期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Development of a Fast Fluid-Structure Coupling Technique for Wind Turbine Computations 被引量:1
1
作者 Matias Sessarego néstor ramos-garcía Wen Zhong Shen 《Journal of Power and Energy Engineering》 2015年第7期1-6,共6页
Fluid-structure interaction simulations are routinely used in the wind energy industry to evaluate the aerodynamic and structural dynamic performance of wind turbines. Most aero-elastic codes in modern times implement... Fluid-structure interaction simulations are routinely used in the wind energy industry to evaluate the aerodynamic and structural dynamic performance of wind turbines. Most aero-elastic codes in modern times implement a blade element momentum technique to model the rotor aerodynamics and a modal, multi-body, or finite-element approach to model the turbine structural dynamics. The present paper describes a novel fluid-structure coupling technique which combines a three- dimensional viscous-inviscid solver for horizontal-axis wind-turbine aerodynamics, called MIRAS, and the structural dynamics model used in the aero-elastic code FLEX5. The new code, MIRAS- FLEX, in general shows good agreement with the standard aero-elastic codes FLEX5 and FAST for various test cases. The structural model in MIRAS-FLEX acts to reduce the aerodynamic load computed by MIRAS, particularly near the tip and at high wind speeds. 展开更多
关键词 Fluid-Structure-Interaction Wind-Turbine Aero-Elasticity
下载PDF
Unsteady Double Wake Model for the Simulation of Stalled Airfoils
2
作者 néstor ramos-garcía Antoine Cayron Jens norkær Sorensen 《Journal of Power and Energy Engineering》 2015年第7期20-25,共6页
In the present work, the recent developed Unsteady Double Wake Model, USDWM, is used to simulate separated flows past a wind turbine airfoil at high angles of attack. The solver is basically an unsteady two-dimensiona... In the present work, the recent developed Unsteady Double Wake Model, USDWM, is used to simulate separated flows past a wind turbine airfoil at high angles of attack. The solver is basically an unsteady two-dimensional panel method which uses the unsteady double wake technique to model flow separation and its dynamics. In this paper, the calculated integral forces have been successfully validated against wind tunnel measurements for the FFA-W3-211 airfoil. Furthermore, the computed highly unsteady flow field is analyzed in detail for a set of angles of attack ranging from light to deep stall conditions. 展开更多
关键词 Wind Energy AIRFOIL Separated Flow STALL Panel Method
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部