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掺氢管道V型球阀内漏流场与声场特性

马彬 郭浩然 张佳乐 张成斌 杨朝锋 马春迅 毕海胜

化学工程2026,Vol.54Issue(6):88-94,7.
化学工程2026,Vol.54Issue(6):88-94,7.DOI:10.3969/j.issn.1005-9954.2026.06.015

掺氢管道V型球阀内漏流场与声场特性

Characteristics of flow field and acoustic field in V-port ball valve internal leakage of hydrogen-blended pipeline

马彬 1郭浩然 2张佳乐 2张成斌 1杨朝锋 1马春迅 2毕海胜2

作者信息

  • 1. 陕西延长石油(集团)有限责任公司研究院,陕西西安 710075
  • 2. 青岛科技大学 机电工程学院,山东青岛 266061
  • 折叠

摘要

Abstract

Failure of natural gas pipeline valves posed a serious threat to the safe operation of pipeline systems,and internal leakage in hydrogen-blended pipelines further exacerbates this risk.Based on the ANSYS Fluent platform,the SST k-ω turbulence model and the broadband noise model were employed to numerically simulate the characteristics of the leakage flow field and acoustic field.As the ball valve opening increases from 5° to 30°,the peak velocity in the leakage flow field first decreases and then increases,while the region of high velocity continues to expand.The maximum sound pressure level in the acoustic field similarly exhibits a trend of first decreasing and then increasing,with the sound pressure distribution gradually extending from the valve cavity to 3 m pipe section downstream of the ball valve.As the pressure difference continuously increases,the peak velocity in the leakage flow field rises steadily.When the pressure difference across the ball valve increases from 0.1 MPa to 0.6 MPa,the peak sound pressure level increases from 78.1 dB to 108 dB.As the hydrogen blending ratio increases to 25%,the peak jet velocity rises from 121 m/s to 202 m/s,representing an increase of 67%,while the maximum sound pressure level increases from 85.3 dB to 97.1 dB with an increase of 13.8%.

关键词

掺氢管道/V型球阀/阀门内漏/流场/声压级

Key words

hydrogen-blended pipeline/V-port ball valve/valve internal leakage/flow field/sound pressure level

分类

能源科技

引用本文复制引用

马彬,郭浩然,张佳乐,张成斌,杨朝锋,马春迅,毕海胜..掺氢管道V型球阀内漏流场与声场特性[J].化学工程,2026,54(6):88-94,7.

基金项目

陕西省重点研发计划项目(2025CY-YBXM-463) (2025CY-YBXM-463)

国家科技重大专项(2024ZD1406601) (2024ZD1406601)

化学工程

1005-9954

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