...
首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Hole-Pattern and Honeycomb Seal Rotordynamic Forces: Validation of CFD-Based Prediction Techniques
【24h】

Hole-Pattern and Honeycomb Seal Rotordynamic Forces: Validation of CFD-Based Prediction Techniques

机译:孔型和蜂窝密封圈旋转动力:基于CFD的预测技术的验证

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

This paper deals with modeling of hole-pattern and honeycomb seals. These are frequently used as balance piston seals in high pressure centrifugal compressor applications as they have the potential to facilitate superior rotordynamic damping characteristics while providing good leakage control. On the other hand it is also well-established that the rotordynamic performance of hole-pattern and honeycomb seals is very sensitive to convergence and divergence in the streamwise direction. The isotseal bulk-flow code has shown difficulties in predicting the rotordynamic coefficients for convergent seal geometries or in cases with negative preswirl. This has led to increased interest in CFD-based analysis of seal dynamics. CFD-based models generally have less assumptions and are applicable for complex geometries or operating ranges not covered by bulk-flow codes. The CFD-based Instationary Perturbation Model (IPM) is utilized for the analysis of the hole-pattern and honeycomb seals. The rotordynamic forces are obtained by means of a time-dependent perturbation of the rotor position with respect to the stator. A sequence of perturbation frequencies is utilized to obtain the frequency dependence of the rotordynamic seal force coefficients. A strong effort has been put into validating the CFD-based perturbation modeling techniques against published experimental seal test data and the paper describes selected validation cases. A constant-clearance hole-pattern seal and a convergent honeycomb seal are analyzed and the results are compared to experimental results. The frequency dependence of the rotordynamic stiffness and damping characteristics of the seals is very well-captured for both types of seals.Finally, the IPM method was applied to a convergent hole-pattern seal to investigate the effects of eccentricity on the rotordynamic coefficients. The results are consistent with available experimental data.
机译:本文涉及孔型和蜂窝密封的建模。它们在高压离心压缩机应用中经常用作平衡活塞密封件,因为它们具有促进出色的转子动态阻尼特性同时提供良好泄漏控制的潜力。另一方面,众所周知的是,孔型密封和蜂窝密封的转子动力学性能对沿流向的会聚和发散非常敏感。等渗体大流量法在预测收敛密封几何形状或在预旋流为负的情况下的转子动力学系数方面显示出困难。这导致人们对基于CFD的密封动力学分析越来越感兴趣。基于CFD的模型通常具有较少的假设,并且适用于大流量规则未涵盖的复杂几何形状或工作范围。基于CFD的平稳扰动模型(IPM)用于分析孔型和蜂窝密封。转子动力通过转子位置相对于定子的时间相关扰动获得。利用一系列扰动频率来获得转子动态密封力系数的频率依赖性。针对已发布的实验密封测试数据,已经做出了很大的努力来验证基于CFD的扰动建模技术,并且本文描述了选定的验证案例。分析了恒定间隙的孔型密封和会聚的蜂窝密封,并将其与实验结果进行了比较。两种类型的密封件都很好地捕获了转子动态刚度和阻尼特性的频率相关性。最后,将IPM方法应用于会聚的孔型密封件中,以研究偏心率对转子动力学系数的影响。结果与可用的实验数据一致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号