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Experimental and Analytical Study of the Pressure Drop Across a Double-Outlet Vortex Chamber

机译:双出口涡流腔内压降的实验和分析研究

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This paper presents experimental and analytical results concerning the pressure drop and the core size in vortex chambers. The new formulation is based on the conservation of mass and energy integral equations and takes into account the presence of two outlet ports. The diminishing vortex strength is introduced through the vortex decay factor. The influence of vortex chamber geometry, such as diameter ratio, aspect ratio, and Reynolds number, on the flow field have been examined and compared with the present experimental data. It is shown that the presence of the swirl velocity component makes the pressure drop across a vortex chamber significantly different than the familiar unidirectional pipe flow. When the chamber length is increased, the vortex diminishes under the action of friction, producing a weaker centrifugal force which leads to a further pressure drop. It is revealed that by increasing the Reynolds number, the cores expand resulting into a larger pressure coefficient. For a double-outlet chamber where the flow is divided into two streams, the last parameter is found to be less than that of a single-outlet.
机译:本文介绍了有关涡流室内压降和堆芯尺寸的实验和分析结果。新的公式基于质量和能量积分方程的守恒,并考虑了两个出口的存在。通过涡旋衰减因子引入涡旋强度递减。已经检查了涡流室几何形状(例如直径比,纵横比和雷诺数)对流场的影响,并将其与当前的实验数据进行了比较。结果表明,涡旋速度分量的存在使涡旋室两端的压降与常见的单向管道流明显不同。当腔室长度增加时,涡旋在摩擦作用下减小,从而产生较弱的离心力,从而导致进一步的压降。揭示了通过增加雷诺数,芯膨胀而导致更大的压力系数。对于将流量分为两股流的双出口室,发现最后一个参数小于单出口。

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