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Impact of bubble coalescence on separation performance of a degassing hydrocyclone

机译:气泡合并对脱气水力旋流器分离性能的影响

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摘要

The physical separation of liquid gas flows is an integral part of many industrial processes. A hydrocyclone is an important item of separation equipment and is widely used in many processes for liquid gas separation. In this study, the multiple size group model was firstly used to study the separation performance with bubble coalescence and break-up in a degassing hydrocyclone. The separation efficiency for 30-mu m bubbles increases from 29.67% to 99.53% when the bubble diameter changes from 30 mu m to 100 pm. The gas concentration changes more quickly at the center of the hydrocyclone, while the range of bubble sizes that coalesced increases. The break-up and coalescence of larger bubbles lead to a pressure increase in specific domains that also contributes to the liquid flow. Transient analysis allows us to determine the relationship between the flow pattern and time. The maximum bubble diameter is one of the most important factors affecting bubble separation in a hydrocyclone and is essential to the analysis and design of a degassing hydrocyclone. (C) 2015 ElseVier B.V. All rights reserved.
机译:液体气体流的物理分离是许多工业过程的组成部分。水力旋流器是分离设备的重要项目,并广泛用于许多液体气体分离过程中。在这项研究中,首先使用多尺寸组模型研究脱气水力旋流器中气泡聚结和破裂的分离性能。当气泡直径从30微米变为100 pm时,30微米气泡的分离效率从29.67%提高到99.53%。气体浓度在水力旋流器的中心变化更快,而合并的气泡尺寸范围增加。大气泡的破裂和聚结导致特定区域内的压力增加,这也有助于液体流动。瞬态分析使我们能够确定流型与时间之间的关系。最大气泡直径是影响水力旋流器中气泡分离的最重要因素之一,对于脱气水力旋流器的分析和设计至关重要。 (C)2015 ElseVier B.V.保留所有权利。

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