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Pressure recovery and acceleration length of gas-solid suspension in an abrupt expansion - An Eulerian-Eulerian approach

机译:突然膨胀中的气固悬浮液的压力回收和加速度 - 欧拉 - 欧拉方向

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摘要

The present study based on the Eulerian-Eulerian frame work, reports the role of inter-particle and particle-wall collisions in conjunction with pertinent parameters in an abrupt expansion pipe. The parameters that were investigated are the pressure recovery and the acceleration length. The solid loading was considered between 2 and 10, within which the roles of collisions were found to be prominent. The collisions are identified as the sole mechanism responsible for the lateral dispersion of the relatively coarse particle (400-1000 mu m) into the recirculation zone. An increase in the solid loading (from 2 to 10) and the Reynolds number increases the pressure recovery and the acceleration length. On the other side, the lighter (1020 kg/m(3)) and relatively small sized particles (400 mu m) are also responsible for the same. With an increase in the area ratio up to a critical value (approximate to 9.97) the pressure recovery increases and then reduces. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究基于欧拉 - 欧拉架作品,报道了粒子和粒子壁碰撞结合突然膨胀管中的相关参数的作用。研究的参数是压力恢复和加速度长度。在2和10之间认为固体载荷在其中发现碰撞的角色是突出的。将碰撞鉴定为负责相对粗颗粒(400-1000μm)进入再循环区的横向分散的唯一机制。固体载荷(从2到10)的增加,并且雷诺数增加了压力回收和加速度长度。在另一边,更轻(1020kg / m(3))和相对小的尺寸颗粒(400μm)也是相同的。随着面积比增加到临界值(近似为9.97),压力恢复增加,然后减少。 (c)2020 elestvier有限公司保留所有权利。

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