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Performance Evaluation of Indoor Environment Parameters for an Unoccupied Operating Room

机译:空房间的室内环境参数性能评估

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摘要

The HVAC systems for operating rooms are energy-intensive and sophisticated in that they operate 24 hours per day year-round and use large amount of fresh air to deal with infectious problems and to dilute microorganisms. However, little quantitative information has been investigated about trade-off between energy-efficient HVAC system and indoor environment quality especially when the operating room is not occupied. The objective of this study is to present the field measurement approach on performance evaluation of the HVAC system for an unoccupied operating room. Variable air volume terminal boxes were conducted to verify the compromise of energy-saving potential and indoor environment parameters including particle counts, microbial counts, pressurization, temperature and humidity. Field measurements of a full-scale operating room have been carried out at a district hospital in Taiwan. Numerical simulation has been applied to evaluate the air flow distribution and concentration contours while conducting the velocity reduction approach in the unoccupied operating room. The results reveal that it is feasible to achieve satisfactory indoor environment by reducing the supply air volume (or velocity) in the unoccupied operating room. Optimal face velocity of HEP A filter and percentage of damper opening for the variable air volume terminal boxes could be obtained through compromising of indoor environment quality control and energy consumption as well. It will stimulate a more robust investigation of infection-controlled, energy-efficient and environment-comfortable HVAC system specific for unoccupied operating rooms.
机译:用于手术室的HVAC系统耗能大且复杂,因为它们全年24小时不间断运行,并使用大量新鲜空气来解决传染性问题和稀释微生物。但是,关于节能HVAC系统与室内环境质量之间的权衡取舍的定量信息很少,尤其是在没有占用手术室的情况下。这项研究的目的是提出一种用于空房间的HVAC系统性能评估的现场测量方法。进行了可变风量接线盒的验证,以验证节能潜力和室内环境参数(包括颗粒数,微生物数,加压,温度和湿度)之间的折衷。台湾一家地区医院已对一个大型手术室进行了现场测量。数值模拟已被用于评估气流分布和浓度等值线,同时在空旷的手术室中进行速度降低方法。结果表明,通过减少空房间中的送风量(或速度)来达到令人满意的室内环境是可行的。 HEP的最佳表面速度和可变风量接线盒的风门开度百分比也可以通过降低室内环境质量控制和能耗来获得。这将激发对针对空房间的感染控制,节能且环境舒适的HVAC系统进行更强有力的研究。

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  • 来源
    《ASHRAE Transactions 》 |2011年第2011期| p.557-564| 共8页
  • 作者单位

    associate professor;

    graduate student in the Department of Refrigeration, Air Conditioning and Energy Engineering, National Chin-Yi University of Technology, Taiwan;

    assistant professor in the Department of Civil Engineering, National Cheng-Kung University, Taiwan;

    associate professor in the Department of Architecture, Feng Chia University, Taiwan;

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