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Effect of reducing ventilation rate on indoor air quality and energy cost in laboratories

机译:降低通风量对实验室室内空气质量和能源成本的影响

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Numerous Computational Fluid Dynamic (CFD) studies have been performed to support innovative approaches to revising indoor air quality (IAQ) standards in laboratories. In a previous study,1'17 the author demonstrates that a slot bench exhaust system can be an effective and energy saving strategy to control thermal comfort by removing the heat dissipation on the bench top and that this system has a negligible effect on the containment ability of a fume hood located upstream from the bench. In this subsequent case study concerning the ventilation requirement in a typical lab with a high cooling load, CFD is used to focus on assessing both the IAQ and the cost impact of the bench slot system versus a conventional ventilation system on IAQ when the number of ACH is reduced from the typical 12 ACH to 6 ACH. The ability of the bench slot exhaust system to remove airborne chemicals in the case of a bench top chemical spill is examined at the reduced ACH. This paper provides quantitative justification to support the concept that IAQ is not directly proportional to a reduction in ACH but rather is dependent on a combination of factors including the ventilation system design, the control of local conditions and the use of standard operating procedures specific to the laboratory operations. The results suggest that a lower ventilation flow rate can be used without remarkable impact on the air quality in the occupied zone, whether or not the bench slot exhaust system is employed.
机译:已经进行了许多计算流体动力学(CFD)研究,以支持创新方法来修改实验室的室内空气质量(IAQ)标准。在先前的研究中[1,17],作者证明了槽式台式排风系统可以作为一种有效的节能策略,通过消除台式上的散热来控制热舒适度,并且该系统对遏制能力的影响可忽略不计位于工作台上游的通风橱。在随后的有关高冷却负荷的典型实验室中的通风需求的案例研究中,使用CFD来重点评估IAQ以及当ACH数量较大时,台槽系统与常规通风系统相比对IAQ的成本影响从典型的12 ACH减少到6 ACH。在降低的ACH情况下,检查了台式狭槽排气系统在台式化学品泄漏情况下清除空气中化学品的能力。本文提供了定量依据,以支持以下概念:IAQ并非与ACH的减少成正比,而是取决于多种因素的组合,包括通风系统设计,局部条件的控制以及特定于该设备的标准操作程序的使用。实验室操作。结果表明,无论是否使用台式缝隙排气系统,都可以使用较低的通风流量,而不会对占用区域的空气质量产生明显影响。

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  • 来源
    《Chemical health & safety》 |2009年第5期|20-26|共7页
  • 作者

    Farhad Memarzadeh;

  • 作者单位

    Division of Technical Resources, National Institutes of Health, 13 South Drive, MSC 5759, Bldg 13, Rm. 201, Bethesda, MD 20892-5759, United States;

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  • 正文语种 eng
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