Investigating the impacts of different pitch angles under varying wind speeds is done by performing Computational Fluid Dynamics (CFD) analysis on a horizontal-axis wind turbine

Authors

  • Santosh Rao, Subhrata Nagpal

Keywords:

Horizontal axis wind turbine Blade, angle of pitch, torque, power. computational Fluid Dynamic

Abstract

The utilization of modeling software Fluent 2020R1 is implemented for the purpose of conductingcomputational fluid dynamic simulations. Through the utilization of this software, calculations areperformed to determine the torque and power values at varying pitch angles and diverse wind speeds.In the case of horizontal axis wind turbines

References

C. Phelps, J. Singleton, "Wind Turbine Blade Design. Cornell University," Sibley School of Engineering, pp. 2-14, 2013.

Tukesh Singh Thakur, Brijesh Patel, "Structural Analysis of a Composite Wind Turbine Blade to optimize its Constructional Parameters using a FEA Software," IJSRD-International Journal for Scientific Research & Development. Vol. 3. No. 4pp. 572-576, Nov. 2016.

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Published

2024-08-20

How to Cite

Santosh Rao, Subhrata Nagpal. (2024). Investigating the impacts of different pitch angles under varying wind speeds is done by performing Computational Fluid Dynamics (CFD) analysis on a horizontal-axis wind turbine . Journal of Computational Analysis and Applications (JoCAAA), 33(08), 6080–6091. Retrieved from https://eudoxuspress.com/index.php/pub/article/view/3605

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Articles