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EFFECT OF GEOMETRIC CHANGES IN AN IDEALISED CONTACTING BRUSH SEAL BRISTLE PACK ON TYPICAL KEY PERFORMANCE MEASURES

机译:几何变化在典型关键性能措施中理想化接触密封刷毛包中的影响

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In an effort to reduce gas turbine specific fuel consumption and to increase specific thrust, advanced sealing technologies have been deployed for the purpose of secondary air flow management. One such technology, the brush seal, provides a more compliant seal and hence improved leakage performance over the legacy industry standard, the labyrinth seal. It is known that brush seal geometry has a strong effect on the loading, deformations, temperatures and flows in the bristle pack. There is limited understanding of the complex interactions between the geometric variables. This paper describes a methodology for the modelling of an idealised brush seal domain based on Computational Fluid Dynamics. Bristle pressure and force distributions, temperature distributions and tip contact forces are presented. This methodology is used to examine the sensitivity of these parameters to the geometric input variables for a contacting seal configuration, using a Design of Experiments approach. Inferences are drawn from the results to determine which of the geometric parameters are most influential in brush seal pack flow-induced behaviour, and the strength of the coupling between these parameters and the key performance indicators.
机译:为了减少燃气轮机特定的燃料消耗并增加特定推力,为二次空气流量管理部署了先进的密封技术。一种这样的技术,刷密封,提供更柔证的密封,从而改善了旧版行业标准,迷宫式密封件的泄漏性能。众所周知,刷子密封几何形状对刷毛包中的负载,变形,温度和流量有很大的影响。了解几何变量之间的复杂相互作用有限。本文介绍了基于计算流体动力学建模的理想刷密封域的建模方法。提出了刷毛压力和力分布,温度分布和尖端接触力。该方法用于使用实验方法的设计来检查这些参数对接触密封配置的几何输入变量的敏感性。从结果中汲取推论,以确定刷子密封包流引起的行为中哪个几何参数最有影响力,以及这些参数与关键性能指示器之间的耦合强度。

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