3D Multidisciplinary Automated Design Optimization Toolbox for Wind Turbine Blades
<b> </b>This paper presents two novel automated optimization approaches. The first one proposes a framework to optimize wind turbine blades by integrating multidisciplinary 3D parametric modeling, a physics-based optimization scheme, the Inverse Blade Element Momentum (IBEM) method, and...
Main Authors: | Sagi Sagimbayev, Yestay Kylyshbek, Sagidolla Batay, Yong Zhao, Sai Fok, Teh Soo Lee |
---|---|
Format: | Article |
Language: | English |
Published: |
MDPI AG
2021-03-01
|
Series: | Processes |
Subjects: | |
Online Access: | https://www.mdpi.com/2227-9717/9/4/581 |
Similar Items
-
A Hybrid CFD-BEM Analysis of the Aerodynamic Performance of a Cut-Out Hollow Pipe Horizontal Axis Wind Turbine Blade
by: Neil Richard P. Tanguilig, et al.
Published: (2017-12-01) -
CFD predictions of heat transfer coefficient augmentation on a simulated film cooled turbine blade leading edge
by: Beirnaert-Chartrel, Gwennaël
Published: (2011) -
“Fast Track” Analysis of Small Wind Turbine Blade Performance
by: Małgorzata Stępień, et al.
Published: (2020-11-01) -
Multidisciplinary design optimization of film-cooled gas turbine blades
by: Talya Shashishekara S., et al.
Published: (1999-01-01) -
Multidisciplinary design optimization of film-cooled gas turbine
blades
by: Shashishekara S. Talya, et al.
Published: (1999-01-01)