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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >An Extension of the Classical Subset of Nominal Modes Method for the Model Order Reduction of Gyroscopic Systems
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An Extension of the Classical Subset of Nominal Modes Method for the Model Order Reduction of Gyroscopic Systems

机译:名义系统模式经典子集的扩展,用于陀螺系统模型降阶

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摘要

In the structural dynamics design process of turhomachines, Coriolis effects are usually neglected. This assumption holds true if no pronounced interaction between the shaft and disk occurs or if the radial blade displacements are negligible. For classical rotordynamic investigations or for machines where the disk is comparatively thin or weak, Coriolis effects as well as centrifugal effects like stress stiffening and spin softening have to he taken into account. For the analysis of complex structures, the finite element method is today the most commonly used modeling approach. To handle the numerical effort in such an analysis, the aim of the present work is the further development of an existing reduced order model, which also allows the consideration of Coriolis effects without the loss of accuracy for a wide range of rotational speeds. In addition to the investigation of the tuned design of the bladed disk using cyclic boundary conditions, the described method is also appropriate to investigate mistuning phenomena including Coriolis effects. Due to the fact that the computation time can he reduced by two orders of magnitude, the method also opens up the possibility for performing probabilistic mistuning investigations including Coriolis effects.
机译:在涡轮机的结构动力学设计过程中,科里奥利效应通常被忽略。如果轴和盘之间没有发生明显的相互作用,或者径向叶片的位移可忽略不计,则该假设成立。对于经典的转子动力学研究或磁盘相对较薄或较弱的机器,必须考虑科里奥利效应以及诸如应力硬化和自旋软化的离心效应。对于复杂结构的分析,有限元方法是当今最常用的建模方法。为了在这种分析中处理数值工作,本工作的目的是对现有降阶模型的进一步开发,该模型还允许考虑科里奥利效应而不会在大范围的转速下损失精度。除了使用循环边界条件研究刀片式磁盘的调整设计外,所描述的方法还适用于研究包括科里奥利效应在内的模糊现象。由于可以将计算时间减少两个数量级,因此该方法还为进行包括科里奥利效应在内的概率模糊研究提供了可能性。

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