Numerical Analysis of Aero-elaiticity Effect on Horizontal Axist Wind Turbine Rotor designed as a Soft Structure
Numerical Analysis of Aero-elaiticity Effect on Horizontal Axist Wind Turbine Rotor designed as a Soft Structure
批准号:
11650170
负责人:
HASEGAWA Yutaka
金额:
$2.37万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (C)
财政年份:
1999
资助国家:
日本
项目状态:
已结题
起止时间:
1999 至 2000
中文摘要
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英文摘要
This project is aimed at the development of numerical methods to simulate a turbulent wind field and to predict its influence on aerodynamic loads experienced by a HAWT rotor.The turbulent wind field simulation generates time series of turbulent wind speed at several points in a rotor plane for use in the aerodynamic loads analysis, taking account of the correlation of the wind time series at a certain point with that at every other point. The wind field simulation model is constructed on the basis of a Fourier synthesis method (the Veer's model). In this model, the required inputs are the power spectrum densities (PSDs) and the coherence functions of the turbulent wind, which define the cross spectral densities (CSDs) between any two points in the rotor plane. The vector of complex Fourier coefficients of the simulated wind can be determined by adding random phases to the set of PSDs and CSDs. By performing an inverse Fourier transform of the vector, the time series of the wind is obtained.For the calculation of aerodynamic loads on the rotor blades, an inviscid aerodynamic model based on an asymptotic acceleration potential method is adopted. This calculation model can easily evaluate the effects of the flow unsteadiness in the rotor plane induced by the wake. Unsteady aerodynamic loads caused by the dynamic stall effects are taken into account by using the ONERA method.The validity of the turbulence wind field simulator is checked by means of comparisons of the simulated wind with experimental results of field tests, and it is analyzed how the aerodynamic loads on the rotor (ex. flapping moment) respond to turbulence characteristics of the wind incoming to the rotor.Turbulence characteristics of the wind incoming to a turbine rotor bring about complicated aerodynamic loads on the wind turbine, which must be considered in the structural design process of the rotor blades. The present calculation model has a possibility to develop a simple design tool.
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Y.Hasegawa, et al.: "Numerical Analysis of Yawed Inflow Effects on a HAWT Rotor"Proc. of 3rd ASME/JSME Joints Fluid Engineering Conference. (CD-ROM). 1-9 (1999)
Y.Hasekawa 等人:“HAWT 转子偏航流入效应的数值分析”Proc。
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通讯作者:
Y.Hasegawa, et al.: "Numerical Analysis of Inflow Condition Effects on HAWT Rotor"Proceedings of Turbomachinery Association. 43 (in Japanese). 126-131 (1999)
Y.Hasekawa 等人:“HAWT 转子上的流入条件影响的数值分析”涡轮机械协会会议记录。
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Y.Hasegawa, et al.: "Study of Inflow Condition Effects on HAWT Rotor Performance by Numerical Analysis"Proceedings of JSME. 3-1 (in Japanese). 53-54 (2000)
Y.Hasekawa 等人:“通过数值分析研究流入条件对 HAWT 转子性能的影响”JSME 论文集。
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長谷川豊 他2名: "水平軸風車ロータに及ぼす流入風条件の影響に関する数値解祈"ターボ機械協会講演論文集. 43. 126-131 (1999)
Yutaka Hasekawa 等 2 人:“流入风条件对水平轴风力涡轮机转子影响的数值分析”日本涡轮机械协会会议记录 43. 126-131 (1999)。
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長谷川豊,他2名: "水平軸風車ロータに及ぼす流入風条件の影響に関する数値解析"ターボ機械協会講演論文集. 43. 126-131 (1999)
Yutaka Hasekawa 等人 2:“入流风条件对水平轴风力涡轮机转子影响的数值分析”Turbomachinery Society Proceedings,43. 126-131 (1999)
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