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NUMERICAL SIMULATION OF TIP CLEARANCE CONTROL IN AXIAL TURBINE ROTOR - PART 2: PASSIVE CONTROL OF FIVE DIFFERENT TIP PLATFORMS

机译:轴汽转子尖端间隙控制的数值模拟 - 第2部分:五种不同尖端平台的无源控制

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The tip leakage flow has significant effects on turbine in loss production, aerodynamic efficiency, etc. Then it's important to minimize these effects for a better performance by adopting corresponding flow control. The active turbine tip clearance flow control with injection from the tip platform is given in Part-1 of this paper. This paper is Part-2 of the two-part papers focusing on the effect of five different passive turbine tip clearance flow control methods on the tip clearance flow physics, which consists of a partial suction side squealer tip (Partial SS Squealer), a double squealer tip (Double Side Squealer), a pressure side tip shelf with inclined squealer tip on a double squealer tip (Improved PS Squealer), a tip platform extension edge in pressure side (PS Extension) and in suction side (SS Extension) respectively. Combined with the turbine rotor and the numerical method mentioned in Part 1, the effects of passive turbine tip clearance flow controls on the tip clearance flow were sequentially simulated. The detailed tip clearance flow fields with different squealer rims were described with the streamline and the velocity vector in various planes parallel to the tip platform or normal to the tip leakage vortex core. Accordingly, the mechanisms of five passive controls were put in evidence; the effects of the passive controls on the turbine efficiency and the tip clearance flow field were highlighted. The results show that the secondary flow loss near the outer casing including the tip leakage flow and the casing boundary layer can be reduced in all the five passive control methods. Comparing the active control with the passive control, the effect brought by the active injection control on the tip leakage flow is evident. The turbine rotor efficiency could be increased via the rational passive turbine tip clearance flow control. The Improved PS Squealer had the best effect on turbine rotor efficiency, and it increased by 0.215%.
机译:尖端泄漏流对损耗生产,空气动力学效率等的涡轮机具有显着影响。然后,通过采用相应的流量控制,最小化这些效果最小化这些效果。从尖端平台注入的主动涡轮尖端间隙流量控制在本文的第1部分中给出。本文是对尖端间隙流理物理学的五种不同被动涡轮机尖端间隙流量控制方法的两部分纸张的第2部分,其包括一部分吸入侧耳器尖端(部分SS SqueLer),双重尖端尖端(双侧耳器),压力侧尖端架,其具有倾斜的斜柱尖端,在双尖端尖端(改进的PS侦探器)上,压力侧(PS延伸)和吸入侧(SS扩展)中的尖端平台延伸边缘。结合涡轮转子和第1部分中提到的数值方法,顺序模拟了钝化涡轮机尖端间隙流动对尖端间隙流动的影响。具有不同侦探轮辋的详细尖端间隙流场,用流线线和速度向量描述了与尖端平台平行的各种平面或正常到尖端泄漏涡旋芯。因此,提出了五种被动控制的机制;突出了无源控制对涡轮效率和尖端间隙流场的影响。结果表明,在所有五种无源控制方法中,可以减少包括尖端泄漏流动和壳壳边界层的外壳附近的二次流量损失。将主动控制与被动控制进行比较,显而易见的是主动喷射控制所带来的效果。通过RATIONATION Dirsive涡轮机尖端间隙流量控制可以增加涡轮机转子效率。改进的PS耳塞对涡轮机转子效率具有最佳效果,并且它增加了0.215%。

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