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Numerical Investigation on the Static and Rotordynamic Characteristics for Two Types of Novel Mixed Helical Groove Seals

机译:两种新型混合螺旋槽密封件静态和旋转动力特性的数值研究

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Non-contracting annular seals, such as helical groove seals, are widely used between the impeller stages in the liquid turbomachinery to reduce the fluid leakage and stabilize the rotor-bearing system. However, previous literature has expounded that the helical groove seals possess the poor sealing property at low rotational speed condition and face the rotor instability problem inducing by negative stiffness and damping, which is undesirable for liquid turbomachinery. In this paper, to obtain the high sealing performance and the reliable rotordynamic capability for full operational conditions of the machine, two novel mixed helical groove seals, which possess a hole-pattern/pocket-damper stator matching with a helically-grooved rotor, were designed and assessed for a multiple-stage high-pressure centrifugal liquid pump. In order to assess the static and rotordynamic characteristics of these two types of mixed helical groove seals, a three-dimensional (3D) steady CFD-based method with the multiple reference frame theory was used to predict the seal leakage and drag power loss. Moreover, a proposed 3D transient CFD-based perturbation method, based on the multi-frequency one-dimensional stator whirling model, the multiple reference frame theory and a mesh deformation technique, was utilized for the predictions of seal rotordynamic characteristics. The accuracy of the numerical methods was demonstrated based on the experiment data of leakage and rotordynamic forces coefficients of published helical groove seals and hole-pattern seal. The leakage and rotordynamic forces coefficients of these two mixed helical groove seals were presented at five rotational speeds (0.5 krpm, 2.0 krpm, 4.0 krpm, 6.0 krpm, 8.0 kpm) with large pressure drop of 25MPa, and compared with three types of conventional helical groove seal (helical grooves on rotor, stator or both), and two types of damper seals (hole-pattern seal, pocket damper seal with smooth rotor). Numerical results show that the mixed groove seals possess generally better sealing capacity than the conventional helical groove seals, especially at low rotational speed conditions. The circumferentially-isolated cavities (hole or pocket) on the stator enhance the "pumping effect" of the helical grooves for mixed helical groove seals, what is more, the helical grooves also strengthen the dissipation of kinetic energy in the isolated cavities, thus the mixed helical groove seal offers less leakage. Although the mixed helical groove seals possess a slightly larger drag power loss, it is acceptable in consideration of reduced leakage for the high-power turbomachinery. The present novel mixed helical groove seals have pronounced stability advantages over the conventional helical groove seal, due to the obvious large positive stiffness and increased damping. The mixed helical groove seal with the hole-pattern stator and the helically-grooved rotor (HPS/GR) possesses the lowest leakage and the largest effective damping, especially for the high rotational speeds. From the viewpoint of sealing capacity and rotor stability, the novel mixed groove seals are better seal concepts for liquid turbomachinery.
机译:非承包环形密封件,例如螺旋槽密封件,广泛应用于液体涡轮机械中的叶轮级之间,以减少流体泄漏并稳定转子系统。然而,先前的文献已经阐述了螺旋槽密封件在低转速条件下具有较差的密封性能,并面对负刚度和阻尼的转子不稳定性问题,这对于液体涡轮机是不希望的。在本文中,为了获得高密封性能和机器全操作条件的可靠性旋转动力,两个新的混合螺旋槽密封件,其具有与螺旋沟槽转子匹配的孔型/袋倾斜定子。为多级高压离心液泵设计和评估。为了评估这两种类型的混合螺旋槽密封件的静态和旋转动力学特性,使用具有多个参考帧理论的三维(3D)稳定的基于CFD的方法来预测密封泄漏和阻力损耗。此外,基于多频二维定子旋转模型,多参考帧理论和网格变形技术的提出的基于3D瞬态CFD的扰动方法用于预测密封圈动力学特性。基于公开的螺旋槽密封件和空穴图案密封的漏电和旋转力系数的实验数据来证明了数值方法的准确性。这两个混合螺旋槽密封件的泄漏和旋转力系数以五次转速(0.5 kRPM,2.0 kRPM,4.0 kRPM,6.0 kRPM,8.0 kRPM,8.0kpm)呈现,具有大的压降25MPa,并与三种类型的常规螺旋相比沟槽密封(转子上的螺旋槽,定子或两者上),以及两种类型的阻尼密封件(孔图案密封,带有光滑转子的袋阻尼封闭)。数值结果表明,混合槽密封件具有比传统的螺旋槽密封件更好的密封能力,尤其是在低旋转速度条件下。定子上的周向 - 隔离腔(孔或袋)增强了混合螺旋槽密封件的螺旋槽的“泵送效果”,更重要的是,螺旋槽也强化了隔离腔中的动能的耗散,因此混合螺旋槽密封件提供较少的泄漏。尽管混合螺旋槽密封具有略大的阻力损失,但考虑到高功率涡轮机械的泄漏降低,可以接受。由于明显的大正刚度和增加的阻尼,本新颖的混合螺旋槽密封件具有优于传统的螺旋槽密封件的稳定性优势。具有空穴图案定子和螺旋沟槽转子(HPS / GR)的混合螺旋槽密封具有最低泄漏和最大的有效阻尼,特别是对于高旋转速度。从密封容量和转子稳定性的角度来看,新颖的混合槽密封件是液晶涡轮机的更好的密封概念。

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