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Shape Optimization of the Triangular Vortex Flowmeter Based on the LBM Method

  • Qiji Sun
  • , Chenxi Xu
  • , Xuan Zou
  • , Wei Guan
  • , Xiao Liu*
  • , Xu Yang*
  • , Ao Ren
  • *Corresponding author for this work
  • Heilongjiang University
  • CSIC Harbin No. 703 Research Institute
  • Daqing Petroleum Institute

Research output: Contribution to journalArticlepeer-review

Abstract

In this paper, the D3Q19 multiple-relaxation-time (MRT) lattice Boltzmann method (LBM) for large eddy simulation (LES) was employed to optimize the shape of the vortex generator in a triangular vortex flowmeter. The optimization process focused on the vortex shedding frequency, lift force per unit area, and symmetry of the vortex street. The optimal shape of the vortex generator was determined to feature a 180° incoming flow surface, a concave arc side with a curvature radius of 25 mm, and a fillet radius of 4 mm at the end. Numerical simulations revealed that the optimized vortex generator achieves a 2.72~13.8% increase in vortex shedding frequency and a 17.2~53.9% reduction in pressure drop and can adapt to the flow conditions of productivity fluctuations (6.498 × 105 ≤ Re ≤ 22.597 × 105) in the gas well production. The results demonstrated significant advantages, including low pressure loss, minimal secondary vortex generation, high vortex shedding frequency, and substantial lift force. These findings underscore the robustness and efficiency of the LBM-LES method in simulating complex flow dynamics and optimizing vortex generator designs.

Original languageEnglish
Article number534
JournalSymmetry
Volume17
Issue number4
DOIs
StatePublished - Apr 2025

Keywords

  • gas well production
  • lattice Boltzmann method
  • shape optimization
  • triangular vortex flowmeter

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