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Numerical Analysis of Finger Seal with Grooves on Lifting Pads

机译:提升垫上带有沟槽的指形密封件的数值分析

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摘要

Numerical research on lifting and sealing performance of a whole ring finger seal with grooved pad structures is presented in this paper. Different groove structures on the bottom of a lifting pad, such as one and two straight grooves, or two herringbone grooves with different gradients, etc., will be simulated. For discussing interaction between the rotor and finger seal, the vibration trajectory of the rotor is taken into account in the numerical computation. Numerical simulation results indicate that the complete ring model is more suitable than an individual finger model to simulate the fluid-solid interactions of the finger seal. Deformation of the finger seal is changed by vibration of the rotor, and it should adapt the clearance in a uniform way according to the rotor position. The grooved pad structures have effects on the leakage flows and the lifting force on the finger. Analytical data revealed that the self-adaptive performance of the finger seal to rotor vibration is subsistent The self-adaptive performance will be helpful to make the finger seal processes lower wear and with smaller leakage in a rotor-seal system.
机译:本文对带凹槽垫结构的整个无名指密封件的提升和密封性能进行了数值研究。将模拟提升垫底部的不同凹槽结构,例如一个和两个直线凹槽,或两个具有不同坡度的人字形凹槽等。为了讨论转子和指状密封件之间的相互作用,在数值计算中考虑了转子的振动轨迹。数值模拟结果表明,完整的环形模型比单个手指模型更适合于模拟手指密封件的流固耦合。指形密封的变形会因转子的振动而改变,并且应根据转子的位置均匀地调整间隙。带凹槽的垫结构会影响泄漏流和手指上的提升力。分析数据表明,指状密封件对转子振动的自适应性能是持续存在的。自适应性能将有助于使指状密封件的磨损更低,转子密封系统中的泄漏更小。

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  • 来源
    《Journal of propulsion and power》 |2015年第3期|805-814|共10页
  • 作者单位

    Harbin Engineering University, 150001 Harbin, People's Republic of China;

    Harbin Engineering University, 150001 Harbin, People's Republic of China;

    Harbin Engineering University, 150001 Harbin, People's Republic of China;

    Harbin Engineering University, 150001 Harbin, People's Republic of China;

    Harbin Engineering University, 150001 Harbin, People's Republic of China;

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  • 正文语种 eng
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