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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >The Effects of a Parametric Variation of the Rim Seal Geometry on the Interaction Between Hub Leakage and Mainstream Flows in High Pressure Turbines
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The Effects of a Parametric Variation of the Rim Seal Geometry on the Interaction Between Hub Leakage and Mainstream Flows in High Pressure Turbines

机译:轮辋密封几何形状的参数变化对高压汽轮机轮毂泄漏与主流之间相互作用的影响

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The objective of this work was to assess and understand the effects of a parametric variation performed on a typical overlapping rim seal geometry. The datum geometry has been the focus of a detailed experimental investigation employing a large-scale linear cascade subjected to a range of the mass flow rates and swirl velocities of the leakage air. The parametric variations described in this paper were examined using validated computational fluid dynamics (CFD). As a part of the parametric Studies, both the axial and the radial seal clearance between the rotor fin (angel wing) and Stator platform were varied as well as the length of the overlap between Stator and rotor platforms. In addition, the effects of forward and backward facing annulus Steps were also investigated. It has been found that a backward-facing annulus step was detrimental for all conditions considered, while a forward-facing step offered improvements for smaller step heights and/or lower leakage fractions. Tightening of the seal clearances closer to the annulus line improved the sealing effectiveness but often at the expense of increased losses. On the other hand, increasing the overlap length led to improvements in the sealing effectiveness with very small effects on the overall losses. Moving the rim seal away from the blade-leading edges reduced the pressure asymmetry at the rim seal and increased the flow uniformity of the leakage air. However, this led to an increased cross-passage flow (more negative skew) and higher losses at all but lowest leakage fractions. The results presented in this paper highlight the fact that there may not be an optimum rim seal solution that would offer an improvement for the full range of leakage fractions and that, for different rim sealing flows, there may be a different optimum geometry. In addition, rotor disk movements in radial and axial directions at various off-design conditions should be considered as a part of the design process. Based on the presented results, it may be of a benefit to the turbine designer to consider rotor disk designs that would be more biased towards the upstream and outward disk movements, which would result in tightening of the seal clearances and avoidance of a backward-facing annulus step.
机译:这项工作的目的是评估和理解参数变化对典型重叠轮辋密封几何形状的影响。基准几何形状一直是详细的实验研究的重点,该研究采用了大规模线性叶栅,该线性叶栅受到一定范围的质量流量和泄漏空气的旋流速度的影响。本文中描述的参数变化是使用经过验证的计算流体动力学(CFD)进行检查的。作为参数研究的一部分,转子翼片(天使翼)与定子平台之间的轴向和径向密封间隙以及定子与转子平台之间重叠部分的长度均发生了变化。此外,还研究了向前和向后的环形台阶的影响。已经发现,对于所有考虑的条件,朝后的环形台阶都是有害的,而朝前的环形台阶对于较小的台阶高度和/或较低的泄漏分数提供了改进。紧靠环形空间的密封间隙的收紧提高了密封效果,但通常以增加损失为代价。另一方面,增加重叠长度导致密封效果的改善,而对总损失的影响很小。将轮辋密封件移离叶片前缘可减少轮辋密封件处的压力不对称性,并增加泄漏空气的流动均匀性。但是,这导致交叉通道流量增加(更多的负偏斜),并且除了最低的泄漏分数外,其他所有损失都更高。本文中提出的结果突出了这样一个事实,即可能没有最佳的轮辋密封解决方案可以为整个泄漏比例范围提供改进,并且对于不同的轮辋密封流量,可能存在不同的最佳几何形状。另外,在各种非设计条件下转子盘在径向和轴向上的运动应被视为设计过程的一部分。根据给出的结果,考虑到转子盘设计更偏向上游和向外盘运动,这对涡轮机设计者可能是有益的,这将导致密封间隙变紧并避免向后运动环步。

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