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A comparison study on energy savings and fungus growth control using heat recovery devices in a modern tropical operating theatre

机译:现代热带手术室中使用热回收装置的节能与真菌生长控制的比较研究

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摘要

Fungus growth has always been a problem in hot and humid areas. This particular problem is crucial for operating theatre as it could affect the success rate of operations. Many postoperative fungus infection cases had occurred in the past, and it is generally agreed that air-conditioning system play a very important role in resolving the fungus growth problem. Besides air quality, the energy consumption level of air-conditioning system is also very important. In this study, the operating theatre 3 in Putrajaya Hospital, Malaysia was chosen as the research subject. The air-conditioning system for OT3 was redesigned with the energy recovery wheel, desiccant dehumidifier and heat pipe heat exchanger to achieve the objectives of this study. A computer program called Transient system simulation program (TRNSYS) was utilized for analysis in this research. From the outcome of simulations, it was found that the heat pipe heat exchanger could reduce the most energy consumed by the air-conditioning system. It managed to reduce the energy consumption by 57.85%. Moreover, the payback period of the device is only 0.95 years, which is the shortest among all the systems studied. Therefore, applying heat pipe heat exchanger is a good choice to save energy and resolve fungus growth problem in hot and humid areas.
机译:在炎热和潮湿的地区,真菌的生长一直是一个问题。这个特殊问题对于手术室至关重要,因为它可能会影响手术的成功率。过去发生过许多术后真菌感染病例,并且普遍认为空调系统在解决真菌生长问题中起着非常重要的作用。除了空气质量,空调系统的能耗水平也非常重要。在这项研究中,马来西亚布城医院的手术室3被选为研究对象。 OT3的空调系统经过重新设计,配备了能量回收轮,干燥剂除湿机和热管热交换器,以达到本研究的目的。在这项研究中,使用了称为瞬态系统仿真程序(TRNSYS)的计算机程序进行分析。从仿真结果可以发现,热管换热器可以减少空调系统消耗的最大能量。它成功地将能耗降低了57.85%。此外,该设备的投资回收期仅为0.95年,是所有研究系统中最短的。因此,应用热管换热器是节省能源并解决炎热潮湿地区真菌生长问题的好选择。

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