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Effects of Doorsill Jet Injection on Fume Cupboard Containment

机译:门槛喷射射流对通风橱遏制的影响

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The flow separation and its accompanied recirculation induced when the airflow passes over the inappropriately designed doorsill of a chemical fume cupboard are the key factors which would lead to deterioration of the cupboard performance. In order to alleviate the contaminant leakage of the fume cupboard induced by inherent aerodynamic deficiency, a technique using doorsill jet injection is developed and validated. A planar jet is ejected upward through a slot located across the inner surface of the doorsill of a full-scale, transparent fume cupboard and is ejected upward. The laser-light-sheet-assisted smoke flow visualization is performed to explore the physical mechanism of changing and controlling the flow structure. It is found that the upward injected jet is curved by the airflow drawn into the sash opening and forms a layer of clean air which can isolate the contaminant and alleviate the diffusion through the recirculating vortex on the doorsill, if the jet velocity is properly adjusted. The tracer gas concentration measurements present extraordinarily satisfactory results—the order of magnitude of the leakage of tracer gas near the doorsill may be reduced from original levels of ∼102 to ∼10−2 p.p.m. Except for the experimental fume cupboard used for development of technique, two commercial fume cupboards are employed for verifications and comparisons on the proposed method. Tests about the two modified commercial fume cupboards demonstrate good agreement to those of the model fume cupboard.
机译:当气流经过化学通风橱的设计不当的门槛时引起的流动分离及其伴随的再循环是导致橱柜性能下降的关键因素。为了减轻由于固有的空气动力学缺陷引起的排烟柜污染物的泄漏,开发并验证了使用门槛喷射喷射的技术。平面射流通过横跨全尺寸透明通风橱门槛内表面的狭槽向上喷射,并向上喷射。进行激光薄片辅助烟气流动可视化,以探索改变和控制气流结构的物理机制。发现向上喷射的射流被吸入窗扇开口的气流弯曲,并形成一层清洁的空气,如果适当调节射流的速度,它可以隔离污染物并减轻通过门槛上的循环涡流的扩散。示踪气体浓度的测量结果非常令人满意,门槛附近示踪气体泄漏的数量级可能从原来的10 2 降低到10 −2 ppm除了用于技术开发的实验通风柜之外,还使用两个商用通风柜对所提出的方法进行验证和比较。关于两个改进的商用通风橱的测试表明与模型通风橱的吻合良好。

著录项

  • 来源
    《Annals of Occupational Hygiene》 |2008年第7期|p.635-644|共10页
  • 作者单位

    1Department of Labor Safety and Health, Council of Labor Affairs, Executive Yuan, Taipei, Taiwan, Republic of China 2Department of Mechanical Engineering, National Taiwan University of Science and Technology, 43 Keelung Road, Section 4, Taipei, Taiwan, Republic of China 3Institute of Occupational Medicine and Industrial Hygiene, National Taiwan University, Taipei, Taiwan, Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 01:11:22

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