首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >STUDY ON EFFECT OF AXIAL OVERLAP ON TIP LEAKAGE FLOW STRUCTURE IN TANDEM BLADED LOW SPEED AXIAL FLOW COMPRESSOR
【24h】

STUDY ON EFFECT OF AXIAL OVERLAP ON TIP LEAKAGE FLOW STRUCTURE IN TANDEM BLADED LOW SPEED AXIAL FLOW COMPRESSOR

机译:轴向叠置低速双轴流压气机尖端泄漏流结构的研究

获取原文

摘要

This paper discusses the effect of axial overlap on tip leakage flow behavior in a low speed tandem bladed axial compressor. Tandem bladed axial flow compressors provide an efficient way of obtaining a higher pressure rise with minimum number of stages as compared to a conventional design. The single stage tandem rotor compressor is designed to achieve a stage loading coefficient of 1.04 and flow coefficient of 0.9. A tip clearance of 3% (of span) is provided for the current study and it is maintained constant for all axial overlap configuration studies. A computational study of the designed stage was performed to investigate the behavior of tip leakage flow with different axial overlap and its effect on the overall performance of the stage. The application of tandem blading is only justified by prescribing high aerodynamic loading on both blades which increases the concern for associated tip leakage and corner separation losses. The study reveals the interaction of tip leakage flow from the fore and aft blade with the end wall flow and its influence on the main stream flow. The presence of an aft blade behind the fore seeks additional caution for optimum management of tip leakage flow. The leakage flows from the individual blades tend to roll up along with the shroud boundary layer resulting in the formation of momentum deficit fluid in the flow passage and at exit of rotors. The penetration of momentum deficit fluid in the main stream flow is directly related to the leakage flow structure from the fore and aft blade and also their interaction with the end wall flow. The axial overlap is seen to influence the leakage flow structure in two different ways. Firstly, it is observed that the initiation of tip leakage vortex of aft blade shifts from 30% to 10% of chord measured from leading edge, as axial overlap varies from 5% to -5% of chord in the tip region respectively. Secondly, a change in axial overlap also causes a change in passage geometry of the tandem blade interaction zone which has a first order influence on the mass flow rate through it. The accelerated flow through the passage geometry sustains high loading on the aft blade. It can also be utilized for mitigating the low momentum incoming fluid resulting from the mixing of tip leakage and end wall flow. The appropriate realization of these two effects has a potential to minimize the losses occurring due to tip leakage flow in the tandem compressor rotor and to achieve the benefit of higher loading with minimum number of stages.
机译:本文讨论了低速串联叶片式轴向压缩机中轴向重叠对叶尖泄漏流动行为的影响。与常规设计相比,串联叶片式轴流压缩机提供了一种高效的方式,以最少的级数获得更高的压力上升。单级串联转子压缩机的设计可实现1.04的级负载系数和0.9的流量系数。当前研究提供了3%(跨度)的尖端间隙,并且在所有轴向重叠构型研究中均保持恒定。对设计阶段进行了计算研究,以研究具有不同轴向重叠的尖端泄漏流的行为及其对阶段整体性能的影响。仅通过在两个叶片上规定较高的空气动力学载荷来证明串联叶片的应用是合理的,这增加了对相关叶尖泄漏和转角分离损失的担忧。该研究揭示了前,后叶片的尖端泄漏流与端壁流的相互作用及其对主流流的影响。前部后部的后部叶片的存在为最佳地处理尖端泄漏流寻求了额外的注意。来自各个叶片的泄漏流往往会与护罩边界层一起卷起,从而在流动通道中和转子出口处形成动量不足的流体。动量不足流体在主流中的渗透与前,后叶片的泄漏流结构及其与端壁流的相互作用直接相关。可以看到轴向重叠以两种不同方式影响泄漏流的结构。首先,观察到后叶片的尖端泄漏涡的起始点从前缘测量时从弦的30%变为10%,这是因为轴向重叠在尖端区域中分别从弦的5%变为-5%。其次,轴向重叠的变化也引起串联叶片相互作用区的通道几何形状的变化,这对通过它的质量流率具有第一级影响。通过通道几何形状的加速流在后叶片上承受高负载。它也可用于减轻由于尖端泄漏和端壁流混合而产生的低动量输入流体。这两种效果的适当实现有可能将由于串联压缩机转子中的叶尖泄漏流而引起的损失降到最低,并以最少的级数获得更高负载的好处。

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