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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Development of a functional relationship between port pressures and flow properties for the calibration and application of multihole probes to highly three-dimensional flows
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Development of a functional relationship between port pressures and flow properties for the calibration and application of multihole probes to highly three-dimensional flows

机译:建立端口压力和流动特性之间的函数关系,以用于多孔探头的校准和在高度三维流动中的应用

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摘要

It is common in the calibration of multihole probes to curve-fit the calibration data in order to determine a relationship between measured port pressures and flow properties. The parameters used in these techniques typically lack a theoretical background. In this article, a functional relationship is developed, based on theoretical considerations, that relates the port pressure directly to the flow properties and details a procedure that enables flow properties to be determined from the measured pressures of the multihole probe. The method is simple, easy to implement and provides a better understanding of the multihole probe operation in a three-dimensional flow. [References: 22]
机译:为了确定测得的端口压力和流量特性之间的关系,在多孔探头的校准中通常会对校准数据进行曲线拟合。这些技术中使用的参数通常缺乏理论背景。在本文中,基于理论上的考虑,建立了一种功能关系,该关系将端口压力直接与流动特性相关联,并详细说明了一种程序,该程序能够根据多孔探头的测得压力确定流动特性。该方法简单,易于实施,并且可以更好地理解三维流中的多孔探针操作。 [参考:22]

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