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Performance Investigation for the Cleanroom Contamination Control Strategy in an Operating Room

机译:手术室洁净室污染控制策略的性能调查

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摘要

Operating rooms are increasingly turning to contamination control by cleanroom technology/or the infectious control. This study presents the numerical approach and field testing investigation on performance improvement for a hospital operating room with less expenditure. Variable speed driven strategy has been performed to verify the potential of energy-saving opportunity under contamination standards that it has been designed to fulfill. A physical partition curtain has been conducted around the high efficiency particulate air (HEPA) filter of an operating room to validate the improvement of air flow distribution and contamination control. Both numerical simulation and field measurement of a full-scale operating room have been carried out at a district hospital in Taiwan. The results from computer simulation revealed that the reduction of face veloctity is feasible and improvement of airflow could be achieved satisfactorily by application of a physicalpartition curtain. Optimal face velocity of HEPA filter could be obtained through compromising of contamination control and energy consumption as well. Simulation results have been validated by comparison with the field tests data of both particle counts and microbial counts.
机译:手术室越来越多地转向通过洁净室技术/或传染控制来控制污染。这项研究提出了一种数值方法和现场测试研究,以改善医院手术室的性能,减少支出。已经执行了变速驱动策略,以验证其旨在实​​现的污染标准下的节能机会的潜力。已在手术室的高效微粒空气(HEPA)过滤器周围进行了物理分隔,以验证气流分布和污染控制的改善。全尺寸手术室的数值模拟和现场测量均在台湾地区医院进行。计算机仿真的结果表明,减少面部风速是可行​​的,并且通过应用物理隔断帘可以令人满意地实现气流的改善。通过兼顾污染控制和能耗,可以获得HEPA过滤器的最佳表面速度。通过与颗粒计数和微生物计数的现场测试数据进行比较,已验证了模拟结果。

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  • 来源
    《ASHRAE Transactions》 |2010年第1期|P.74-80|共7页
  • 作者单位

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

    rnDepartment of Civil Engineering, National Cheng-Kung University, Taiwan;

    rnDepartment of Architecture, Feng Chia University, Taiwan;

    rnDepartment of Refrigeration, Air Conditioning and Energy Engineering, National Chin-Yi University of Technology, Taiwan;

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