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Fabrication and calibration of a sub-miniature 5-hole probe with embedded pressure sensors for use in extremely confined and complex flow areas in turbomachinery research facilities

机译:具有嵌入式压力传感器的超小型5孔探头的制造和校准,用于涡轮机械研究设施中极为狭窄和复杂的流动区域

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摘要

Multi-hole pressure probes are often employed in experimental facilities to measure the three dimensional flow field due to their ability to simultaneously provide the distributions of the static and total pressures as well as the three components of the velocity vectors. In cases where these probes are employed in turbomachinery research facilities it is essential for them to be accurate, respond to local parameter disturbances quickly and exhibit a high flow angle spatial sensitivity. Thus, the physical dimensions of the probe must be as small as possible. In addition the small size of the probe reduces the flow blockage and the corresponding local disturbances of the flow, especially when it approaches the solid boundaries of the blade channels. The present study refers to the fabrication and calibration of a sub-miniature in dimensions 5-hole probe, for use in complex internal flow areas arising in turbo-machinery research. In order to reduce the need for a longer sampling time as the size of the probe gets smaller, the length of the stem that transfers the pressure from the tip of the probe to the sensor has to be minimized. This effect was compensated by embedding the pressure sensors right at the end of the probe's stem. This minimizes the air volume and thus the oscillations inside the flexible connecting tubes that usually connect each port of the probe to its corresponding pressure sensor. The fabrication methodology of the probe and data acquisition system is extensively described, as well as the non-nulling method employed for the calibration. Furthermore, application of the probe on a reference configuration geometry often used in turbomachinery research is illustrated in order to validate the effectiveness and novel characteristics of the probe. The result is a construction and calibration technique that allows the relevant laboratories to build on their own such instruments that may cost several thousand dollars (or euros) when bought from the open market.
机译:由于多孔压力探头能够同时提供静态压力和总压力的分布以及速度矢量的三个分量,因此通常在实验设备中用于测量三维流场。在涡轮机械研究设施中使用这些探头的情况下,准确,对局部参数扰动做出快速响应并表现出较高的流角空间灵敏度至关重要。因此,探针的物理尺寸必须尽可能小。另外,探针的小尺寸减少了流动阻塞和相应的流动局部干扰,尤其是当它接近叶片通道的实心边界时。本研究指的是超小型5孔探头的制造和校准,用于在涡轮机械研究中出现的复杂内部流动区域中使用。为了减少随着探头尺寸变小而需要更长的采样时间的问题,必须将将压力从探头尖端传递到传感器的杆的长度最小化。通过将压力传感器嵌入探头杆的末端来补偿这种影响。这样可以最大程度地减少空气量,从而最大程度地减少柔性连接管内部的振荡,这些连接管通常将探头的每个端口连接至其相应的压力传感器。详细介绍了探针和数据采集系统的制造方法,以及用于校准的非调零方法。此外,说明了将探针应用于涡轮机械研究中经常使用的参考配置几何形状,以验证探针的有效性和新颖性。结果是一种构造和校准技术,该技术允许相关实验室自行建造这种仪器,而这些仪器在公开市场上购买时可能要花费数千美元(或欧元)。

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