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Effects of Wheel-Shaft-Fluid Coupling and Local Wheel Deformations on the Global Behavior of Shaft Lines

机译:轮-轴-液力偶合器和局部车轮变形对轴系整体行为的影响

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摘要

Rotating parts of turbomachines are generally studied using different uncoupled approaches. For example, the dynamic behavior of shafts and wheels are considered independently and the influence of the surrounding fluid is often taken into account in an approximate way. These approaches, while often sufficiently accurate, are questionable when wheel-shaft coupling is observed or when fluid elements are strongly coupled with local structural deformations (leakage flow between wheel and casing, fluid bearings mounted on a thin-walled shaft, etc.). The approach proposed is a step toward a global model of shaft lines. The whole flexible wheel-shaft assembly and the influence of specific fluid film elements are considered in a fully three-dimensional model. In this paper, the proposed model is first presented and then applied to a simple disk-shaft assembly coupled with a fluid film clustered between the disk and a rigid casing. The finite element method is used together with a modal reduction for the structural analysis. As thin fluid films are considered, the Reynolds equation is solved using finite differences in order to obtain the pressure field. Data are transferred between structural and fluid meshes using a general method based on an interfacing grid concept. The equations governing the whole system are solved within a time-marching procedure. The results obtained show significant influence of specific three-dimensional features such as disk-shaft coupling and local disk deformations on global behavior.
机译:涡轮机的旋转部件通常使用不同的非耦合方法进行研究。例如,轴和车轮的动态行为是独立考虑的,并且通常以近似的方式考虑周围流体的影响。这些方法虽然通常足够准确,但当观察到轮轴联轴器或流体元件与局部结构变形(车轮和壳体之间的泄漏流、安装在薄壁轴上的流体轴承等)强耦合时,这些方法就值得怀疑了。所提出的方法是朝着全球轴线模型迈出的一步。在全三维模型中考虑了整个柔性轮轴组件和特定流体膜元件的影响。本文首先提出了所提出的模型,然后将其应用于一个简单的圆盘轴组件,该组件在圆盘和刚性外壳之间聚集了流体膜。有限元方法与模态约简一起用于结构分析。由于考虑了流体薄膜,因此使用有限差分求解雷诺方程以获得压力场。使用基于接口网格概念的通用方法在结构网格和流体网格之间传输数据。控制整个系统的方程在时间行进过程中求解。结果表明,碟轴耦合和局部碟片变形等特定三维特征对全局行为有显著影响。

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