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On subcooler design for integrated two-temperature supermarket refrigeration system
Abstract The energy saving opportunity of supermarket refrigeration systems using subcooler between the medium-temperature (MT) refrigeration system and the low-temperature (LT) refrigeration system has been identified in the previous work. This paper presents a model-based comprehensive analysis on the subcooler design. The optimal subcooling control is discussed as well. With optimal subcooler size and subcooling control, the maximum energy savings of integrated two-temperature supermarket refrigeration system using R404A or R134a as working fluid can achieve 27% or 20%, respectively. The load ratio of MT to LT system and the operating conditions have considerable impact on the energy savings.
On subcooler design for integrated two-temperature supermarket refrigeration system
Abstract The energy saving opportunity of supermarket refrigeration systems using subcooler between the medium-temperature (MT) refrigeration system and the low-temperature (LT) refrigeration system has been identified in the previous work. This paper presents a model-based comprehensive analysis on the subcooler design. The optimal subcooling control is discussed as well. With optimal subcooler size and subcooling control, the maximum energy savings of integrated two-temperature supermarket refrigeration system using R404A or R134a as working fluid can achieve 27% or 20%, respectively. The load ratio of MT to LT system and the operating conditions have considerable impact on the energy savings.
On subcooler design for integrated two-temperature supermarket refrigeration system
Yang, Liang (Autor:in) / Zhang, Chun-Lu (Autor:in)
Energy and Buildings ; 43 ; 224-231
17.09.2010
8 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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