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Performance Analysis of an Integrated Heat Pump with Air-Conditioning System for the Existing Hospital Building Application

机译:现有医院建筑应用空调系统集成热泵性能分析

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摘要

In this study, a complete evaluation procedure of energy-saving and efficiency improvement for a large-scale hospital retrofit project has been established and successfully validated in Taiwan. The retrofit scheme, in integrating the alternative hot water system, namely, a water source heat pump (WSHP), with the existing HVAC (Heating, Ventilating, and Air-Conditioning) system, enables the capability to meet the cooling and hot water demand simultaneously with a larger safety margin as well as saving energy. In addition, it has been found that the integrated system provides a new source for cooling which can be utilized as a system redundancy in avoiding system shutdown. This is very useful when considering in specific areas in the hospital, such as intensive care unit, or operation rooms, where cooling should not be interrupted on any occasion. In this study, it is validated that the coefficient of performance (COP) of the newly added WSHP system, under heating and cooling mode, is 3.62 and 2.62, respectively. The recorded annual cost reduction by this integrated system is $102,564, with a payback of 1.2 years. The hospital after retrofit has been operating safer, with more redundancy, and more energy-efficient which warrants tremendous potential for implementation in the industry.
机译:在这项研究中,在台湾建立并成功验证了大型医院改造项目的节能和效率提高的完整评估程序。在整合替代热水系统的改造方案中,采用现有HVAC(加热,通风和空调)系统的水源热泵(WSHP),使能力能够满足冷却和热水需求同时具有较大的安全保证金以及节省能源。此外,已经发现集成系统提供了一种用于冷却的新源,其可以用作避免系统关闭时的系统冗余。这是在考虑在医院的特定区域(如重症监护病房)或操作室的特定区域时非常有用,其中冷却不应在任何场合中断。在该研究中,经过验证,在加热和冷却模式下,新增的WSHP系统的性能系数(COP)分别为3.62和2.62。该综合系统的录制年度成本减少为102,564美元,回报率为1.2岁。改造后的医院经营更安全,具有更冗余,更节能,保证行业实施巨大潜力。

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