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上隅角气动瓦斯吹排风机布风轮结构优化
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作者 张昕喆 李意民 张国杰 《煤矿机械》 2015年第6期176-178,共3页
对上隅角气动瓦斯吹排风机布风轮结构提出了叶片优化设计方案,通过实验结果分析可知:2对人形叶片布风轮结构在叶片吸力面的前缘和根部还存在速度和压力的不稳定现象,一些旋涡的出现导致能量损失,布风轮出口射流速度和扰动度无法控制;... 对上隅角气动瓦斯吹排风机布风轮结构提出了叶片优化设计方案,通过实验结果分析可知:2对人形叶片布风轮结构在叶片吸力面的前缘和根部还存在速度和压力的不稳定现象,一些旋涡的出现导致能量损失,布风轮出口射流速度和扰动度无法控制;优化设计后,布风轮出口射流速度增大,扰动度减弱,但随着动叶片安装角的减小,布风轮出口射流速度减小,射流的扰动程度增加;优化方案最佳安装角可调整至75~80°。 展开更多
关键词 气动瓦斯吹排风机 布风轮 结构优化 数值模拟
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A Mathematical Model for the Velocity Profile Internally to a Conical Diffuser
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作者 Disterfano Lima Martins Barbosa Jerson Rogerio Pinheiro Vaz +4 位作者 Daborah Aline Tavares Dias do Rio Vaz Sivio Wesley Oliveira Figueiredo Marcelo Oliveira da Silva Andre Luiz Amarante Mesquita Claudio JoseCavalcante Blanco 《Journal of Energy and Power Engineering》 2013年第8期1472-1477,共6页
The use of diffusers around the horizontal-axis wind turbines has been widely studied since the diffuser improves the power coefficient of the turbine and it is often called DAWTs (diffuser augmented wind turbines).... The use of diffusers around the horizontal-axis wind turbines has been widely studied since the diffuser improves the power coefficient of the turbine and it is often called DAWTs (diffuser augmented wind turbines).Turbines using diffuser are called DWATs (Diffuser Augmented Turbines),and have efficiency bigger than the Betz limit (maximum energy flow extracted = 59.26%). Thus, this study presents a mathematical model describing the behavior of the velocity profile internally to a diffuser according to the characteristics of flow and geometry of a conical diffuser. The results are compared with experimental data and show good agreement. 展开更多
关键词 DAWTs DIFFUSER renewable energy.
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Analysis of Aerodynamic Load on Straight-bladed Vertical Axis Wind Turbine 被引量:6
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作者 Qing’an LI Takao MAEDA +3 位作者 Yasunari KAMADA Junsuke MURATA Toshiaki KAWABATA Kazuma FURUKAWA 《Journal of Thermal Science》 SCIE EI CAS CSCD 2014年第4期315-324,共10页
This paper presents a wind tunnel experiment for the evaluation of energy performance and aerodynamic forces acting on a small straight-bladed vertical axis wind turbine(VAWT) depending on several values of tip speed ... This paper presents a wind tunnel experiment for the evaluation of energy performance and aerodynamic forces acting on a small straight-bladed vertical axis wind turbine(VAWT) depending on several values of tip speed ratio. In the present study, the wind turbine is a four-bladed VAWT. The test airfoil of blade is symmetry airfoil(NACA0021) with 32 pressure ports used for the pressure measurements on blade surface. Based on the pressure distributions which are acted on the surface of rotor blade measured during rotation by multiport pressure-scanner mounted on a hub, the power, tangential force, lift and drag coefficients which are obtained by pressure distribution are discussed as a function of azimuthally position. And then, the loads which are applied to the entire wind turbine are compared with the experiment data of pressure distribution. As a result, it is clarified that aerodynamic forces take maximum value when the blade is moving to upstream side, and become small and smooth at downstream side. The power and torque coefficients which are based on the pressure distribution are larger than that by torque meter. 展开更多
关键词 Wind Turbine Wind Energy Straight-bladed VAWT Tip Speed Ratio Pressure Distribution
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Numerical Simulation on Effects of Pressure Distribution of Wind Turbine Blade with a Tip Vane 被引量:5
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作者 WANG Jian-Wen JIA Rui-Bo WU Ke-Qi 《Journal of Thermal Science》 SCIE EI CAS CSCD 2007年第3期203-207,共5页
It is important to study the pressure distribution on the blade and in the adjacent area while searching the power augmentation theory with adding a tip vane to the wind turbine. This paper shows the CFD simulation re... It is important to study the pressure distribution on the blade and in the adjacent area while searching the power augmentation theory with adding a tip vane to the wind turbine. This paper shows the CFD simulation relationship of the pressure distribution on the rotor blade and in the adjacent area, after calculating the pressure of the different chordwise and spanwise point on the blade with the tip vane-V(8.8×8) and without the tip vane under tip speed ratio λ 4.5. Combining the isobaric section figure in certain location, it can be seen that the tip vane improve the pressure difference between pressure and suction surface. The most influenced zone is found and these can further display the power augmentation theory of the wind turbine using the tip vane. The simulation calculation was based on N-S equations. 3-D, steady, implicit solver was chosen. Turbulence model was k-ω SST. Discretization scheme is SECOND ORDER UPWIND. Pressure-velocity coupling was a typical SIMPLE scheme. In the whole grid system, two-divided grid formation was adopted, that is, inner region and outer region. Inner region including rectangular solid blade and neighboring, outer region is semi-cylinder. There were together 720,000 nodes with tetra-prism unstructured mesh. 展开更多
关键词 Wind turbine tip vane pressure distribution numerical simulation
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Wind Tunnel Study on Wind and Turbulence Intensity Profiles in Wind Turbine Wake 被引量:4
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作者 Takao MAEDA Yasunari KAMADA +4 位作者 Junsuke MURATA Sayaka YONEKURA Takafumi ITO Atsushi OKAWA Tetsuya KOGAKI 《Journal of Thermal Science》 SCIE EI CAS CSCD 2011年第2期127-132,共6页
In recent years, there has been a rapid development of the wind farms in Japan. It becomes very important to investigate the wind turbine arrangement in wind farm, in order that the wake of one wind turbine does not t... In recent years, there has been a rapid development of the wind farms in Japan. It becomes very important to investigate the wind turbine arrangement in wind farm, in order that the wake of one wind turbine does not to interfere with the flow in other wind turbines. In such a case, in order to achieve the highest possible efficiency from the wind, and to install as many as possible wind turbines within a limited area, it becomes a necessity to study the mutual interference of the wake developed by wind turbines. However, there is no report related to the effect of the turbulence intensity of the external flow on the wake behind a wind turbine generated in the wind tunnel. In this paper, the measurement results of the averaged wind profile and turbulence intensity profile in the wake in the wind tunnel are shown when the turbulence intensity of the external wind was changed. The wind tunnel experiment is performed with 500mm-diameter two-bladed horizontal axis wind turbine and the wind velocity in wake is measured by an I-type hot wire probe. As a result, it is clarified that high turbulence intensities enable to the entrainment of the main flow and the wake and to recover quickly the velocity in the wake. 展开更多
关键词 Horizontal axis wind turbine WAKE Wind profile Turbulence intensity Power output
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