首页> 外文会议>ASME Turbo Expo >TIME-AVERAGED AND TIME-ACCURATE AERODYNAMIC EFFECTS OF ROTOR PURGE FLOW FOR A MODERN, ONE AND ONE-HALF STAGE HIGH-PRESSURE TURBINE - PART II: ANALYTICAL FLOW FIELD ANALYSIS
【24h】

TIME-AVERAGED AND TIME-ACCURATE AERODYNAMIC EFFECTS OF ROTOR PURGE FLOW FOR A MODERN, ONE AND ONE-HALF STAGE HIGH-PRESSURE TURBINE - PART II: ANALYTICAL FLOW FIELD ANALYSIS

机译:转子吹扫流动的时间平均和时间准确的空气动力学效果,用于现代,一半级高压涡轮机的转子净化流量 - 第二部分:分析流场分析

获取原文

摘要

The detailed mechanisms of purge flow interaction with the hot-gas flow path were investigated using both unsteady CFD and measurements for a turbine operating at design corrected conditions. This turbine consisted of a single-stage high-pressure turbine and the downstream, low-pressure turbine nozzle row with an aerodynamic design equivalent to actual engine hardware and typical of a commercial, high-pressure ratio, transonic turbine. The high-pressure vane airfoils and inner and outer endwalls incorporated state-of-the-art film cooling, and purge flow was introduced into the cavity located between the high-pressure vane and disk. The flow field above and below the blade angel wing was characterized by both temperature and pressure measurements. Predictions of the time-dependent flow field were obtained using a three-dimensional, Reynolds-Averaged Navier-Stokes CFD code and a computational model incorporating the three blade rows and the purge flow cavity. The predictions were performed to evaluate the accuracy obtained by a design style application of the code, and no adjustment of boundary conditions was made to better match the experimental data. Part I of this paper compared the predictions to the measurements in and around the purge flow cavity and demonstrated good correlation. Part II of this paper concentrates on the analytical results, looking at the primary gas path ingestion mechanism into the cavity as well as the effects of the rotor purge on the upstream vane and downstream rotor aerodynamics and thermodynamics. Ingestion into the cavity is driven by high static pressure regions downstream of the vane, high-velocity flow coming off the pressure side of the vane, and the blade bow waves. The introduction of the purge flow is seen to have an effect on the static pressure of the vane trailing edge in the lower 5% of span. In addition, the purge flow is weak enough that upon exiting the cavity, it is swept into the mainstream flow and provides no additional cooling benefits on the platform of the rotating blade.
机译:使用在设计校正条件下操作的涡轮机的涡轮机进行测量,研究了与热气流路的吹扫流动相互作用的详细机制。该涡轮机由单级高压涡轮机和下游,下游,低压涡轮喷嘴排,其空气动力学设计相当于实际发动机硬件和商业,高压比,跨音涡轮机的典型。高压叶片翼型和内端穿孔并入到最先进的薄膜冷却,并将吹扫流引入位于高压叶片和盘之间的腔中。叶片天使翼上方和下方的流场的特征在于温度和压力测量。使用三维Reynolds-Iveriented Navier-Stokes CFD码和包含三个叶片行和吹扫流动腔的计算模型获得时间依赖流场的预测。执行预测以评估通过代码的设计风格应用获得的准确性,并且没有对边界条件的调整更好地匹配实验数据。本文的一部分与吹扫流动腔内和周围的测量的预测比较并表现出良好的相关性。本文的第II部分集中在分析结果上,观察初级气体路径摄取机构进入腔体以及转子净化对上游叶片和下游转子空气动力学和热力学的影响。在叶片下游的高静压区域被驱动到腔中,从叶片的压力侧发射的高静压区域驱动,叶片弓波。吹扫流程的引入被视为对跨越跨度的下部5%的叶片后缘的静压产生影响。此外,吹扫流量足够弱,在离开腔时,它被扫入主流流入旋转刀片的平台上不提供额外的冷却效益。

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