R-32 (48wt% R-152a, 18wt% R-125, 34wf% R-32), R-410B (45wt% R-32, 55wt% R-125) and R-507A (50wt% R-125, 50wt% R-143a). A MATLAB code is developed in order to calculate coefficient of performance (COP) values for one stage vapor compression reference cycle with no evaporator superheating and condenser subcooling. The thermodynamic properties of refrigerants are derived from previous works of our laboratory, REFPROP 8.0 and international bibliography. The choice of the most suitable refrigerant depends on the criteria which are set. (C) 2016 Elsevier Ltd. All rights reserved.
机译:试图为地源热泵系统(GSHPS)的热泵定义更环保的工作流体。检查的案例是总冷却面积为1000 m(2)的办公楼,该办公楼与该系统相连。能量需求由TRNSYS 16.1计算,接地回路由GLD2009建模。提出了替代制冷剂,而不是多年来在全世界广泛使用的制冷剂R-22。拟议的替代品是质量百分比为20/80%,30/70%,40/60%的二元混合物R-32 / R-134a和三元混合物R-407B(10wt%R-32、70wt%R -125,20wt%R-134a),R-152a / R-125 / R-32(48wt%R-152a,18wt%R-125,34wf%R-32),R-410B(45wt%R-32 ,55wt%R-125)和R-507A(50wt%R-125、50wt%R-143a)。开发了MATLAB代码,以便在没有蒸发器过热和冷凝器过冷的情况下计算一级蒸汽压缩参考循环的性能系数(COP)值。制冷剂的热力学性质源自我们实验室的先前工作,REFPROP 8.0和国际参考书目。选择最合适的制冷剂取决于设定的标准。 (C)2016 Elsevier Ltd.保留所有权利。

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