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Rotordynamic characteristics of rotating labyrinth gas turbine seal with centrifugal growth

机译:离心增长的迷宫式旋转燃气轮机密封圈的转子动力学特性

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The rotordynamic characteristics of gas turbine seals have been investigated in numerous previous studies. However, the effects of centrifugal growth were often ignored; and no extensive studies have been reported. To this end, the present work examines numerically the influence of centrifugal growth on the rotordynamic characteristics of a typical rotating labyrinth gas turbine seal. A computational framework developed based on combined 3D FE/CFD methodology along with an appropriate rotordynamic model has been employed. For a given seal clearance and eccentricity, various flow and operating conditions are investigated covering a range of pressure ratios and rotational speeds. A substantial variation in both the cross-coupled stiffness and direct damping is noticed and the influence increases with rotational speed. The stability characteristics reveal that centrifugal growth of the seal has a detrimental effect at relatively low pressure ratio and high rotational speed combinations. The computational approach is validated against a typical labyrinth seal results reported in the literature. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在许多先前的研究中已经研究了燃气轮机密封件的转子动力学特性。但是,离心生长的影响常常被忽略;并且没有广泛的研究报道。为此,本工作从数值上检查了离心增长对典型的旋转迷​​宫式燃气轮机密封件的转子动力学特性的影响。已经采用了基于组合3D FE / CFD方法和适当的转子动力学模型开发的计算框架。对于给定的密封间隙和偏心率,研究了各种流量和运行条件,涵盖了一系列的压力比和转速。注意到交叉耦合刚度和直接阻尼都有很大的变化,并且影响随着转速的增加而增加。稳定性特征表明,密封件的离心增长在相对较低的压力比和较高的转速组合下具有有害作用。针对文献中报道的典型迷宫式密封结果验证了该计算方法。 (C)2016 Elsevier Ltd.保留所有权利。

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