LAPSE:2023.28734v1
Published Article

LAPSE:2023.28734v1
A Fast Two-Dimensional Numerical Method for the Wake Simulation of a Vertical Axis Wind Turbine
April 12, 2023
Abstract
In the array design of the vertical axis wind turbines (VAWT), the wake effect of the upstream VAWT on the downstream VAWT needs to be considered. In order to simulate the velocity distribution of a VAWT wake rapidly, a new two-dimensional numerical method is proposed, which can make the array design easier and faster. In this new approach, the finite vortex method and vortex particle method are combined to simulate the generation and evolution of the vortex, respectively, the fast multipole method (FMM) is used to accelerate the calculation. Based on a characteristic of the VAWT wake, that is, the velocity distribution can be fitted into a power-law function, a new correction model is introduced to correct the three-dimensional effect of the VAWT wake. Finally, the simulation results can be approximated to the published experimental results in the first-order. As a new numerical method to simulate the complex VAWT wake, this paper proves the feasibility of the method and makes a preliminary validation. This method is not used to simulate the complex three-dimensional turbulent evolution but to simulate the velocity distribution quickly and relatively accurately, which meets the requirement for rapid simulation in the preliminary array design.
In the array design of the vertical axis wind turbines (VAWT), the wake effect of the upstream VAWT on the downstream VAWT needs to be considered. In order to simulate the velocity distribution of a VAWT wake rapidly, a new two-dimensional numerical method is proposed, which can make the array design easier and faster. In this new approach, the finite vortex method and vortex particle method are combined to simulate the generation and evolution of the vortex, respectively, the fast multipole method (FMM) is used to accelerate the calculation. Based on a characteristic of the VAWT wake, that is, the velocity distribution can be fitted into a power-law function, a new correction model is introduced to correct the three-dimensional effect of the VAWT wake. Finally, the simulation results can be approximated to the published experimental results in the first-order. As a new numerical method to simulate the complex VAWT wake, this paper proves the feasibility of the method and makes a preliminary validation. This method is not used to simulate the complex three-dimensional turbulent evolution but to simulate the velocity distribution quickly and relatively accurately, which meets the requirement for rapid simulation in the preliminary array design.
Record ID
Keywords
finite vortex method, three-dimensional effect correction model of the wake, two-dimensional wake simulation, vertical axis wind turbine (VAWT), vortex particle method
Subject
Suggested Citation
Yuan Z, Jiang J, Zang J, Sheng Q, Sun K, Zhang X, Ji R. A Fast Two-Dimensional Numerical Method for the Wake Simulation of a Vertical Axis Wind Turbine. (2023). LAPSE:2023.28734v1
Author Affiliations
Yuan Z: College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China
Jiang J: College of Mechanical and Electrical Engineering, Jinling Institute of Technology, Nanjing 211169, China
Zang J: Department of Architecture and Civil Engineering, University of Bath, Bath BA2 7AY, UK
Sheng Q: College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China
Sun K: College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China [ORCID]
Zhang X: College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China
Ji R: College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China
Jiang J: College of Mechanical and Electrical Engineering, Jinling Institute of Technology, Nanjing 211169, China
Zang J: Department of Architecture and Civil Engineering, University of Bath, Bath BA2 7AY, UK
Sheng Q: College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China
Sun K: College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China [ORCID]
Zhang X: College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China
Ji R: College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China
Journal Name
Energies
Volume
14
Issue
1
Article Number
E49
Year
2020
Publication Date
2020-12-24
ISSN
1996-1073
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PII: en14010049, Publication Type: Journal Article
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LAPSE:2023.28734v1
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Apr 12, 2023
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