Fluid-structure interaction analysis of a morphing vertical axis wind turbine

被引:63
作者
MacPhee, David W. [1 ]
Beyene, Asfaw [2 ]
机构
[1] Univ Alabama, Dept Mech Engn, Tuscaloosa, AL 35487 USA
[2] San Diego State Univ, Dept Mech Engn, San Diego, CA 92182 USA
关键词
FSI; Morphing; Wind turbine; Flexible; 3D SIMULATION; SOLVERS; ROTORS;
D O I
10.1016/j.jfluidstructs.2015.10.010
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
There has been much recent interest in the development of Vertical Axis Wind Turbines (VAWTs), especially for use in off-grid or off-shore electricity generation, due to inherent advantages over the more popular horizontal axis types. Although there have been a number of recent attempts to increase efficiency of VAWTs using active and passive blade pitch control strategies, these designs come at an increased upfront cost, detracting from the simplistic allure of the VAWT design. This study investigates the feasibility of a flexible bladed (or morphing) VAWT, wherein individual blades are able to passively adapt to local flow conditions and serve as a pitch control mechanism to increase rotor efficiency. Using a finite volume fluid-structure interaction algorithm, a rigid VAWT is simulated with good agreement with existing experimental data, then compared to several other geometrically identical morphing designs with varying material flexibility. All simulated flexible rotors achieved higher efficiency than the standard (rigid) one, with efficiency gains up to 9.6% for the VAWT geometry investigated herein. The results suggest that the morphing rotor design can have significant advantages over the rigid design particularly in part-load scenarios, and is also likely to increase the self-starting abilities of the VAWT. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:143 / 159
页数:17
相关论文
共 50 条
[31]   A numerical investigation of fluid-structure coupling of 3 MW wind turbine blades [J].
Zhu, Ren-Sheng ;
Zhao, Hong-Ling ;
Peng, Ji-You ;
Li, Jun-Peng ;
Wang, Shi-Qi ;
Zhao, Han .
INTERNATIONAL JOURNAL OF GREEN ENERGY, 2016, 13 (03) :241-247
[32]   DEFLECTABLE BLADES VERTICAL AXIS WIND TURBINE [J].
Crisostomo, G. L. ;
Cordero, J. D. ;
Echare, J. A. ;
Layes, R. M. ;
Monana, P. O. ;
Perez, S. V. ;
Resuma, E. R. ;
Saldua, D. ;
Tayopan, L. M. .
2018 IEEE 10TH INTERNATIONAL CONFERENCE ON HUMANOID, NANOTECHNOLOGY, INFORMATION TECHNOLOGY, COMMUNICATION AND CONTROL, ENVIRONMENT AND MANAGEMENT (HNICEM), 2018,
[33]   Performance Analysis of Vertical Axis Wind Turbine with Variable Swept Area [J].
Fadil, Jazuli ;
Soedibyo ;
Ashari, Mochamad .
2017 INTERNATIONAL SEMINAR ON INTELLIGENT TECHNOLOGY AND ITS APPLICATIONS (ISITIA), 2017, :217-221
[34]   Analysis of a Nature-Inspired Shape for a Vertical Axis Wind Turbine [J].
Blanco Damota, Javier ;
Rodriguez Garcia, Juan de Dios ;
Couce Casanova, Antonio ;
Telmo Miranda, Javier ;
Giovanni Caccia, Claudio ;
Lamas Galdo, Maria Isabel .
APPLIED SCIENCES-BASEL, 2022, 12 (14)
[35]   Static structural analysis of cross flow vertical axis wind turbine [J].
Seralathan, S. ;
Sai, Sappati Yaswanath Sri ;
Teja, Boyapati Sai ;
Viswanadh, Maddula Sri ;
Rao, Chepuri Narasimha ;
Hariram, V ;
Premkumar, T. Micha .
MATERIALS TODAY-PROCEEDINGS, 2020, 33 :3630-3639
[36]   NUMERICAL ANALYSIS OF A NOVEL VERTICAL-AXIS WIND TURBINE LAYOUT [J].
Preda, Dragos ;
Duran, Bogdan ;
Pandele, Adrian ;
Manoleli-Preda, Oana-Diana ;
Ionescu, Aneta ;
Stefan, Vasilica .
INMATEH-AGRICULTURAL ENGINEERING, 2023, 70 (02) :507-516
[37]   A Comprehensive Simulation Methodology for Fluid-Structure Interaction of Offshore Wind Turbines [J].
Rasheed, Adil ;
Holdahl, Runar ;
Kvamsdal, Trond ;
Akervik, Espen .
EERA DEEPWIND' 2014, 11TH DEEP SEA OFFSHORE WIND R&D CONFERENCE, 2014, 53 :135-145
[38]   Fluid-Structure Interaction Modeling for Fatigue-Damage Prediction in Full-Scale Wind-Turbine Blades [J].
Bazilevs, Y. ;
Korobenko, A. ;
Deng, X. ;
Yan, J. .
JOURNAL OF APPLIED MECHANICS-TRANSACTIONS OF THE ASME, 2016, 83 (06)
[39]   Variational multiscale computational fluid-structure interaction analysis of Wells turbine passive-adaptive blades [J].
Barnabei, Valerio F. ;
Castorrini, Alessio ;
Corsini, Alessandro ;
Rispoli, Franco ;
Takizawa, Kenji ;
Tezduyar, Tayfun E. .
COMPUTATIONAL MECHANICS, 2024, :1519-1531
[40]   Wind Tunnel and OpenFOAM Flow Analysis of A High Solidity Vertical-Axis Wind Turbine [J].
Yosry, Ahmed G. ;
Alvarez, Eduardo A. ;
Valdes, Rodolfo E. ;
Francos, Joaquin F. ;
Marigorta, Eduardo B. .
PROCEEDINGS OF ASME TURBO EXPO 2023: TURBOMACHINERY TECHNICAL CONFERENCE AND EXPOSITION, GT2023, VOL 14, 2023,