Diagnostics by electron beam fluorescence in hypersonics

A. Mohamed, T. Pot, B. Chanetz
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引用次数: 19

Abstract

Electron beam fluorescence is a well established technique to perform local and non intrusive measurements of density, vibrational and rotational temperatures and velocity in a low density flow of nitrogen or air (/spl les/10/sup 16/ molecules.cm/sup -3/). This paper describes two recent applications (flow visualization and velocimetry) in low density hypersonic wind tunnels using a multi-purpose electron gun. Flow visualization, obtained by sweeping the electron beam to illuminate a sheet in the flow, is useful to follow density variations and expose shock waves. It is here applied to study interferences between shock waves issued from two models placed in a Mach 10 flow. Velocity measurements have also been carried out by using a pulsed electron beam to tag a flow with afterglowing plasma columns for optical time of flight detection.
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电子束荧光在高超声速中的诊断
电子束荧光是一种成熟的技术,可以在低密度的氮气或空气(/spl les/10/sup 16/分子)流中进行局部和非侵入性的密度、振动和旋转温度和速度测量。厘米/一口3 /)。本文介绍了多用途电子枪在低密度高超声速风洞中的两种最新应用(流动显示和速度测量)。流动可视化是通过扫描电子束来照亮流动中的薄片而获得的,它有助于跟踪密度变化和暴露激波。这里应用它来研究两个模型在马赫数为10的气流中发出的激波之间的干扰。速度测量也已通过使用脉冲电子束标记流与后发等离子体柱光学飞行时间检测。
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