首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >INFLUENCE OF LEADING EDGE FILLET AND NONAXISYMMETRIC CONTOURED ENDWALL ON TURBINE NGV EXIT FLOW STRUCTURE AND INTERACTIONS WITH THE RIM SEAL FLOW
【24h】

INFLUENCE OF LEADING EDGE FILLET AND NONAXISYMMETRIC CONTOURED ENDWALL ON TURBINE NGV EXIT FLOW STRUCTURE AND INTERACTIONS WITH THE RIM SEAL FLOW

机译:前沿滤芯和非对称对称尾壁对涡轮NGV出口流动结构及其与RIM密封流动相互作用的影响

获取原文

摘要

Three different ways are employed in the present paper to reduce the secondary flow related total pressure loss. These are nonaxisymmetric endwall contouring, leading edge (LE) fillet, and the combination of these two approaches. Experimental investigation and computational simulations are applied for the performance assessments. The experiments are carried out in the Axial Flow Turbine Research Facility (AFTRF) having a diameter of 91.66cm. The NGV exit flow structure was examined under the influence of a 29 bladed high pressure turbine rotor assembly operating at 1300 rpm. For the experimental measurement comparison, a reference Flat Insert endwall is installed in the nozzle guide vane (NGV) passage. It has a constant thickness with a cylindrical surface and is manufactured by a stereolithog-raphy (SLA) method. Four different LE fillets are designed, and they are attached to both cylindrical Flat Insert and the contoured endwall. Total pressure measurements are taken at rotor inlet plane with Kiel probe. The probe traversing is completed with one vane pitch and from 8% to 38% span. For one of the designs, area averaged loss is reduced by 15.06%. The simulation estimated this reduction as 7.11%. Computational evaluation is performed with the rotating domain and the rim seal flow between the NGV and the rotor blades. The most effective design reduced the mass averaged loss by 1.28% over the whole passage at the NGV exit.
机译:本文采用了三种不同的方式来减少与二次流有关的总压力损失。这些是非轴对称的端壁轮廓,前缘(LE)圆角,以及这两种方法的组合。实验研究和计算模拟应用于性能评估。实验是在直径为91.66厘米的轴流式水轮机研究设施(AFTRF)中进行的。在29叶片高压涡轮转子组件以1300 rpm运行的影响下,对NGV出口流动结构进行了检查。为了进行实验测量比较,在喷嘴导向叶片(NGV)通道中安装了一个基准扁平插入端壁。它具有恒定的厚度和圆柱形表面,并通过立体光刻(SLA)方法制造。设计了四种不同的LE圆角,它们分别连接到圆柱型扁平刀片和异形端壁上。使用Kiel探头在转子入口平面进行总压力测量。探针的移动以一个叶片间距和8%至38%的跨度完成。对于其中一种设计,面积平均损耗降低了15.06%。仿真估计该减少为7.11%。使用NGV和转子叶片之间的旋转区域和轮辋密封流进行计算评估。最有效的设计使NGV出口整个通道的平均质量损失降低了1.28%。

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