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Numerical Characterization of Hot-Gas Ingestion Through Turbine Rim Seals

机译:通过涡轮缘密封件吸入热气的数值表征

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This paper deals with a numerical study aimed at the characterization of hot-gas ingestion through turbine rim seals. The numerical campaign focused on an experimental facility which models ingress through the rim seal into the upstream wheel-space of an axial-turbine stage. Single-clearance arrangements were considered in the form of axial-and radial-seal gap configurations. With the radial-seal clearance configuration, computational fluid dynamics (CFD) steady-state solutions were able to predict the system sealing effectiveness over a wide range of coolant mass flow rates reasonably well. The greater insight of flow field provided by the computations illustrates the thermal buffering effect when ingress occurs: For a given sealing flow rate, the effectiveness on the rotor was significantly higher than that on the stator due to the axial flow of hot gases from stator to rotor caused by pumping effects. The predicted effectiveness on the rotor was compared with a theoretical model for the thermal buffering effect showing good agreement. When the axial-seal clearance arrangement is considered, the agreement between CFD and experiments worsens; the variation of sealing effectiveness with coolant flow rate calculated by means of the simulations displays a distinct kink. It was found that the "kink phenomenon" can be ascribed to an overestimation of the egress spoiling effects due to turbulence modeling limitations. Despite some weaknesses in the numerical predictions, the paper shows that CFD can be used to characterize the sealing performance of axial- and radial-clearance turbine rim seals.
机译:本文进行了一项数值研究,旨在表征透平轮缘密封圈吸收的热气。数值战役集中在一个实验设施上,该设施模拟了通过轮辋密封进入轴向涡轮级上游轮空间的进入。单间隙布置以轴向和径向密封间隙配置的形式考虑。借助径向密封间隙配置,计算流体力学(CFD)稳态解决方案能够很好地预测在宽范围的冷却剂质量流量范围内的系统密封效果。计算提供的更深入的流场说明了进入时的热缓冲效果:对于给定的密封流速,由于热气从定子流向定子,轴向上的效率显着高于定子。转子由抽油作用引起。将对转子的预测有效性与理论模型进行比较,以显示出良好的热缓冲效果。当考虑轴向密封间隙布置时,CFD和实验之间的一致性变差。通过模拟计算得出的密封效果随冷却剂流量的变化显示出明显的纽结。已经发现,“扭结现象”可归因于由于湍流建模限制而导致的出口破坏效应的高估。尽管数值预测中存在一些缺陷,但本文显示,CFD可用于表征轴向和径向间隙的涡轮轮缘密封件的密封性能。

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