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An experimental study of liquid mixing in a multi-orifice-impinging transverse jet mixer using PLIF

机译:使用PLIF在多孔冲击式横向喷射混合器中进行液体混合的实验研究

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We investigate experimentally the macromixing behavior of two liquids in a multi-orifice-impinging transverse jet mixing that has four orifices embedded symmetrically on the wall of the mixing pipe, using the PLIF technique. We found that when the velocity ratio of the injected streams B in the orifices to the cross flow A in the pipe, r, reaches a certain value, the impingement among Streams B occurs and leads to substantial enhancement in the mixing performance. As r increases, the impingement location moves backwards closer to the injection plane, and eventually direct impingement among Streams B occurs, leading to part of Streams B jumping upstream, which is referred to here as back-splash. The mixing time reduces as r increases. When the back-splash occurs the mixing time reduces to a plateau. Effects of the Reynolds number and diameter of the mixing pipe on the mixing performance and back-splash have been also investigated.
机译:我们使用PLIF技术,在具有四个孔对称对称嵌入混合管壁的多孔冲击横向喷射混合中,对两种液体的宏观混合行为进行了实验研究。我们发现,当节流孔中的喷射流B与管道中的交叉流A的速度比r达到某个值时,会发生流B之间的碰撞,从而导致混合性能显着提高。随着r的增加,碰撞位置向后移近注入平面,最终在流B之间发生直接碰撞,导致部分流B跳向上游,在此称为反向飞溅。随着r的增加,混合时间减少。当发生反向飞溅时,混合时间减少到平稳状态。还研究了雷诺数和混合管的直径对混合性能和反溅的影响。

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