CLC number:
On-line Access: 2024-08-27
Received: 2023-10-17
Revision Accepted: 2024-05-08
Crosschecked: 2023-06-12
Cited: 0
Clicked: 1726
Yangyang YAN, Jintao ZHANG, Junao SHE, Wenhao LIU, Jianghong DENG, Jianyang ZHU. Effect of additional cylinders on power-extraction performance of a Savonius vertical-axis wind turbine[J]. Journal of Zhejiang University Science A, 2023, 24(6): 531-542.
@article{title="Effect of additional cylinders on power-extraction performance of a Savonius vertical-axis wind turbine",
author="Yangyang YAN, Jintao ZHANG, Junao SHE, Wenhao LIU, Jianghong DENG, Jianyang ZHU",
journal="Journal of Zhejiang University Science A",
volume="24",
number="6",
pages="531-542",
year="2023",
publisher="Zhejiang University Press & Springer",
doi="10.1631/jzus.A2200292"
}
%0 Journal Article
%T Effect of additional cylinders on power-extraction performance of a Savonius vertical-axis wind turbine
%A Yangyang YAN
%A Jintao ZHANG
%A Junao SHE
%A Wenhao LIU
%A Jianghong DENG
%A Jianyang ZHU
%J Journal of Zhejiang University SCIENCE A
%V 24
%N 6
%P 531-542
%@ 1673-565X
%D 2023
%I Zhejiang University Press & Springer
%DOI 10.1631/jzus.A2200292
TY - JOUR
T1 - Effect of additional cylinders on power-extraction performance of a Savonius vertical-axis wind turbine
A1 - Yangyang YAN
A1 - Jintao ZHANG
A1 - Junao SHE
A1 - Wenhao LIU
A1 - Jianghong DENG
A1 - Jianyang ZHU
J0 - Journal of Zhejiang University Science A
VL - 24
IS - 6
SP - 531
EP - 542
%@ 1673-565X
Y1 - 2023
PB - Zhejiang University Press & Springer
ER -
DOI - 10.1631/jzus.A2200292
Abstract: To improve the power-extraction performance of the savonius vertical-axis wind turbine (S-VAWT), additional cylinders, which are used to control the fluid flow around the wind turbine blade, were introduced into the blade design. In contrast to the traditional numerical method, a mathematical model in the form of a dynamical system was used in this study. A numerical calculation program that could effectively solve the equations of wind-induced rotation of S-VAWT was developed, and combined with the taguchi experimental method to investigate the influence of additional cylinders on the power-extraction characteristics of the S-VAWT. The results showed that the additional cylinders have a significant impact on the power-extraction performance of the S-VAWT. At 4-m/s wind speed, the average power coefficient of the S-VAWT with additional cylinders is 15% higher than that of the conventional S-VAWT. After construction of the wind turbine prototype and power-extraction tests, the results showed that compared with a conventional S-VAWT, the output power was 29% higher for the S-VAWT with additional cylinders under the same particular conditions.
[1]AkwaJV, da Silva JúniorGA, PetryAP, 2012. Discussion on the verification of the overlap ratio influence on performance coefficients of a Savonius wind rotor using computational fluid dynamics. Renewable Energy, 38(1):141-149.
[2]AlmohammadiKM, InghamDB, MaL, et al., 2013. Computational fluid dynamics (CFD) mesh independency techniques for a straight blade vertical axis wind turbine. Energy, 58:483-493.
[3]CelikY, MaL, InghamD, et al., 2020. Aerodynamic investigation of the start-up process of H-type vertical axis wind turbines using CFD. Journal of Wind Engineering and Industrial Aerodynamics, 204:104252.
[4]EbrahimpourM, ShafaghatR, AlamianR, et al., 2019. Numerical investigation of the Savonius vertical axis wind turbine and evaluation of the effect of the overlap parameter in both horizontal and vertical directions on its performance. Symmetry, 11(6):821.
[5]El BazAM, MahmoudNA, HamedAM, et al., 2015. Numerical modelling of Savonius wind turbine with downstream baffle. ASME Turbo Expo 2015: Turbine Technical Conference and Exposition.
[6]GanD, 2021. Optimization Design and Performance Analysis of Savonius Vertical Axis Wind Turbine Blade. MS Thesis, Hubei University of Technology, Wuhan, China(in Chinese).
