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Leakage Uncertainties in Compressors: The Case of Rotor 37

机译:压缩机泄漏的不确定性:转子37的情况

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This paper revisits an old problem of validating computational fluid dynamics simulations with experiments in turbomachinery. The case considered here is NASA rotor 37. Prior computational fluid dynamics studies of this blade have been unable to predict a total pressure deficit at the hub as observed in the experiments. A possible explanation for this discrepancy is a small hub leakage flow emanating fore of the leading edge, between the forward stationary center body and the rotating disk. In this work, a large-scale high-fidelity uncertainty quantification study is carried out to investigate whether this indeed was the case. Computations are carried out on a 4.5-million-cell rotor 37 mesh with a small cavity fore of the leading edge. This cavity has an inlet with three boundary conditions: all assumed to be uncertain. A nonintrusive, orthogonal polynomial-based technique using sparse grids is used to propagate these three uncertainties, namely, leakage mass flow, leakage whirl velocity, and radial flow angle. A total of 158 sparse-grid-based design-of-experiment computations are carried out at two flow conditions. The results of the uncertainty quantification study show that a small amount of leakage flow can account for the hub pressure deficit at both on- and off-design conditions. For the uncertainty supports selected, the total pressure that best matched experiment was found to lie between the second and third standard deviations over the assumed uncertainties.
机译:本文回顾了一个古老的问题,即通过涡轮机械的实验来验证计算流体动力学模拟。这里考虑的情况是NASA转子37。如在实验中观察到的那样,该叶片的先前计算流体动力学研究无法预测轮毂处的总压力不足。对于这种差异的可能解释是前固定的中心主体和旋转盘之间的前缘产生的轮毂泄漏流量小。在这项工作中,进行了大规模的高保真不确定性量化研究,以调查是否确实如此。计算是在一个450万个小孔的转子37上进行的,该转子的前缘的空腔很小。该空腔的入口具有三个边界条件:假定所有边界条件都是不确定的。使用稀疏网格的基于非介入式正交多项式的技术可用于传播这三个不确定性,即泄漏质量流量,泄漏涡旋速度和径向流角。在两个流动条件下总共进行了158个基于稀疏网格的实验设计计算。不确定性量化研究的结果表明,少量泄漏流量可以解释在设计时和设计时的情况下轮毂压力不足的情况。对于选定的不确定性支持,发现最佳匹配实验的总压力位于假定不确定性的第二和第三标准偏差之间。

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  • 来源
    《Journal of propulsion and power》 |2015年第1期|456-466|共11页
  • 作者单位

    University of Cambridge, Cambridge, England CB2 1PZ, United Kingdom;

    University of Cambridge, Cambridge, England CB2 1PZ, United Kingdom;

    Rolls-Royce, plc., Derby, England DE24 8BJ, United Kingdom;

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