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Reconstruction Method for Running Shape of Rotor Blade Considering Nonlinear Stiffness and Loads 被引量:2

Reconstruction Method for Running Shape of Rotor Blade Considering Nonlinear Stiffness and Loads
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摘要 The aerodynamic and centrifugal loads acting on the rotating blade make the blade configuration deformed comparing to its shape at rest. Accurate prediction of the running blade configuration plays a significant role in examining and analyzing turbomachinery performance. Considering nonlinear stiffness and loads, a reconstruction method is presented to address transformation of a rotating blade from cold to hot state. When calculating blade deformations, the blade stiffness and load conditions are updated simultaneously as blade shape varies. The reconstruction procedure is iterated till a converged hot blade shape is obtained. This method has been employed to determine the operating blade shapes of a test rotor blade and the Stage 37 rotor blade. The calculated results are compared with the experiments. The results show that the proposed method used for blade operating shape prediction is effective. The studies also show that this method can improve precision of finite element analysis and aerodynamic performance analysis.
出处 《Journal of Thermal Science》 SCIE EI CAS CSCD 2017年第5期431-439,共9页 热科学学报(英文版)
基金 supported by National Natural Science Foundation of China,Grant No.51606023 and 51436002 Natural Science Foundation of Liaoning Province,Grant No.2015020130 Fundamental Research Funds for the Central Universities,Grant No.3132017015
关键词 Blade reconstruction Fluid-structure interaction Aeroelasticity NONLINEARITY 非线性刚度 转子叶片 离心载荷 形态重构 叶片形状 运行 旋转叶片 叶片变形
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