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超音速天然气脱水分离旋流翼设计及旋流性能分析

巢皓文 马宗德 李卫杰 冯碧阳 赵风宝

科技创新与应用2026,Vol.16Issue(22):31-34,4.
科技创新与应用2026,Vol.16Issue(22):31-34,4.DOI:10.19981/j.CN23-1581/G3.2026.22.008

超音速天然气脱水分离旋流翼设计及旋流性能分析

巢皓文 1马宗德 1李卫杰 2冯碧阳 1赵风宝3

作者信息

  • 1. 陇东学院,甘肃 庆阳 745100
  • 2. 浙江石油化工有限公司,浙江 舟山 316000
  • 3. 甘肃万庆消防环保科技有限公司,甘肃 庆阳 745100
  • 折叠

摘要

Abstract

As an innovative natural gas dehydration treatment solution,supersonic separation technology is famous for its compact structure and simplified process.It does not require the introduction of chemical reagents during operation and does not rely on external power drive,demonstrating good environmental protection and economy.In this device,swirl vanes are the core components to achieve efficient gas-liquid separation,and their design structure determines the stability and separation efficiency of the swirl field.Thus,this study designed an angle-adjustable swirl wing structure.This design improves the adaptability to different working conditions by optimizing the blade installation angle,thereby generating a swirl with high strength and good stability.In order to evaluate its swirling performance,a numerical simulation model was built and the internal flow field was simulated and analyzed.Simulation results confirm that the swirl vane can effectively guide the airflow to form a strong swirling motion in the separation section,and the strong centrifugal force generated is enough to drive liquid droplets to complete efficient radial migration and phase separation,achieving the expected gas-liquid separation goal.

关键词

天然气脱水/旋流翼/分离/旋流性能/超音速

Key words

natural gas dehydration/swirl wing/separation/swirling performance/supersonic

分类

能源科技

引用本文复制引用

巢皓文,马宗德,李卫杰,冯碧阳,赵风宝..超音速天然气脱水分离旋流翼设计及旋流性能分析[J].科技创新与应用,2026,16(22):31-34,4.

基金项目

甘肃省科技计划资助项目(23JRRM0760) (23JRRM0760)

陇东学院青年科技创新项目(XYZK2205) (XYZK2205)

陇东学院横向科研项目(HXZK25101) (HXZK25101)

科技创新与应用

2095-2945

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