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Estimation of the Reliability of Automatic Axial-balancing Devices for Multistage Centrifugal Pumps

机译:多级离心泵自动轴向平衡装置可靠性估算

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摘要

The permanent increase of operating parameters of modern multistage centrifugal pumps requires more precise modelling for estimation their dynamic reliability and needs to develop new approach and methodology for the related calculations. It is necessary to change the approach assuming empirical coefficients to another one based on the probabilistic design for analysis of reliability for pumps and their nodes. In this case, the probabilistic parameters of the design features and fluid flow are significant for the calculation (e. g. geometry of gap seals, boundary conditions, material properties) and should be considered. The automatic axial-balancing device of the rotor is one of the most important nodes of multi-stage centrifugal pumps. It operates as the balancing disc for the axial force up to 1 MN. This paper presents the methodology for the numerical calculation of the balancing disc and its influence on the reliability of multistage centrifugal pumps. The proposed approach is based on the criterion of the permissible amplitudes of axial oscillations of the rotor with the automatic axial-balancing device considering probabilistic origin of main geometrical, hydromechanical and operating parameters.
机译:现代多级离心泵操作参数的永久性增加需要更精确的建模,以估计其动态可靠性,并且需要为相关计算开发新的方法和方法。必须基于概率设计来改变假设经验系数的方法,以分析泵及其节点的可靠性。在这种情况下,设计特征和流体流的概率参数对于计算来说是很大的显着的(例如,GAP密封件的几何形状,边界条件,材料特性),应考虑。转子的自动轴向平衡装置是多级离心泵最重要的节点之一。它作为平衡盘操作,用于轴向力高达1毫升。本文介绍了平衡盘数值计算的方法及其对多级离心泵可靠性的影响。所提出的方法基于主体轴向平衡装置的转子轴向振荡的允许振幅的标准,考虑到主要几何,流体力学和操作参数的概率来源。

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