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受横流影响的壁挂式和射流隔离式吸油烟机的流动特性和溢油机理。

Flow characteristics and spillage mechanisms of wall-mounted and jet-isolated range hoods subject to influence from cross draft.

机构信息

Graduate Institute of Applied Science and Technology, National Taiwan University of Science and Technology, Taipei, Taiwan, Republic of China.

出版信息

J Occup Environ Hyg. 2012;9(1):36-45. doi: 10.1080/15459624.2012.635128.

Abstract

The effects of draft on the flow and spillage characteristics of wall-mounted and jet-isolated range hoods were investigated. A specially designed draft generator that could supply low-swirl air current was used to provide "cross draft" from three directions, lateral (θ = 0(o)), oblique (θ = 45(o)), and front (θ = 90(o)), with respect to the center point of the range hoods. Flow characteristics of oil mist were inspected through visualization of smoke flows with light scattering (laser light sheet-assisted visualization of smoke flow). The leakage mechanisms, which were closely related to the flow features, were studied by examining both movies and still pictures showing smoke-flow evolution. The sulfur hexafluoride tracer gas concentration detection method was employed to measure the capture indices. The results showed that the lateral draft pushed the pollutants generated under the hood in the opposite direction and induced serious spillage. The oblique draft pushed the pollutants toward both the rear wall and opposite side and induced more serious spillage than did the lateral draft. The frontal draft forced the pollutants to bifurcate into streams moving toward the left and the right, and induced the most serious pollutant spillage among the three tested drafts. Pollutant spillage became critically significant as the cross draft velocity was increased to greater than 0.2 m/sec. Spillage of pollutants increased as the velocity of the cross draft was increased. Increasing the suction flow rate of the range hood may increase resistance to the draft, but the benefits were limited at draft velocities greater than 0.2 m/sec. Both range hoods had a similarly low capture index under the influence of the lateral draft. For the oblique and frontal drafts, the jet-isolated range hood demonstrated a higher capture index than did the wall-mounted range hood.

摘要

研究了横流、射流隔离式吸油烟机的吹风对其流动和溢油特性的影响。采用一种特制的吹风发生器,它可以提供低旋流的气流,从三个方向(横向θ=0°、斜向θ=45°和正面θ=90°)对吸油烟机的中心点提供“横流吹风”。通过光散射(激光光片辅助烟雾流可视化)来观察油雾的流动特性。通过检查显示烟雾流演变的电影和静止图像,研究了与流动特征密切相关的泄漏机制。采用六氟化硫示踪气体浓度检测方法测量捕集指数。结果表明,横向吹风将罩内产生的污染物推向相反方向,导致严重的溢油。斜向吹风将污染物推向后壁和对面,导致比横向吹风更严重的溢油。正面吹风迫使污染物分叉成流向左右两侧的流,在三种测试的吹风条件中导致最严重的污染物溢油。当横流速度增加到大于 0.2 m/s 时,污染物的溢油变得非常显著。随着横流速度的增加,污染物的溢油量增加。增加吸油烟机的抽吸流量可能会增加对吹风的阻力,但在横流速度大于 0.2 m/s 时,效果有限。在横向吹风的影响下,两种吸油烟机的捕集指数都很低。对于斜向和正面吹风,射流隔离式吸油烟机的捕集指数高于壁式吸油烟机。

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