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一种水平轴风轮叶片的气动设计方法 被引量:14
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作者 杜朝辉 M S Selig 《太阳能学报》 EI CAS CSCD 北大核心 2000年第4期364-370,共7页
发展了两种先进的水平轴风轮叶片气动计算和设计方法—— PROPGA和 PROPID。PROPGA是基于最优化方法的遗传算法 ,用于最初的叶片选择和几何设计 ;PROPID是一种基于反问题的叶片气动设计方法 ,用于最后的叶片造型和性能预估。给出了两个... 发展了两种先进的水平轴风轮叶片气动计算和设计方法—— PROPGA和 PROPID。PROPGA是基于最优化方法的遗传算法 ,用于最初的叶片选择和几何设计 ;PROPID是一种基于反问题的叶片气动设计方法 ,用于最后的叶片造型和性能预估。给出了两个实例 ,一个是以基础科学研究为目的的实验探索用全新风轮 ,另一个则是用于商业生产的小型风轮。在实际风轮设计中的成功使用证明 ,PROPID和 PROPGA是一种强有力的设计工具 。 展开更多
关键词 PROPID 叶片设计 风力涡轮 气动设计 水平轴风轮
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水平轴风轮单桨叶气动弹性稳定性分析
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作者 窦秀荣 张耀荣 +1 位作者 宋宪耕 艾兴 《机械设计与研究》 CSCD 北大核心 1995年第3期22-26,共5页
该文对水平轴风轮桨叶采用了半刚性模型,完整地推导了非线性稳态方程、扰动方程和准定常气动载荷,用NASAMOD-0HAWT的标准数据及取值范围为基础,进行了计算和讨论,验证了建模的合理性和方程推导的正确性,用该模型及其... 该文对水平轴风轮桨叶采用了半刚性模型,完整地推导了非线性稳态方程、扰动方程和准定常气动载荷,用NASAMOD-0HAWT的标准数据及取值范围为基础,进行了计算和讨论,验证了建模的合理性和方程推导的正确性,用该模型及其运动方程可完成单桨叶的气动弹性稳定性分析。 展开更多
关键词 水平轴风轮 单桨叶 气动弹性
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垂直轴自变叶片风轮的原理及应用
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作者 徐四胜 《科技与企业》 2012年第18期300-300,共1页
本文论述的自变叶片风轮,巧妙地利用风力,使逆风面的自变叶片阻力几可忽略不计,而顺风面却可全额做功。由于垂直轴自变叶片风轮具有制造简单、维护方便、不产生噪音等优点,有替代其他风轮的潜力。
关键词 水平轴风轮 垂直风轮 自变叶片
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State Modeling Based Prediction of Torsional Resonances for Horizontal-Axis Drive Train Wind Turbine 被引量:1
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作者 Rene Wamkeue Youssef Chrouro +1 位作者 Joseph Song-Mangelle Maurlce Nyobe-Yome 《Journal of Energy and Power Engineering》 2012年第11期1843-1847,共5页
This paper focuses on the state space modeling approach and output torques prediction of torsional vibrations for variable speed wind turbines. The multi-body system model under study is mainly comprised of a wind tur... This paper focuses on the state space modeling approach and output torques prediction of torsional vibrations for variable speed wind turbines. The multi-body system model under study is mainly comprised of a wind turbine, a three stage planetary gear box and an induction generator. The masses-springs approach of shaft system differential equations is developed from Newton's law and Lagrange formulas. For an easy comprehension for electrical engineers and tutorial purpose, an electrical equivalent circuit of the system is proposed by using mechanical and electrical components similarities. Extensive numerical simulations are performed to investigate system mechanical resonances and impacts of damping factors on the system dynamic and stability. 展开更多
关键词 State modeling wind turbine gear box mechanical resonances torsional vibrations stability and simulations.
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Building Effects on a Horizontal-Axis Micro Wind Turbine: Experimental and Fluid-Dynamic Analysis
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作者 Marco Milanese Arturo de Risi Domenico Laforgia 《Journal of Energy and Power Engineering》 2012年第8期1183-1190,共8页
In this work, the efficiency ofa 1 kWp horizontal-axis wind turbine which is installed on the roof of the engineering building at the University of Salento has been evaluated, by means of CFD (computational fluid dyn... In this work, the efficiency ofa 1 kWp horizontal-axis wind turbine which is installed on the roof of the engineering building at the University of Salento has been evaluated, by means of CFD (computational fluid dynamic) and experimental data. Particularly, the influence of the building on the micro wind turbine performance has been studied and the numerical results (wind velocity fields and turbulence intensity above the building) have been compared with the experimental data collected over a period of three years. The results have shown that horizontal-axis wind turbines suffer from wake effect due to buildings, therefore, best sites in urban area have to be identified by a careful fluid dynamic analysis aimed at evaluating all causes that can reduce significantly the performance of the generator: in fact, building should allow to exploit increased wind intensity, but often this advantage is voided by turbulence phenomena, as in the case under investigation where the measured aerogenerator efficiency is lower than the nominal performance curve. Then, the best site can be found by crossing the contours of wind velocity with the turbulence intensity fields: in this way it is possible to localize an area (best location) where the aerogenerator can give maximum performance. 展开更多
关键词 Micro wind turbine best location experimental and fluid-dynamic analysis.
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Study on Blade Surface Flow around Wind Turbine by Using LDV Measurements 被引量:4
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作者 Tinnapob Phengpom Yasunari Kamada +3 位作者 Takao Maeda Junsuke Murata Shogo Nishimura Tasuku Matsuno 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第2期131-139,共9页
This paper has attempted to study a mechanism of three-dimensional flow around a horizontal axis wind turbine(HAWT) rotor blade. An experimental study of the flow phenomenon in the vicinity of the wind turbine blade i... This paper has attempted to study a mechanism of three-dimensional flow around a horizontal axis wind turbine(HAWT) rotor blade. An experimental study of the flow phenomenon in the vicinity of the wind turbine blade is a challenging endeavor. In this research, the HAWT model with 2.4 m diameter was tested in the large wind tunnel. The flow around the rotating blade surface was measured simultaneously for three velocity components, and two probes were used for the synchronized measurement of three-dimensional flow components. The local velocity was detected for the single seeding particle measured in the point where three pairs of laser beams intersected. Blade sections of interest in this study are composed of radial positions r/R = 0.3, 0.5 and 0.7. Optimum and low tip speed ratio flow characteristics were also compared. The velocity flow vector, skin friction coefficient and bound circulation were calculated from LDV measurements, and the experimental research showed reasonably and clearly the experimental results. 展开更多
关键词 LDV measurement Sectional performance Wind turbine Boundary layer flow Span-wise flow
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