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Theoretical and numerical investigation on the leakage characteristics of brush seals based on fluid–structure interaction

机译:基于流固耦合的刷式密封泄漏特性的理论和数值研究

摘要

This paper investigates the leakage characteristics of brush seals including the flow field characteristic of brush seal and the effects of structural parameters on the leakage characteristic of brush seals with the consideration of bristle deflection. The flow field characteristic of brush seal was discussed based on three-dimensional (3-D) computational model of brush seal, two-way fluid–structure interaction and moving grid technique. Then the effect of structural parameters on the leakage characteristic of brush seals was investigated from theoretical and numerical simulation perspectives with the emphasis on an improved prediction formula of leakage flow rate of brush seals. As illustrated in the analysis of the leakage characteristics of brush seals, (1) the leakage with the influence of bristle deflection is closer to the results of experiment relative to that without bristle deflection, and increases with the increasing inlet/outlet pressure ratios, which validate the developed 3-D computational model with bristle deflection to be more reasonable; (2) the flow field characteristics (pressure and velocity) of brush seal are revealed reasonably; (3) with the increasing of the height of backing plate fence, the clearance of brush wire and the axial clearance between brush bristle and back plate, the leakage factor rises and then reaches a stable value when the clearance of brush is larger than 0.3 mm; moreover, (4) with the increase of brush wire diameter, the leakage factor decreases firstly and then tends to stabilization, while rapidly decreases at first, then slowly decreases, and lastly tends to a value when the bristle row number increases; (5) the reliability and accuracy of the proposed prediction equation for brush seals is validated to be high by the CFD computational results. The efforts of this paper provide a useful theoretical and numerical method to clearly understand the leakage characteristics of brush seal, which is beneficial to improve the design of brush seals.
机译:本文研究了刷子密封件的泄漏特性,包括刷子密封件的流场特性以及结构参数对刷子密封件泄漏特性的影响,同时考虑了刷毛的挠度。基于刷式密封的三维(3-D)计算模型,双向流固耦合和移动网格技术,讨论了刷式密封的流场特性。然后从理论和数值模拟的角度研究了结构参数对电刷密封泄漏特性的影响,重点是改进了电刷密封泄漏流量的预测公式。如对电刷密封件泄漏特性的分析所示,(1)相对于没有刷毛挠曲的泄漏,受刷毛挠曲影响的泄漏更接近实验结果,并且随着入口/出口压力比的增加而增加。验证开发的具有鬃毛挠度的3-D计算模型更加合理; (2)合理地揭示了刷式密封的流场特性(压力和速度); (3)随着背板围栏高度的增加,电刷线的间隙以及电刷硬毛与背板之间的轴向间隙的增大,当电刷的间隙大于0.3 mm时,泄漏系数上升,然后达到一个稳定值。 ; (4)随着刷线直径的增大,泄漏系数先减小然后趋于稳定,而首先迅速减小,然后缓慢减小,最后随着刷毛排数的增加趋向于一个值。 (5)通过CFD计算结果验证了所提出的刷式密封预测方程的可靠性和准确性。本文的工作提供了一种有用的理论和数值方法,可以清楚地了解电刷密封件的泄漏特性,这有助于改进电刷密封件的设计。

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