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Design and Analysis of CFD Experiments for the Development of Bulk-Flow Model for Staggered Labyrinth Seal

机译:交错迷宫密封大流量模型开发的CFD实验设计与分析

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Nowadays, bulk-flow models are the most time-efficient approaches to estimate the rotor dynamic coefficients of labyrinth seals. Dealing with the one-control volume bulk-flow model developed by Iwatsubo and improved by Childs, the “leakage correlation” allows the leakage mass-flow rate to be estimated, which directly affects the calculation of the rotor dynamic coefficients. This paper aims at filling the lack of the numerical modelling for staggered labyrinth seals a one-control volume bulk-flow model has been developed and, furthermore, a new leakage correlation has been defined using CFD analysis. Design and analysis of computer experiments have been performed to investigate the leakage mass-flow rate, static pressure, circumferential velocity, and temperature distribution along the seal cavities. Four design factors have been chosen, which are the geometry, pressure drop, inlet preswirl, and rotor peripheral speed. Finally, dynamic forces, estimated by the bulk-flow model, are compared with experimental measurements available in the literature.
机译:如今,大流量模型是估算迷宫式密封件转子动态系数的最省时的方法。处理由岩住保郎开发并由Childs改进的单控制体积总流量模型,“泄漏相关性”可以估算泄漏质量流量,这直接影响转子动态系数的计算。本文旨在弥补迷宫式交错密封的数值模型的不足,建立了一个控制体积的整体流模型,并使用CFD分析定义了新的泄漏相关性。已经进行了计算机实验的设计和分析,以研究沿密封腔的泄漏质量流量,静压,圆周速度和温度分布。选择了四个设计因素,即几何形状,压降,入口预旋和转子圆周速度。最后,将由大流量模型估算的动力与文献中提供的实验测量值进行比较。

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