首页> 外文会议>ASME turbo expo >EXPERIMENTAL MEASUREMENTS OF INGESTION THROUGH TURBINE RIM SEALS. PART 2: ROTATIONALLY-INDUCED INGRESS
【24h】

EXPERIMENTAL MEASUREMENTS OF INGESTION THROUGH TURBINE RIM SEALS. PART 2: ROTATIONALLY-INDUCED INGRESS

机译:通过涡轮RIM密封圈进行摄取的实验测量。第2部分:旋转诱导的入口

获取原文

摘要

Part 1 of this two-part paper presented experimental results for externally-induced (EI) ingress, where the ingestion of hot gas through the rim seal into the wheel-space of a gas turbine is controlled by the circumferential variation of pressure in the external annulus. In Part 2, experimental results are presented for rotationally-induced (RI) ingress, where the ingestion is controlled by the pressure generated by the rotating fluid in the wheel-space. Although EI ingress is the common form of ingestion through turbine rim seals, RI ingress or combined ingress (where EI and RI ingress are both significant) is particularly important for double seals, where the pressure asymmetries are attenuated in the annular space between the inner and outer seals. In this paper, the sealing effectiveness was determined from concentration measurements, and the variation of effectiveness with sealing flow rate was compared with theoretical curves for RI ingress obtained from an orifice model. Using a nondimensional sealing parameter, Φ_0, the data could be collapsed onto a single curve, and the theoretical variation of effectiveness with Φ_0 was in very good agreement with the data for a wide range of flow rates and rotational speeds. It was shown that the sealing flow required to prevent RI ingress was much less than that needed for EI ingress, and it was also shown that the effectiveness of a radial-clearance seal is significantly better than that for an axial-clearance seal for both EI and RI ingress.
机译:这份由两部分组成的论文的第1部分介绍了外部诱导(EI)进入的实验结果,其中通过轮辋密封圈向燃气轮机的叶轮空间中吸入热气是由外部压力的周向变化控制的环。在第2部分中,介绍了旋转诱导(RI)进入的实验结果,其中摄取是由轮空间中旋转流体产生的压力控制的。尽管EI进入是通过涡轮机轮缘密封件吸入的常见形式,但RI进入或联合进入(其中EI和RI进入均很重要)对于双密封尤其重要,在这种情况下,内部和外部之间的环形空间中的压力不对称性会减弱。外密封件。本文通过浓度测量确定密封效果,并将有效性随密封流量的变化与从孔板模型获得的RI进入的理论曲线进行比较。使用无量纲的密封参数Φ_0,可以将数据折叠到一条曲线上,并且Φ_0的有效性理论上的变化与各种流速和转速下的数据都非常吻合。结果表明,防止RI进入所需的密封流远小于EI进入所需的密封流,并且还表明,对于两个EI,径向间隙密封的有效性明显优于轴向间隙密封的有效性和RI入口。

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