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Effect of the floor on the ventilation performance of the vortex vent

机译:地板对涡流通风口通风性能的影响

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The vortex ventilation system (W) which uses a rotating finned swirler installed coaxially with the exhaust duct is a very effective local ventilator. W can enhance the capture depth by a factor of 3-5 compared to the conventional exhaust hood, in the absence of any solid walls nearby. In real situations there may exist ceiling, side wall and floor, all of which can affect the flow field and suction performance by way of the no-slip condition on the walls. 3D CFD simulation was performed in order to see the effect of the floor on the capture performance of the W. The presence of floor reduced suction flow velocity, and increased the critical rotational speed which is the rotational speed required for stable vortex formation. Flow velocity profile along the axis could be well approximated by a universal functional form when the distance from the exhaust inlet is non-dimensionalized by the distance to the floor. Capture depth, define by the distance from the exhaust inlet to a point of velocity decreased to 10% of that at the inlet, is reduced by about 10% when the floor distance is 6 times the exhaust hood diameter.
机译:涡流通风系统(W)使用与排气管同轴安装的旋转翅片旋流器,是一种非常有效的局部通风机。与传统的排气罩相比,W可以将捕获深度提高3-5倍,而且附近没有实心壁。在实际情况下,可能会存在天花板,侧壁和地板,所有这些都会通过壁上的防滑状态影响流场和吸力性能。为了观察地板对W的捕获性能的影响,进行了3​​D CFD模拟。地板的存在降低了吸入流速,并增加了临界转速,该临界转速是稳定涡旋形成所需的转速。当到排气口的距离没有到地板的距离来确定尺寸时,通过通用函数形式可以很好地近似沿轴线的流速分布。捕获深度由排气口到速度点的距离确定,该速度点降低至进气口的速度点的10%,当底面距离为排气罩直径的6倍时,捕获深度将减少约10%。

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