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A novel 4-sensor fast-response aerodynamic probe for non-isotropic turbulence measurement in turbomachinery flows

机译:用于涡轮机流动的非各向同性湍流测量的新型4传感器快速响应空气动力学探针

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摘要

In modern computational studies for turbomachinery applications, time, length scales and isotropy of turbulent structures are important for representative modelling. To this end, experimental data are essential to validate the numerical tools. The current article presents the development and application of a newly designed 4-sensor Fast Response Aerodynamic Probe (FRAP-4S) enabling time-resolved measurement of the three-dimensional unsteady flow velocity vector in turbomachines. The miniature multi-sensor probe demonstrates a 4 mm probe-tip. In the first part of this article the design, manufacturing and calibration results of the FRAP-4S are presented in detail. To assess the newly developed probe accuracy, comparison against traditional instrumentation developed at the Laboratory for Energy Conversion is also provided. In the second part of this work, measurements are performed at the rotor exit of a one-and-a-half stage, unshrouded and highly-loaded axial turbine configuration. The results showed increased level of unsteadiness and turbulence levels with peak-to-peak fluctuation from 5 to 35%. More importantly, in some regions stream-wise unsteadiness was found to be ten times higher, compared to the cross-wise components, an indication of the high degree of anisotropy.
机译:在现代计算研究中的涡轮机械应用,湍流结构的时间,长度和各向同性对代表性建模很重要。为此,实验数据对于验证数值工具至关重要。本文介绍了新设计的4传感器快速响应空气动力学探针(FRAP-4S)的开发和应用,从而实现了涡轮机中的三维非稳态流速向量的时间分辨测量。微型多传感器探头演示了4毫米探头尖端。在本文的第一部分,详细介绍了FRAP-4S的设计,制造和校准结果。为了评估新开发的探针精度,还提供了在实验室开发的传统仪器的比较。在该工作的第二部分中,测量在一个半级,不受欢迎和高负载的轴向涡轮机配置的转子出口处进行。结果表明,不稳定和湍流水平的水平增加,峰值达到5%至35%。更重要的是,与交叉组件相比,在一些区域中,发现流明显的不稳定度是较高的十倍,这是高度各向异性的指示。

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