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Effect of swirling device on flow behavior in a supersonic separator for natural gas dehydration

机译:旋流装置对天然气脱水超声分离器中流动行为的影响

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摘要

The supersonic separator is a revolutionary device to remove the condensable components from gas mixtures. One of the key issues for this novel technology is the complex supersonic swirling flow that is not well understood. A swirling device composed of an ellipsoid and several helical blades is designed for an annular supersonic separator. The supersonic swirling separation flow of natural gas is calculated using the Reynolds Stress model. The results show that the viscous heating and strong swirling flow cause the adverse pressure in the annular channel, which may negatively affect the separation performance. When the swirling flow passes through the annular nozzle, it will damage the expansion characteristics of the annular nozzle. The blade angles and numbers are both optimized by evaluating the swirling and expansion effects for the supersonic separation. (C) 2016 Elsevier B.V. All rights reserved.
机译:超声波分离器是一种革命性的设备,可从气体混合物中去除可冷凝的成分。这项新技术的关键问题之一是复杂的超音速旋流,目前尚不清楚。由椭圆形和几个螺旋叶片组成的旋流装置设计用于环形超音速分离器。使用雷诺应力模型计算天然气的超音速旋流分离流。结果表明,粘性加热和强烈的旋流会在环形通道中产生不利的压力,这可能会对分离性能产生负面影响。当旋流通过环形喷嘴时,会损坏环形喷嘴的膨胀特性。叶片角度和叶片数量均通过评估超音速分离的涡旋和膨胀效应而得到优化。 (C)2016 Elsevier B.V.保留所有权利。

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