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Experimental Investigation on the Flow Characteristics of an Exhaust Hood Assisted by a Jet

机译:射流辅助排气罩的流动特性实验研究

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An air curtain generated by a jet is used to enhance an exhaust hood's capture ability in many research studies on local ventilation systems. This paper focuses on experimental methods to investigate the flow characteristics formed by an exhaust hood associated with a jet. The basic flow characteristics of this kind of exhaust hood are obtained by smoke visualization as a jet forms an air curtain, and the flow field is a combination of three parts: the jet flow region, the exhaust flow region and the vortex flow region. The conditions for forming an air curtain are determined. The air curtain generated by a jet can decrease the decay of the exhaust centreline velocity V_x, therefore enhancing the efficient capture distance. Increasing the exhaust flow rate has higher efficiency than increasing the supply air velocity to enhance the control effect. A regression formula to determine the required supply velocity is obtained if the capture distance and the capture velocity for different contaminants are known. Furthermore, it is found that installing vertical guard-plates between the inlet and the outlet can effectively enhance the capture ability of the hood.
机译:在许多有关局部通风系统的研究中,由喷气机产生的气幕被用于增强排气罩的捕获能力。本文着重于实验方法,以研究与喷头相关的排气罩形成的流动特性。这种排气罩的基本流动特性是通过烟雾可视化获得的,因为射流形成了空气幕,并且流场是三个部分的组合:射流区域,排气流区域和涡流区域。确定形成气幕的条件。由射流产生的气幕可减少排气中心线速度V_x的衰减,从而提高有效捕获距离。与提高送风速度来提高控制效果相比,增加排气流量具有更高的效率。如果已知捕获距离和不同污染物的捕获速度,则将获得确定所需供应速度的回归公式。此外,发现在入口和出口之间安装垂直防护板可以有效地增强罩的捕获能力。

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