[7]GhoneamSM, HamadaAA, SherifTS, 2021. Dynamic analysis of the optimized Savonius vertical axis wind turbine composite blades. Journal of Solar Energy Engineering, 143(5):054502.
[8]IrabuK, RoyJN, 2007. Characteristics of wind power on Savonius rotor using a guide-box tunnel. Experimental Thermal and Fluid Science, 32(2):580-586.
[9]JiangZC, YasuakiD, ZhangSY, 2007. Numerical investigation on the flow and power of small-sized multi-bladed straight Darrieus wind turbine. Journal of Zhejiang University-SCIENCE A, 8(9):1414-1421.
[10]LiZQ, WuYK, HongJ, et al., 2018. The study on performance and aerodynamics of micro counter-rotating HAWT. Energy, 161:939-954.
[11]ManatbayevR, BaizhumaZ, BolegenovaS, et al., 2021. Numerical simulations on static vertical axis wind turbine blade icing. Renewable Energy, 170:997-1007.
[12]MohanavelV, RavichandranM, 2022. Optimization of parameters to improve the properties of AA7178/Si3N4 composites employing Taguchi approach. Silicon, 14(4):1381-1394.
[13]NimvariME, FatahianH, FatahianE, 2020. Performance improvement of a Savonius vertical axis wind turbine using a porous deflector. Energy Conversion and Management, 220:113062.
[14]NobileR, VahdatiM, BarlowJF, et al., 2014. Unsteady flow simulation of a vertical axis augmented wind turbine: a two-dimensional study. Journal of Wind Engineering and Industrial Aerodynamics, 125:168-179.
[15]OliveiraTAC, CocchiniU, ScarpelloJT, et al., 2001. Pervaporation mass transfer with liquid flow in the transition regime. Journal of Membrane Science, 183(1):119-133.
[16]OstosI, RuizI, GajicM, et al., 2019. A modified novel blade configuration proposal for a more efficient VAWT using CFD tools. Energy Conversion and Management, 180:733-746.
[17]PopeK, RodriguesV, DoyleR, et al., 2010. Effects of stator vanes on power coefficients of a Zephyr vertical axis wind turbine. Renewable Energy, 35(5):1043-1051.
[18]QasemiK, AzadaniLN, 2020. Optimization of the power output of a vertical axis wind turbine augmented with a flat plate deflector. Energy, 202:117745.
[19]SahaUK, ThotlaS, MaityD, 2008. Optimum design configuration of Savonius rotor through wind tunnel experiments. Journal of Wind Engineering and Industrial Aerodynamics, 96(8-9):1359-1375.
[20]ShaheenM, El-SayedM, AbdallahS, 2015. Numerical study of two-bucket Savonius wind turbine cluster. Journal of Wind Engineering and Industrial Aerodynamics, 137:78-89.
[21]SunXJ, ZhouDH, 2022. Review of numerical and experimental studies on flow characteristics around a straight-bladed vertical axis wind turbine and its performance enhancement strategies. Archives of Computational Methods in Engineering, 29(3):1839-1874.
[22]SunXJ, ZhuJY, LiZJ, et al., 2021. Rotation improvement of vertical axis wind turbine by offsetting pitching angles and changing blade numbers. Energy, 215:119177.
[23]TakaoM, KumaH, MaedaT, et al., 2009. A straight-bladed vertical axis wind turbine with a directed guide vane row—effect of guide vane geometry on the performance. Journal of Thermal Science, 18(1):54-57.
[24]DDDPTTjahjana, ArifinZ, SuyitnoS, et al., 2021. Experimental study of the effect of slotted blades on the Savonius wind turbine performance. Theoretical and Applied Mechanics Letters, 11(3):100249.
[25]WangJW, YuanRY, DongXQ, et al., 2015. Time resolved particle image velocimetry experimental study of the near wake characteristics of a horizontal axis wind turbine. Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 16(7):586-595.
[26]YinXX, LinYG, LiW, 2017. Modeling and loading compensation of a rotary valve-controlled pitch system for wind turbines. Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 18(9):718-727.
[27]ZhaoT, ZhangX, ZhengM, et al., 2019. Variation of energy utilization efficiency with respect to inlet wind speed for eight-blade modified Savonius rotor by CFD approach. International Journal of Green Energy, 16(14):1287-1294.
[28]ZhuJY, TianCB, 2019. Effect of rotation friction ratio on the power extraction performance of a passive rotation VAWT. International Journal of Rotating Machinery, 2019:6580345.
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