首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >NONLINEAR HARMONIC ANALYSIS OF A BLADE MODEL SUBJECTED TO LARGE GEOMETRICAL DEFLECTION AND INTERNAL RESONANCE
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NONLINEAR HARMONIC ANALYSIS OF A BLADE MODEL SUBJECTED TO LARGE GEOMETRICAL DEFLECTION AND INTERNAL RESONANCE

机译:大几何变形和内部共振的叶片模型的非线性谐波分析

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This paper is devoted to the study of the nonlinear harmonic response of an industrial blade model subjected to large geometrical deflection. A reduction procedure is performed on the blade model using the linear normal modes of the structure. Geometrical nonlinear effects are taken into account by considering cubic and quadratic stiffnesses in the dynamical reduced model. Reduced nonlinear stiffness coefficients are computed with the STiffness Evaluation Procedure (STEP) and periodic solutions are sought using the Harmonic Balance Method (HBM) coupled to a pseudo-arclength continuation. Along with the harmonic response, a bifurcation analysis is performed to compute both turning and branching points. Specific attention is paid to the internal resonance phenomenon. 2 to 1 internal resonance occurred during the frequency response analysis close to the first and second modes of the reduced model. Mode coupling phenomena occurred during the harmonic analysis and secondary branches of solutions were obtained from branching point bifurcations.
机译:本文致力于工业叶片模型在较大几何变形下的非线性谐波响应的研究。使用结构的线性法线模式对叶片模型执行还原过程。通过考虑动力学简化模型中的三次和二次刚度,可以考虑几何非线性效应。降低的非线性刚度系数通过“刚度评估程序”(STEP)计算,并使用“谐波平衡法”(HBM)耦合到伪弧长延续来寻找周期解。除谐波响应外,还会进行分叉分析以计算转折点和分支点。特别注意内部共振现象。在频率响应分析过程中,在简化模型的第一和第二模式附近发生了2比1的内部共振。在谐波分析过程中发生了模式耦合现象,并从分支点分支获得了溶液的次级分支。

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