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首页> 外文期刊>The Annals of occupational hygiene. >Development and Characterization of an Inclined Air-Curtain (IAC) Fume Hood
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Development and Characterization of an Inclined Air-Curtain (IAC) Fume Hood

机译:斜幕式通风柜的开发与特性

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An inclined air-curtain (IAC) fume hood was developed and characterized using the laser-assisted smoke flow visualization technique and tracer-gas (sulphur hexafluoride) concentration detection method. The IAC fume hood features four innovative design elements: (i) an elongated suction slot installed at the hood roof with an offset towards the rear wall, (ii) an elongated up-blowing planar jet issued from the work surface near the hood inlet, (iii) two deflection plates installed at the left and right side walls, and (iv) a boundary-layer separation controller installed at the sash bottom. Baffles employed in conventional hoods were not used. The suction slot and the up-blowing planar jet formed a rearward-inclined push-pull air curtain. The deflection plates worked with the inclined air curtain to induce four rearward-inclined counter-rotating 'tornados.' The fumes generated in the hood were isolated behind the rearward-inclined air curtain, entrained by the low pressure within the vortical flows, moved up spirally, and finally exhausted through the suction slot. The risk of containment leakage due to the large recirculation vortex that usually exists behind the sash of conventional hoods was reduced by the boundary-layer separation controller. The results of the tracer-gas concentration detection method based on the EN-14175 method showed that the flow field created by the geometric configurations of the IAC hood presented characteristics of low leakage and high resistance to dynamic disturbances at low face velocities. The leakage levels measured by the static, sash movement, and walk-by tests were negligible at a face velocity of 0.26 m s(-1).
机译:使用激光辅助烟气流动可视化技术和示踪气体(六氟化硫)浓度检测方法,开发了倾斜式气幕通风柜并进行了表征。 IAC通风柜具有四个创新的设计元素:(i)安装在柜顶的细长吸入口,朝着后壁偏置,(ii)从靠近进风口的工作面发出的向上吹动的平面射流, (iii)在左右侧壁安装两个偏转板,以及(iv)在窗扇底部安装一个边界层分离控制器。没有使用传统发动机罩中使用的挡板。吸气口和上吹式平面射流形成了向后倾斜的推拉式气幕。偏转板与倾斜的气幕一起产生了四个向后倾斜的反向旋转“龙卷风”。通风橱中产生的烟雾被隔离在向后倾斜的气幕后面,被涡流内的低压夹带,呈螺旋形上升,最后通过吸气口排出。边界层分离控制器降低了由于通常存在于传统机罩窗框后面的大的再循环涡流而导致的容器泄漏的风险。基于EN-14175方法的示踪气体浓度检测方法的结果表明,由IAC罩的几何构形创建的流场呈现出低泄漏和低表面风速下对动态干扰的高抵抗力的特性。在表面速度为0.26 m s(-1)时,通过静态,框格运动和通过测试测得的泄漏水平可以忽略不计。

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