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Two-dimensional numerical simulation of the rime accretion process on transition lines

  • Hao Guo*
  • , Pei Qing Liu
  • , Qiu Lin Qu
  • , Sheng Chun Liu
  • , Jing Chao Wang
  • , Yu Xian Di
  • *Corresponding author for this work
  • Beihang University
  • State Grid Corporation of China

Research output: Contribution to journalArticlepeer-review

Abstract

Based on the Lagrange method, a 2-D icing model is introduced to simulate the rime accretion process on transmission lines. The governing equations for the airflow, i.e., the unsteady incompressible RANS equations and the SST-k-ω turbulent model, are solved by the semi-implicit method for pressure linked equations (SIMPLE) on a collocated grid. The Local Collision Efficiency (LCE), one important parameter of the icing model, is evaluated on the basis of time-dependent airflow computations and water droplet trajectory calculations. The model computes the thermodynamic conditions and the icing rate as a function of the angle around the cylinder using the classical Messinger equation. The results show that the proposed ice model performed well in simulating and predicting ice-grown shapes under dry icing conditions.

Original languageEnglish
Pages (from-to)212-218+225
JournalGongcheng Lixue/Engineering Mechanics
Volume28
Issue number5
StatePublished - May 2011

Keywords

  • Dynamic mesh
  • Lagrange method
  • Local collection efficiency
  • Numerical simulation
  • Rime accretion

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