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Analysis of heat transfer and contaminant transport in fume hoods

机译:分析通风柜中的热传递和污染物传输

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The paper presents the analysis of three-dimensional flow patterns and the associated heat and mass transfer mechanisms in a fume hood enclosure. The flow enters the hood through the front window opening (positive x-direction) and leaves the cupboard through an opening on the top of the hood (positive z-direction). The flow was assumed to be fully turbulent. The flow pattern for different sash openings were studied. The flow pattern around an object located at the bottom of the hood was studied for different locations of the object. It was found that air entering the hood proceeds directly to the back wall, impinges it and turns upward toward the top wall and exits through the outlet. The flow finds its way around any object forming a recirculating region at its trailing surface. With an increase in the sash opening, the velocity becomes higher and the fluid traces the path to the outlet more quickly. The volume occupied by recirculating flow decreases with increase in sash opening. Both temperature and concentration were found to be maximum near the source and gradually decreased as the heated air or gaseous contaminant entrained with incoming air. The local concentration decreased with increase in sash opening area. The results will be very useful to design experiments with optimum sash opening providing adequate disposal of contaminants with minimum use of conditioned air inside the room.
机译:本文对通风橱内的三维流动模式以及相关的传热和传质机理进行了分析。气流通过前窗开口(正x方向)进入引擎盖,并通过引擎盖顶部的开口(z正方向)离开橱柜。假定流动是完全湍流的。研究了不同窗扇开口的流动方式。研究了位于引擎盖底部的物体周围的流动模式,以了解物体的不同位置。已经发现,进入引擎盖的空气直接进入后壁,撞击后壁,然后向上流向顶壁,然后通过出口排出。气流绕过任何物体,并在其尾随表面形成一个循环区域。随着窗扇开口的增加,速度变得更高,并且流体更迅速地追踪到出口的路径。循环流所占的体积随着窗扇开口的增加而减小。发现温度和浓度都在源附近最高,并随着加热的空气或进入的空气夹带的气态污染物而逐渐降低。局部浓度随窗扇开口面积的增加而降低。该结果对于设计具有最佳窗扇开口的实验非常有用,该窗扇开口可在室内使用最少的调节空气的情况下充分处理污染物。

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