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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Numerical and Experimental Investigation on the Effect of Swirl Brakes on the Labyrinth Seals
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Numerical and Experimental Investigation on the Effect of Swirl Brakes on the Labyrinth Seals

机译:旋流制动器对迷宫式密封件影响的数值和实验研究

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摘要

Swirl brake influences the static and rotordynamic characteristics of labyrinth seal which are important in the prediction of turbomachine stability. To study the influence of the swirl brakes on improving seal stability, the effects of swirl brakes on the static and rotor-dynamic characteristics of labyrinth seals were investigated by the combination of numerical simulation and experiment. First, it was performed to the effects of swirl brake on the static flow characteristics of labyrinth seal with swirl ratio and pressure distribution based on computational fluid dynamics (CFD). And then a comparison between leakage predicted by the CFD model and measurement was presented to verify the accuracy of the simulation. Moreover, an experiment was implemented to analyze the rotordynamic characteristics of labyrinth seal using an improved impedance method based on an unbalanced synchronous excitation method on a rotor test rig. The influences of swirl brake density, length, inlet/outlet pressure ratio, and rotating speed were measured and discussed, respectively. The CFD numerical results show that the swirl brake effectively reduces the seal swirl ratio (~60-75% less), circumferential pressure difference (~25-85% less) so that the seal destabilizing forces decrease. With the increasing of the swirl vanes density and length, the seal leakage drops (~8-20% less). The experimental rotordynamic characteristics results show that it is more obvious to reduce the cross-couple stiffness (~50-300% less) and increase the direct damping (~50-60% larger) with the increasing in the number and length of the swirl vanes, and thus the swirl brake improves the seal rotordynamic stability. The efforts of this paper provide a useful insight to clearly understand the effects of swirl brakes on the labyrinth seal static and rotordynamic characteristics, which is beneficial to improve the design of annular seals.
机译:涡流制动器会影响迷宫式密封的静态和转子动力学特性,这对于预测涡轮机稳定性至关重要。为了研究旋流制动器对改善密封稳定性的影响,通过数值模拟和实验相结合的方法,研究了旋流制动器对迷宫式密封件静态和转子动力学特性的影响。首先,基于计算流体动力学(CFD),通过涡流比和压力分布对涡流制动器对迷宫式密封的静态流动特性的影响进行了研究。然后比较了CFD模型预测的泄漏和测量结果,以验证仿真的准确性。此外,在转子试验台上进行了基于不平衡同步励磁方法的改进阻抗法分析迷宫式密封的转子动力学特性的实验。分别测量并讨论了旋流制动器的密度,长度,进/出口压力比和转速的影响。 CFD数值结果表明,涡流制动器有效地降低了密封件的涡流比(减小了约60-75%),周向压差(减小了约25-85%),从而减小了密封件的破坏力。随着旋流叶片密度和长度的增加,密封件泄漏量下降(减少了约8-20%)。实验转子动力学特性结果表明,随着旋流数量和长度的增加,减小交叉耦合刚度(减小约50-300%)并增加直接阻尼(增大约50-60%)更为明显。叶片,因此涡流制动器提高了密封件转子的动态稳定性。本文的工作提供了有用的见解,可以清楚地了解涡流制动器对迷宫式密封的静态和转子动力学特性的影响,这有助于改进环形密封的设计。

著录项

  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2016年第3期|032507.1-032507.12|共12页
  • 作者单位

    Liaoning Key Laboratory of Advanced Test Technology for Aerospace Propulsion System, Shenyang Aerospace University, Shenyang 110136, China;

    Liaoning Key Laboratory of Advanced Test Technology for Aerospace Propulsion System, Shenyang Aerospace University, Shenyang 110136, China;

    Department of Mechanical Engineering, Hong Kong Polytechnic University Hong Kong, China School of Energy and Power Engineering, Beihang University, Beijing 100191, China;

    Liaoning Key Laboratory of Advanced Test Technology for Aerospace Propulsion System, Shenyang Aerospace University, Shenyang 110136, China;

    Liaoning Key Laboratory of Advanced Test Technology for Aerospace Propulsion System, Shenyang Aerospace University, Shenyang 110136, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    labyrinth seal; swirl brake; CFD; experimental identification; static characteristic; rotordynamic characteristic;

    机译:迷宫密封涡流制动器差价合约实验鉴定静态特性转子动力学特性;

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