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Investigation of the three-dimensional flow field within a transonic fan rotor: Experiment and analysis

机译:跨音速风扇转子内三维流场的研究:实验与分析

摘要

An experimental investigation of the three dimensional flow field through a low aspect ratio, transonic, axial flow fan rotor has been conducted using an advanced laser anemometer (LA) system. Laser velocimeter measurements of the rotor flow field at the design operating speed and over a range of through flow conditions are compared to analytical solutions. The numerical technique used herein yields the solution to the full, three dimensional, unsteady Euler equations using an explicit time marching, finite volume approach. The numerical analysis, when coupled with a simplified boundary layer calculation, generally yields good agreement with the experimental data. The test rotor has an aspect ratio of 1.56, a design total pressure ratio of 1.629 and a tip relative Mach number of 1.38. The high spatial resolution of the LA data matrix (9 radial by 30 axial by 50 blade to blade) permits details of the transonic flow field such as shock location, turning distribution and blade loading levels to be investigated and compared to analytical results.
机译:通过使用先进的激光风速计(LA)系统,对低纵横比,跨音速,轴流风扇转子的三维流场进行了实验研究。将在设计运行速度和一定通流条件范围内转子流场的激光测速仪测量结果与分析解决方案进行了比较。本文使用的数值技术使用显式时间行进有限体积方法得出了完整的三维非稳态Euler方程的解。数值分析,再加上简化的边界层计算,通常可以与实验数据很好地吻合。测试转子的纵横比为1.56,设计总压力比为1.629,叶顶相对马赫数为1.38。 LA数据矩阵的高空间分辨率(径向9径向30轴向50叶片到叶片)允许对跨音速流场进行详细研究,例如冲击位置,转向分布和叶片载荷水平,并将其与分析结果进行比较。

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  • 作者

    Wood J. R.; Pierzga M. J.;

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  • 年度 1984
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