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Dust Effect on the Performance of Wind Turbine Airfoils 被引量:7
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作者 Nianxin Ren Jinping Ou 《Journal of Electromagnetic Analysis and Applications》 2009年第2期102-107,共6页
The full two-dimensional Navier-Stokes algorithm and the SST k-? turbulence model were used to investigate incom-pressible viscous flow past the wind turbine two-dimensional airfoil under clean and roughness surface c... The full two-dimensional Navier-Stokes algorithm and the SST k-? turbulence model were used to investigate incom-pressible viscous flow past the wind turbine two-dimensional airfoil under clean and roughness surface conditions. The NACA 63-430 airfoil is chosen to be the subject, which is widely used in wind turbine airfoil and generally located at mid-span of the blade with thickness to chord length ratio of about 0.3. The numerical simulation of the airfoil under clean surface condition has been done. As a result, the numerical results had a good consistency with the experimental data. The wind turbine blade surface dust accumulation according to the operational periods in natural environment has been taken into consideration. Then, the lift coefficients and the drag coefficients of NACA 63-430 airfoil have been computed under different roughness heights, different roughness areas and different roughness locations. The role that roughness plays in promoting premature transition to turbulence and flow separation has been verified by the numeri-cal results. The trends of the lift coefficients and the drag coefficients with the roughness height and roughness area increasing have been obtained. What’s more, the critical values of roughness height, roughness area, and roughness location have been proposed. Furthermore, the performance of the airfoil under different operational periods has been simulated, and an advice for the period of cleaning wind turbine blades is proposed. As a result, the numerical simula-tion method has been verified to be economically available for investigation of the dust effect on wind turbine airfoils. 展开更多
关键词 NACA 63-430 airfois LIFT COEFFICIENT Drag COEFFICIENT ROUGHNESS HEIGHT ROUGHNESS Area ROUGHNESS LOCATION
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SCPPVC系统新翼型空气涡轮机性能数值模拟
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作者 吕玉坤 葛泉志 杨嘉熙 《节能》 2021年第1期24-27,共4页
为提高立式太阳能热气流发电系统(SCPPVC)的能量转换效率,基于Wilson理论,结合两种原空气涡轮机翼型优势表面,设计并建立了新翼型物理模型;采用数值模拟方法,探究了新翼型空气涡轮机在SCPPVC系统中的性能。结果表明:双翼型结合的新翼型... 为提高立式太阳能热气流发电系统(SCPPVC)的能量转换效率,基于Wilson理论,结合两种原空气涡轮机翼型优势表面,设计并建立了新翼型物理模型;采用数值模拟方法,探究了新翼型空气涡轮机在SCPPVC系统中的性能。结果表明:双翼型结合的新翼型空气涡轮机的能量转换效率大幅提高;当叶片数目为6,风速为5 m/s,尖速比为2时,该空气涡轮机性能相较原有模型分别提高了21.1%和29.2%。 展开更多
关键词 立式太阳能热气流发电系统 涡轮机 翼型 Wilson理论 数值模拟
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