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Rotordynamic Force Coefficients of Volutes and Diffusers for Prediction of Turbomachinery Vibration

机译:蜗壳和扩散器的转子动力力系数,用于预测涡轮机械振动

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摘要

The American Petroleum Institute (API) level II vibration stability analysis for impellers requires higher fidelity models to predict the dynamic forces of the whirling impeller. These forces are in turn required to predict the vibration stability, critical speeds, and steady-state vibration response of the shaft-bearing-seal-impeller system. A transient computational fluid dynamics (CFD)-based approach is proposed which is applicable to nonaxisymmetric turbomachinery components, such as the volute and/or diffuser vanes, unlike its predecessor models like the bulk-flow or the quasi-steady model. The key element of this approach is the recent advancements in mesh deformation techniques which permit less restrictive motion boundary conditions to be imposed on the whirling impeller. The results quantify the contributions of the volute and/or the diffuser to the total forces which guides the analyst on whether to include these components in the model. The numerical results obtained by this approach are shown to agree well with experimental measurements and to be superior to the earlier quasi-steady alternative in terms of accuracy. Furthermore, several volute shapes were designed and analyzed for the sensitivity of the solution to the geometrical properties of the volute. The design flow rotordynamic forces show a significant dependence on the presence of the volutes in the model, with the specific shape of the volute having a lesser influence. The dimensionless forces are shown to be almost independent of the spin speed.
机译:美国石油协会(API)对叶轮的II级振动稳定性分析需要较高的保真度模型来预测回旋叶轮的动态力。反过来,需要这些力来预测轴轴承-密封-叶轮系统的振动稳定性,临界速度和稳态振动响应。提出了一种基于瞬态计算流体动力学(CFD)的方法,该方法适用于非轴对称的涡轮机械部件,例如蜗壳和/或扩压器叶片,与其前身的模型(如大流量或准稳态模型)不同。该方法的关键要素是网格变形技术的最新进展,该技术允许在旋风叶轮上施加较少的限制性运动边界条件。结果量化了蜗壳和/或扩散器对总力的贡献,从而指导分析人员是否在模型中包括这些分量。通过这种方法获得的数值结果显示与实验测量结果非常吻合,并且在准确性方面优于早期的准稳态替代方案。此外,设计并分析了几种蜗壳形状,以了解溶液对蜗壳几何特性的敏感性。设计流的转子动力对模型中蜗壳的存在有很大的依赖性,而蜗壳的具体形状影响较小。显示的无量纲力几乎与旋转速度无关。

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