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Calibration in a potential water jet of a five-hole pressure probe with embedded sensors for unsteady flows measurement

机译:带有嵌入式传感器的五孔压力探头的潜在水喷射中的校准,用于非恒定流量测量

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Investigations of the flow behavior are currently carried out experimentally on models of hydraulic turbines. Quantities such as unsteady velocity can be acquired using PIV or LDV techniques, static wall pressure using steady or unsteady pressure transducers and wall shear stress using hot-film anemometry. More rarely acquired however, the unsteady total pressure at different locations in the flowstream would give more information on the flow dynamics and would be a key component for setting boundary conditions for CFD simulations. Following the example of classical Pitot tubes, which can only give averaged pressure values though, we have developed a five-hole pressure probe with embedded sensors that can measure unsteady values of total pressure, local flow velocity and direction. The probe head is designed to have a minimum impact on the flowstream, and the miniature sensors are placed in a cross configuration compared to the probe's support axis.This paper focuses on the utilization of normalized calibration coefficients and their use for unsteady values, and on the justification for using our cross sensor repartition. The calibration setup is presented briefly, including a water potential jet that requires the calculation of specific calibration coefficients.Different phenomena were observed during experimentation. Their impact on the accuracy of the probe is analyzed. The probe's operation range for this particular calibration setup is discussed. Finally, we focus on the influence of the sensors repartition on the tridimensional shape of the calibration coefficients, and we provide a way to calculate the first approximate solution for the reverse calculus while the sensors are not aligned with the probe's arm.
机译:目前,对水力涡轮机的模型进行的流动行为研究是通过实验进行的。可以使用PIV或LDV技术获取数量(例如非稳态速度),使用稳定或非稳态压力传感器获取静态壁压以及使用热膜风速计获取壁面剪应力。然而,获得的稀有流体很少,在流中不同位置的不稳定总压力将提供有关流动力学的更多信息,并且将是为CFD模拟设置边界条件的关键组成部分。以经典的皮托管(Pitot tube)为例,该管只能给出平均压力值,我们开发了一种带有嵌入式传感器的五孔压力探头,该传感器可以测量总压力,局部流速和方向的不稳定值。探头设计成对流动的影响最小,并且与探头的支撑轴相比,微型传感器以交叉配置放置。 本文重点关注归一化校准系数的利用及其对非恒定值的使用,以及使用我们的交叉传感器重新分配的理由。简要介绍了校准设置,包括需要计算特定校准系数的水势喷射。 实验过程中观察到了不同的现象。分析了它们对探头精度的影响。讨论了此特定校准设置的探头操作范围。最后,我们关注传感器重新分配对校准系数的三维形状的影响,并提供一种在传感器未与探头的手臂对齐的情况下计算反向演算的第一近似解的方法。

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