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高热负荷对倾斜气幕式通风柜气流及污染物控制的影响

Influence of high heat load on flow and containment of an inclined air-curtain (IAC) fume hood.

作者信息

Huang Rong Fung, Hsu Ching Min, Lin Kai Ling

机构信息

a Department of Mechanical Engineering , National Taiwan University of Science and Technology , Taipei , Taiwan , Republic of China.

b Department of Mechanical Design Engineering , National Formosa University, Yunlin , Taiwan , Republic of China.

出版信息

J Occup Environ Hyg. 2018 Apr;15(4):322-333. doi: 10.1080/15459624.2018.1428330.

Abstract

The inclined air-curtain (IAC) fume hood has been reported to have "almost null leakage" at low suction flow rates when operated at regular temperatures. However, previous research has not investigated the performance or optimized operating parameters when a high heat load is used in the IAC fume hood. For the present work, the effects of a high heat load on the flow field and contaminant leakage characteristics of the IAC fume hood were examined. The heat load was supplied to an IAC hood according to the standard method of EN14175-7:2012. The laser-assisted smoke flow visualization technique was employed to identify the characteristic flow patterns. The standard tracer-gas concentration test method (EN14175-3:2003) was used to examine the leakage levels of the IAC fume hood under static conditions, sash movement, and simulated walk-by conditions. When the IAC fume hood was operated at a high heat load, the static test results showed negligibly small leakage levels at a face velocity greater than or equal to only 0.19 m/s (37.4 ft/min). The sash movement and simulated walk-by test results showed that to obtain negligibly small leakage levels at high heat load operation, the IAC fume hood required a face velocity greater than or equal to 0.32 m/s (63 ft/min). In addition, the IAC fume hood exhibited a superior hood containment performance with low energy consumption when compared with conventional fume hoods operated at a high heat load.

摘要

据报道,倾斜气幕(IAC)通风柜在常温下以低抽吸流速运行时具有“几乎零泄漏”的特点。然而,以往的研究并未调查IAC通风柜在使用高热负荷时的性能或优化运行参数。在本研究中,考察了高热负荷对IAC通风柜流场和污染物泄漏特性的影响。根据EN14175-7:2012的标准方法向IAC通风柜提供热负荷。采用激光辅助烟雾流动可视化技术来识别特征流型。使用标准示踪气体浓度测试方法(EN14175-3:2003)来检测IAC通风柜在静态条件、窗扇移动和模拟行人通过条件下的泄漏水平。当IAC通风柜在高热负荷下运行时,静态测试结果表明,仅在面风速大于或等于0.19 m/s(37.4 ft/min)时泄漏水平可忽略不计。窗扇移动和模拟行人通过测试结果表明,为了在高热负荷运行时获得可忽略不计的泄漏水平,IAC通风柜需要面风速大于或等于0.32 m/s(63 ft/min)。此外,与在高热负荷下运行的传统通风柜相比,IAC通风柜在低能耗的情况下表现出卓越的通风柜遏制性能。

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