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Numerical Study of Wind Turbine Wake Modeling Based on a Actuator Surface Model

  • Yang Zhou
  • , Chang Xu*
  • , Xing Xing Han
  • , Wen Zhong Shen
  • , Ming Ming Zhang
  • , Xing Ying Chen
  • *Corresponding author for this work
  • Hohai University
  • Technical University of Denmark
  • CAS - Institute of Engineering Thermophysics

Research output: Contribution to journalArticlepeer-review

Abstract

In the Actuator Surface Model (ALM), the turbine blades are represented by porous surfaces of velocity and pressure discontinuities to model the action of lifting surfaces on the flow. The numerical simulation is implemented on FLUENT platform combined with N-S equations. This model is improved on the basis of actuator line model(ALM). By using ASM, the model of turbine can be simplified and the quantity of grids and computing time can be significantly reduced. A linear distribution model and a ASM Grid identification method are presented. This paper compares the ASM with ALM by computing both near and far wake of a Nibe A wind turbineÞ which combines wake velocity, turbulent intensity and vortex structure. Results show that ASM has better prediction accuracy and verify it's feasibility on numerical simulation of wind turbine wake.

Original languageEnglish
Pages (from-to)535-540
Number of pages6
JournalKung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics
Volume38
Issue number3
StatePublished - 1 Mar 2017
Externally publishedYes

Keywords

  • Actuator surface model
  • Grid identification
  • Source term distribution
  • Wake

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