WAKE NUMERICAL SIMULATION BASED ON THE PARK-GAUSS MODEL AND CONSIDERING ATMOSPHERIC STABILITY
Author(s) -
Xiangsheng Yang,
Ning Zhao,
Linlin Tian,
Jun Zhu
Publication year - 2016
Publication title -
international journal of modern physics conference series
Language(s) - English
Resource type - Journals
ISSN - 2010-1945
DOI - 10.1142/s2010194516601757
Subject(s) - wake , atmospheric instability , wind shear , wind speed , meteorology , wind profile power law , computer simulation , atmospheric model , turbulence , stability (learning theory) , mechanics , turbine , environmental science , physics , engineering , aerospace engineering , computer science , machine learning
In this paper, a new Park-Gauss model based on the assumption of the Park model and the Eddy-viscosity model is investigated to conduct the wake numerical simulation for solving a single wind turbine problem. The initial wake radius has been modified to improve the model’s numerical accuracy. Then the impact of the atmospheric stability based on the Park-Gauss model has been studied in the wake region. By the comparisons and the analyses of the test results, it turns out that the new Park-Gauss model could achieve better effects of the wind velocity simulation in the wake region. The wind velocity in the wake region recovers quickly under the unstable atmospheric condition provided the wind velocity is closest to the test result, and recovers slowly under stable atmospheric condition in case of the wind velocity is lower than the test result. Meanwhile, the wind velocity recovery falls in between the unstable and stable neutral atmospheric conditions.
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