The capture envelope of a flanged circular hood in cross drafts.

R. Huang, J. L. Chen, Y. K. Chen, C. C. Chen, W. Yeh, C. W. Chen
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引用次数: 15

Abstract

The flow patterns of an exterior circular hood subject to the influence of various uniform cross drafts were experimentally studied in an apparatus consisting of hood-model/wind-tunnel assembly. A two-component laser Doppler anemometer was employed to measure the velocity field on the symmetry plane. The streamline patterns were obtained from the measured velocity data. The cross draft caused a characteristic envelope similar to a half Rankine body-of-revolution to form in the flow field. The boundary of the envelope is described by a dividing streamline. All streamlines within the envelope lead to the opening; those outside the envelope evolve to the downstream area. The normalized geometry of the capture envelope is theoretically justified and correlated by modifying the potential theory of point-sink-plus-rectilinear-flow. The domain and shape of the envelope enclosing the hood opening are determined primarily by the velocity ratio between the cross draft and hood suction. The correlated formula is applicable to design the hood parameters, including the sizes of opening and flange as well as the location of contaminant sources.
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交叉穿堂风中带法兰的圆形罩的捕获包络。
在一个由罩模/风洞组合的装置上,实验研究了不同均匀横气流对外圆形罩的流动规律的影响。采用双分量激光多普勒风速仪对对称面上的速度场进行了测量。流线模式是由测量的速度数据得到的。交叉气流在流场中形成了类似于半朗肯旋转体的特征包络。围护结构的边界由分隔的流线来描述。信封内的所有流线都通向开口;那些在包络层外的进化到下游区域。从理论上证明了捕获包络的归一化几何形状是合理的,并通过修正点汇+直线流的势理论进行了关联。封闭罩开口的信封的范围和形状主要是由交叉气流和罩吸力之间的速度比决定的。相关公式适用于通风柜参数的设计,包括开口尺寸和法兰尺寸以及污染源的位置。
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