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INVESTIGATION OF BRUSH SEAL FLOW CHARACTERISTICS USING BULK POROUS MEDIUM APPROACH

机译:散装多孔介质法研究刷式密封流动特性

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The flow behavior through a brash seal has been investigated by developing a flow analysis procedure with a porous medium approach. In order to increase the brush seal performance and use at more severe operating conditions, the complex flow in the bristle pack has become the major concern affecting seal features such as blow-down, hang-up, hysteresis and bristle flutter. In this study, an axi-symetric CFD model is employed to calibrate anisotropic permeability coefficients for the bristle pack based on available experimental data; leakage, axial pressure on the rotor surface and radial pressure on the backing plate. A simplified form of the force balance equation is introduced for the flow in the porous bristle pack. Different sets of permeability coefficients are defined for fence height region below the seal backing plate and the upper region of the seal to correlate the different physical structures and behavior of these regions during operation. The upper region is subject to more stiffening due to backing plate support while fence height region is free to spread and bend in the axial direction. It is found that flow resistance for upper region should be 20% higher than fence height region in order to match the experimental pressure within the bristle pack. Analysis results prove that the brush seal is well represented as a porous medium with this approach. Based on the model developed, characteristic flow and pressure fields in the entire bristle pack have been explored.
机译:通过开发使用多孔介质方法的流动分析程序,已经研究了通过硬密封的流动行为。为了提高刷式密封的性能并在更苛刻的操作条件下使用,刚毛中的复杂流动已成为影响密封特性(如排污,悬垂,滞后和刚毛颤动)的主要问题。在这项研究中,基于可用的实验数据,采用轴对称CFD模型来校准刷毛包装的各向异性渗透系数。泄漏,转子表面的轴向压力和背板上的径向压力。引入了一种简化形式的力平衡方程,用于多孔刷毛组件中的流动。为密封垫背板下方的围栏高度区域和密封件的上部区域定义了不同的渗透系数集,以在操作过程中将这些区域的不同物理结构和行为关联起来。上部区域由于背板支撑而更加坚硬,而围栏高度区域则在轴向方向上自由扩展和弯曲。发现上部区域的流动阻力应比围栏高度区域高20%,以匹配刷毛群内的实验压力。分析结果证明,采用这种方法可以很好地将刷子密封件表示为多孔介质。基于开发的模型,研究了整个鬃毛束中的特征流场和压力场。

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