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受通风影响的倾斜四边形涡流抽油烟机的流动特性及溢出机制

Flow characteristics and spillage mechanisms of an inclined quad-vortex range hood subject to influence from draft.

作者信息

Huang Rong Fung, Chen Jia-Kun, Lin Jyun-Hua

机构信息

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

出版信息

J Occup Environ Hyg. 2015;12(4):235-44. doi: 10.1080/15459624.2014.987383.

Abstract

The flow and spillage characteristics of an inclined quad-vortex (IQV) range hood subject to the influence of drafts from various directions were studied. The laser-assisted smoke flow visualization technique was used to reveal the flow characteristics, and the tracer-gas (sulfur hexafluoride) concentration detection method was used to indicate the quantitative values of the capture efficiency of the hood. It was found that the leakage mechanisms of the IQV range hood are closely related to the flow characteristics. A critical draft velocity of about 0.5 m/s and a critical face velocity of about 0.25 m/s for the IQV range hood were found. When the IQV range hood was influenced by a draft with a velocity larger than the critical draft velocity, the spillage of pollutants became significant and the pollutant spillage rate increased with increasing draft velocity. At draft velocities less than or equal to the critical value, no containment leakages induced by the turbulence diffusion, reverse flow, or boundary-layer separation were observed, and the capture efficiency was about 100%. The IQV range hood exhibited a high ability to resist the influences of lateral and frontal drafts. The capture efficiency of the IQV range hood operated at the suction flow rate 5 to 9 m(3)/min is higher than that of the conventional range hood operated at 11 to 15 m(3)/min.

摘要

研究了倾斜四涡旋(IQV)抽油烟机在不同方向气流影响下的流动和溢漏特性。采用激光辅助烟流可视化技术揭示流动特性,并用示踪气体(六氟化硫)浓度检测方法来指示抽油烟机捕集效率的定量值。研究发现,IQV抽油烟机的泄漏机制与流动特性密切相关。研究得出IQV抽油烟机的临界气流速度约为0.5 m/s,临界面风速约为0.25 m/s。当IQV抽油烟机受到速度大于临界气流速度的气流影响时,污染物的溢漏变得显著,且污染物溢漏率随气流速度的增加而增大。当气流速度小于或等于临界值时,未观察到由湍流扩散、逆流或边界层分离引起的遏制泄漏,捕集效率约为100%。IQV抽油烟机表现出较高的抵抗侧向和正面气流影响的能力。在吸气流速为5至9 m³/min下运行的IQV抽油烟机的捕集效率高于在11至15 m³/min下运行的传统抽油烟机。

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