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Extended Calibration Technique of a Four-Hole Probe for Three-Dimensional Flow Measurements

机译:三维流量测量四孔探头的扩展校准技术

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The present paper reports the development and nonnulling calibration technique to calibrate a cantilever type cylindrical four-hole probe of 2.54 mm diameter to measure three-dimensional flows. The probe is calibrated at a probe Reynolds number of 9525. The probe operative angular range is extended using a zonal method by dividing into three zones, namely, center, left, and right zone. Different calibration coefficients are defined for each zone. The attainable angular range achieved using the zonal method is ±60 degrees in the yaw plane and -50 to +30 degrees in the pitch plane. Sensitivity analysis of all the four calibration coefficients shows that probe pitch sensitivity is lower than the yaw sensitivity in the center zone, and extended left and right zones have lower sensitivity than the center zone. In addition, errors due to the data reduction program for the probe are presented. The errors are found to be reasonably small in all the three zones. However, the errors in the extended left and right zones have slightly larger magnitudes compared to those in the center zone.
机译:本文报告了开发和非校准校准技术校准了2.54 mm直径为2.54毫米的悬臂式圆柱形四孔探头以测量三维流动。在探针雷诺数9525的探针校准探针。通过将三个区域划分为三个区域,即中心,左和右区域来延长探针操作角度范围。为每个区域定义不同的校准系数。使用区域方法实现的可达到的角度范围是横摆平面中的±60度,间距平面-50至+30度。所有四个校准系数的敏感性分析表明,探针间距灵敏度低于中心区域中的横摆灵敏度,延伸左右区域的灵敏度低于中心区。此外,还提出了由于探针数据减少程序而导致的错误。在所有三个区域中发现错误是合理的。然而,与中心区域中的那些相比,延伸左和右区域的误差具有略大的大小。

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