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首页> 外文期刊>Journal of turbomachinery >Effects of Geometry on Brush Seal Pressure and Flow Fields-Part I: Front Plate Configurations
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Effects of Geometry on Brush Seal Pressure and Flow Fields-Part I: Front Plate Configurations

机译:几何形状对电刷密封压力和流场的影响-第一部分:前板配置

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摘要

Pressure and flow fields lay at the basis of such common phenomena affecting brush seal performance as bristle flutter, blow-down, hang-up, hysteresis, pressure stiffening, wear, and leakage. Over the past two decades of brush seal evolution, manufacturers and researchers have applied many geometric configurations to the front and backing plates of a standard brush seal in order to control the flow field and consequent seal performance. The number of studies evaluating the effect of geometric configurations on the brush seal flow field remains limited in spite of the high number of filed patent disclosures. This study presents a numerical analysis of brush seal pressure and flow fields with regard to common conceptual front plate configurations. A CFD model has been employed to calculate pressure and flow fields in the seal domain. The model incorporates a bulk porous medium approach for the bristle pack. The effectiveness of various conceptual geometries has been outlined in terms of flow field formation. Results disclose unique effects of geometry on pressure and flow fields such that a longer front plate drives outward radial flow while playing a protective role against upstream cavity disturbances. Findings also indicate that variations in front plate geometry do not directly affect leakage performance. A long front plate or damper shim considerably changes the flow field while at the same time having limited effect on the pressure field. Moreover, a strong suction towards the clearance enhances inward radial flow in clearance operation.
机译:压力场和流场是影响刷密封性能的常见现象的基础,例如刷毛颤动,吹倒,悬垂,滞后,压力变硬,磨损和泄漏。在过去的二十年中,电刷密封件的制造商和研究人员已将许多几何构造应用于标准电刷密封件的前板和背板,以控制流场和随之而来的密封性能。尽管已提交了许多专利申请,但评估几何形状对电刷密封流场影响的研究数量仍然有限。这项研究提供了有关常见概念前面板配置的刷密封压力和流场的数值分析。 CFD模型已用于计算密封域中的压力和流场。该模型结合了用于刷毛包装的散装多孔介质方法。已经根据流场形成概述了各种概念几何形状的有效性。结果揭示了几何形状对压力和流场的独特影响,使得更长的前板驱动向外的径向流,同时起到防止上游腔室扰动的作用。研究结果还表明,前板几何形状的变化不会直接影响泄漏性能。长的前板或阻尼器垫片会极大地改变流场,同时对压力场的影响有限。此外,在间隙操作中,向间隙的强大吸力可增强径向向内流动。

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