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首页> 外文期刊>Journal of turbomachinery >The Impact of Manufacturing Variations on Performance of a Transonic Axial Compressor Rotor
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The Impact of Manufacturing Variations on Performance of a Transonic Axial Compressor Rotor

机译:制造变化对跨声轴压缩机转子性能的影响

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In this paper, the impact of manufacturing variations on performance of an axial compressor rotor is evaluated at design rotational speed. The geometric variations from the design intent obtained from measurements were used to evaluate the impact of manufacturing variations on performance and the flow field in the rotor. The complete blisk is simulated using 3D computational fluid dynamics calculations, allowing for a detailed analysis of the impact of geometric variations on the flow. It is shown that the mean shift of the geometry from the design intent is responsible for the majority of the change in performance in terms of mass flow and total pressure ratio for this specific blisk In terms of polytropic efficiency, the measured geometric scatter is shown to have a higher influence than the geometric mean deviation. The geometric scatter around the mean is shown to impact the pressure along the leading edge and the shock position. Furthermore, a blisk is analyzed with one blade deviating substantially from the design intent. It is shown that the impact of this blade on the flow is largely limited to the blade passages that it is directly a part of It is also shown that the impact of this blade on the flow field can be represented by a simulation including three blade passages. In terms of loss, using five blade passages is shown to give a close estimate for the relative change in loss for the blade deviating substantially from the design intent and for the neighboring blades.
机译:在本文中,在设计转速下评估了制造变化对轴向压缩机转子性能的影响。从测量中获得的设计意图的几何变化用于评估制造变化对转子中的性能和流场的影响。使用3D计算流体动力学计算模拟完整的闪烁,允许详细分析几何变化对流量的影响。结果表明,从设计意图的几何形状的平均转移是对大多数在多种特定展示的质量流量和总压力比方面的大部分变化,而是在多细胞效率方面,所示的几何散射显示为具有比几何平均偏差更高的影响力。围绕平均值的几何散射被示出为沿前缘和冲击位置撞击压力。此外,通过基本上从设计意图偏离的一块刀片分析闪烁。结果表明,该刀片对流动的影响主要限于叶片通道,即它直接一部分还示出了该刀片在流场上的影响可以由包括三个刀片通道的模拟来表示。在损耗方面,示出了使用五个刀片通道,以便对基本上偏离设计意图和邻近叶片的叶片的损耗的相对变化进行密切估计。

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