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The Effect of Inlet Swirl on Brush Seal Bristle Deflections and Stability

机译:入口旋流对刷毛密封刷毛偏转和稳定性的影响

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This paper considers three-dimensional (3D) computational fluid dynamics (CFD) and structural modeling of brush seals, and investigates the effects of inlet swirl on the bristle pack. The model couples aerodynamic forces generated by CFD to a structural model that includes interaction between bristles. At a critical value of inlet swirl, aerodynamic forces cause circumferential slip of the upstream bristle row. In practice, this may lead to instability of the bristle pack and is consistent with anecdotal reports of seal behavior. The critical swirl velocity was reduced when the downstream pressure level was raised, keeping the same upstream total to downstream static pressure difference. This is caused by the increased dynamic head associated with the inlet swirl. Inclusion of a front plate in the seal design does not offer the intended protection to the bristle pack in highly swirling environments. This is associated with highly swirling flow impinging on the bristle tips. Fitting of roughness elements on the upstream face of the front plate could improve stability by reducing swirl of the flow impacting on the bristles. Increasing the bristle diameter and bristle stiffness does not necessarily prevent slip at higher inlet swirl velocities, but reduces the magnitude of slip of the upstream bristles.
机译:本文考虑了三维(3D)计算流体动力学(CFD)和刷子密封的结构建模,并研究了入口旋流对刷毛包的影响。该模型将CFD产生的空气动力耦合到包括刷毛之间的相互作用的结构模型。在入口涡流的临界值下,空气动力力引起上游刷毛排的圆周滑动。在实践中,这可能导致刷毛包的不稳定性,并且与密封行为的轶事报告一致。当升高下游压力水平时,临界旋流速度降低,保持相同的上游总量到下游静态压力差。这是由与入口涡流相关的动态头的增加引起的。在密封设计中包含前板并不为高度旋流环境中的刷毛包提供预期的保护。这与撞击刷毛尖端的高旋流相关。在前板的上游面上的粗糙度元素的拟合可以通过减少刷毛的流动的漩涡来改善稳定性。增加刷毛直径和刷毛刚度不一定防止在更高的入口旋流速度下滑动,但减少了上游刷毛的滑动幅度。

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