首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >ON THE DEVELOPMENT OF A PRESSURE ACTUATED LEAF SEAL FOR TURBOMACHINERY APPLICATIONS
【24h】

ON THE DEVELOPMENT OF A PRESSURE ACTUATED LEAF SEAL FOR TURBOMACHINERY APPLICATIONS

机译:涡轮机械压力致动密封的发展

获取原文

摘要

In gas turbines, seals that reduce the leakage between high and low pressure regions are critical for improved performance. Damaging rubs between the rotating and non-rotating parts of turbomachinery shaft seals occur due to thermal and assembly misalignments, and rotordynamic vibration during engine start-up and shut-down transients. These rubs lead to increased seal leakage and hence to reduced overall turbine efficiency and life span. The Film Riding Pressure Actuated Leaf Seal (FRPALS) is a non-contacting compliant seal under development to adapt to varying clearances without rubbing, while maintaining low leakage. This paper presents the measurements of the FRPALS in a test rig specifically designed to test novel shaft seals for turbomachinery. The rig features a 254 mm diameter rotor with a maximum surface speed of 200 m/s. Pressure drops of up to 3.5 bar can be achieved. The results of initial testing at zero rotational speed are presented for the FRPALS in a reverse orientation. The opening and closing translations of the leaves have been measured using eddy current displacement probes targeting the movable parts of the seal. The seal clearance has been shown to remain constant for a range of applied pressure drops, which indicates the stable operation of the seal, though resulting in contact with the rotor at 1.5 bar. Mass flow leakage measurements have also demonstrated the sealing performance of the FRPALS. They show the potential of the seal to film ride subject to design modifications to maintain a more uniform film thickness. The steady-state Reynolds equation for lubrication has been used to predict the pressure along the seal clearance. The predictions have been compared with pressure measurements from a transducer located in the clearance fluid thin film.
机译:在燃气轮机中,减少高压和低压区域之间泄漏的密封件对于提高性能至关重要。涡轮机械轴封的旋转和非旋转部件之间会由于热和组件未对准以及发动机启动和停机瞬变过程中的转子动态振动而产生破坏性摩擦。这些摩擦会导致密封件泄漏增加,从而降低涡轮机的整体效率和使用寿命。薄膜骑行压力叶片密封件(FRPALS)是一种非接触式顺应性密封件,正在开发中,可以适应变化的间隙而不会产生摩擦,同时保持较低的泄漏率。本文介绍了在专门用于测试涡轮机械新型轴封的测试设备中对FRPALS的测量。该钻机具有直径254毫米的转子,最大表面速度为200 m / s。可以实现高达3.5 bar的压降。反向旋转时,FRPAS给出了零转速下的初始测试结果。叶片的打开和关闭平移已经使用针对密封件可移动部分的涡流位移探头进行了测量。密封间隙已显示在一定范围的施加的压降下保持恒定,这表明了密封的稳定运行,尽管导致与转子的接触压力为1.5 bar。质量流量泄漏测量还证明了FRPALS的密封性能。它们显示了密封件在经过修改以保持更均匀的薄膜厚度的过程中对薄膜行驶的潜力。用于润滑的稳态雷诺方程已用于预测沿密封间隙的压力。该预测已与来自位于间隙流体薄膜中的换能器的压力测量结果进行了比较。

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