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Rotordynamic force coefficients of pocket damper seals.

机译:袋式阻尼器密封件的转子动力系数。

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摘要

The present work describes experiments conducted on several pocket damper seal (PDS) designs using a high pressure annular gas seal test rig. Both rotating and non-rotating tests were conducted for a 12, 8, and 6 bladed PDS. The objective of the tests was to determine the rotordynamic force coefficients and leakage for the different PDS while varying parameters such as: (1) clearance ratio, (2) rotor surface speed, (3) PDS pressure differential, and (4) excitation frequency. Two different methods were used to determine frequency dependent force coefficients: (1) the impedance method, which involved using a baseline subtraction and (2) the dynamic pressure response method, which comprised of measuring seal cavity dynamic pressure and phase relationship to vibration. Both methods were used to determine coefficients, but the dynamic pressure response method revealed insights to the dynamics of the PDS that were the first of its kind and allowed the comparison to the damper seal theory at the most fundamental of levels. The results indicated that the conventional PDS possessed high positive damping, negative and positive stiffness, and same sign cross-coupled coefficients. Another objective of the work is to investigate a new fully partitioned PDS design and accompany experimental results with the development of a modified damper seal theory. The new fully partitioned PDS design was shown to give twice as much damping as the conventional design and revealed the ability to modify direct stiffness without degradation in direct damping. Finally, both the conventional theory and the newly proposed theory predictions are compared to experimentally determined force coefficients. The last objective was to evaluate the leakage characteristics of the different designs and to investigate the effect of blade profile on seal leakage. Results showed that beveled tooth blade profiles yield higher mass flow leakage compared to rectangular blade profiles.
机译:本工作描述了使用高压环形气体密封试验台在几种袋式阻尼器密封(PDS)设计上进行的实验。对12刀片,8刀片和6刀片的PDS进行了旋转和非旋转测试。测试的目的是确定不同PDS的转子动力系数和泄漏,同时改变以下参数:(1)间隙比,(2)转子表面速度,(3)PDS压差和(4)励磁频率。两种不同的方法用于确定频率相关的力系数:(1)阻抗法,涉及使用基线减法;(2)动压响应法,包括测量密封腔动压以及与振动的相位关系。两种方法都用于确定系数,但是动态压力响应方法揭示了PDS动力学的真知灼见,这是同类方法中的第一例,并且可以与阻尼器密封理论进行最基本的比较。结果表明,常规PDS具有较高的正阻尼,负和正刚度以及相同的符号交叉耦合系数。这项工作的另一个目标是研究一种新的全分区PDS设计,并伴随改进的阻尼器密封理论的发展而获得实验结果。新的完全分隔的PDS设计显示出的阻尼是传统设计的两倍,并且具有在不降低直接阻尼的情况下修改直接刚度的能力。最后,将传统理论和新近提出的理论预测与实验确定的力系数进行比较。最后一个目的是评估不同设计的泄漏特性,并研究叶片轮廓对密封件泄漏的影响。结果表明,与矩形刀片轮廓相比,斜齿刀片轮廓产生更高的质量流泄漏。

著录项

  • 作者

    Ertas, Bugra H.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 297 p.
  • 总页数 297
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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