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MEASUREMENT OF LARGE FLOW ANGLES WITH NON-NULLING MULTI-HOLE PRESSURE PROBES

机译:非空多孔压力问题的大流动角测量

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In complex flow fields, the steady-state, three-dimensional attributes can be measured intrusively using a multi-hole pressure probe. These probes are built to be as small as possible to minimize flow disturbance, but the small size makes them susceptible to both manufacturing tolerances and fouling. As such, each probe must be calibrated on a regular basis and care must be taken to ensure that the geometry is not disturbed. The probes are operated in either "nulling" or "non-nulling" modes, the latter being the simpler of the two in terms of experimental setup and mechanical fixturing. This has made non-nulling mode the preferred choice for many years; however, non-nulling mode necessitates complete three-dimensional calibration data. Sector-based calibration strategies have become nearly universal, although improvement efforts continue. This paper presents a new calibration and data analysis strategy that gives shorter calibration times and more robust data reduction.
机译:在复杂的流场中,可以使用多孔压力探头侵入性地测量稳态三维属性。这些探针的尺寸应尽可能小,以最大程度地减少流量干扰,但是小尺寸的探针容易受到制造公差和结垢的影响。因此,必须定期校准每个探针,并且必须小心以确保不会干扰几何形状。探针以“清零”或“非清零”模式操作,就实验设置和机械固定而言,后者是两者中较简单的一种。多年来,这使非清零模式成为首选。但是,非零模式需要完整的三维校准数据。尽管改进工作仍在继续,但基于行业的校准策略已变得几乎普遍。本文提出了一种新的校准和数据分析策略,该策略可缩短校准时间并减少数据的损失。

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