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Water vapour condensation behaviour within hydrogen-blended natural gas in laval nozzles

  • Shuangjie Yan
  • , Guanwei Jia*
  • , Jiang Du*
  • , Weiqing Xu
  • *此作品的通讯作者
  • Henan University
  • Zhengzhou University
  • Pneumatic and Thermodynamic Energy Storage and Supply Beijing Key Laboratory

科研成果: 期刊稿件文章同行评审

摘要

Hydrogen-blended natural gas (NG) pipeline network transport is the most effective approach for solving the problem of large-scale hydrogen use. Hydrogen-blended NG that contains water vapour is prone to water vapour condensation when it passes through complex NG pipeline networks, leading to pipeline network failures. To analyse the condensation behaviour of hydrogen-blended NG containing water vapour in a Laval nozzle, a condensation model of water vapour was established. A computational fluid dynamics approach was used to calculate the condensation process of hydrogen-blended NG containing water vapour in Laval nozzles for four countries: Iran, USA, Russia, and Australia. Hydrogen-blended NG components affect the flow characteristics of the gas mixture in the nozzle. The gas components have the greatest effect on the Mach number. The difference between the maximum and minimum Mach numbers at the outlet was 0.02 Mach. Hydrogen-blended NG containing water vapour condenses downstream of the throat of the Laval nozzle. Hydrogen-blended NG from Russia had the largest condensation ratio (79.63 %). The largest droplet radius and liquid mass fraction were observed in the hydrogen-blended NG from Australia. The condensation process can accelerate the future research and engineering application of water vapour into hydrogen-blended NG.

源语言英语
文章编号106064
期刊Case Studies in Thermal Engineering
69
DOI
出版状态已出版 - 5月 2025

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