首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >An Investigation of Flow, Mechanical, and Thermal Performance of Conventional and Pressure-Balanced Brush Seals
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An Investigation of Flow, Mechanical, and Thermal Performance of Conventional and Pressure-Balanced Brush Seals

机译:常规和压力平衡型刷式密封的流动,机械和热性能研究

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Compliant contacting filament seals such as brush seals are well known to give improved leakage performance and hence specific fuel consumption benefit compared to labyrinth seals. The design of the brush seal must be robust across a range of operating pressures, rotor speeds, and radial build-offset tolerances. Importantly the wear characteristics of the seal must be well understood to allow a secondary air system suitable for operation over the entire engine life to be designed. A test rig at the University of Oxford is described which was developed for the testing of brush seals at engine-representative speeds, pressures, and seal housing eccentricities. The test rig allows the leakage, torque, and temperature rise in the rotor to be characterized as functions of the differential pres-sure(s) across the seal and the speed of rotation. Tests were run on two different geometries of bristle pack with conventional, passive, and active pressure-balanced backing ring configurations. Comparison of the experimental results indicates that the hysteresis inherent in conventional brush seal design could compromise performance (due to increased leakage) or life (due to exacerbated wear) as a result of reduced compliance. The inclusion of active pressure-balanced backing rings in the seal designs are shown to alleviate the problem of bristle-backing ring friction, but this is associated with increased blow-down forces which could result in a significant seal-life penalty. The best performing seal was concluded to be the passive pressure-balanced configuration, which achieves the best compromise between leakage and seal torque. Seals incorporating passive pressure-balanced backing rings are also shown to have improved heat transfer performance in comparison to other designs.
机译:众所周知,与之接触的细丝密封件(例如刷式密封件)具有改进的泄漏性能,因此与迷宫式密封件相比具有特定的油耗优势。电刷密封件的设计必须在一定范围的工作压力,转子速度和径向偏移误差范围内保持坚固。重要的是,必须充分了解密封件的磨损特性,以允许设计适合在整个发动机寿命内运行的二次空气系统。描述了牛津大学的测试设备,该设备是为在发动机代表的速度,压力和密封件外壳偏心率下测试电刷密封件而开发的。该测试装置可以根据密封件两端的压差和旋转速度来表征转子中的泄漏,扭矩和温升。在具有常规,被动和主动压力平衡衬环配置的两种不同几何形状的刷毛包装上进行测试。实验结果的比较表明,常规刷式密封设计固有的滞后性可能会由于顺应性降低而损害性能(由于泄漏增加)或寿命(由于加剧磨损)。密封设计中包括主动压力平衡衬环,可以减轻刷毛-衬环的摩擦问题,但这与增加的吹扫力相关,这可能会导致密封寿命显着下降。结论是,性能最佳的密封是被动压力平衡配置,可在泄漏和密封扭矩之间实现最佳折衷。与其他设计相比,结合了被动压力平衡衬环的密封件还显示出改善的传热性能。

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