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VISUALIZATION OF MUZZLE FLOW AND PROJECTILE IN FLIGHT FLOW USING THE BACKGROUND ORIENTED SCHLIEREN TECHNIQUE

机译:使用背景定向谢列伦技术对飞行中的射流和射流进行可视化

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The present paper focuses on the development of a non-intrusive measurement technique and the implementation of a quantitative flow visualization method based on Background Oriented Schlieren (BOS). The gun muzzle flow, the aerodynamics, and the ambient air-projectile interaction are visualized. In BOS, the experimental set-up of conventional Schlieren (mirrors, lenses, and knife-edge) is replaced by a background pattern and a single digital camera The proposed measurement technique and the implemented algorithm are first validated through the temperature measurement of a flame-induced distorted flow field. An acceptable accuracy is recorded, the measurement error being less than 3-5% of the full scale. Second, the muzzle flow and the flow field around a 5.56 mm projectile in free flight was captured and analyzed. The captured structures such as vortex, barrel shock, Mach disk, and blast wave show a good agreement with those issued from the conventional Schlieren set-up.
机译:本文着重研究了一种非介入式测量技术的发展以及基于背景导向的Schlieren(BOS)的定量流可视化方法的实现。枪口流量,空气动力学和周围空气弹丸的相互作用都可以看到。在BOS中,传统的Schlieren(镜面,镜片和刀口)的实验装置被背景图案和单个数码相机取代。所提出的测量技术和所实现的算法首先通过火焰的温度测量得到验证引起的扭曲流场。记录可接受的精度,测量误差小于满量程的3-5%。其次,捕获并分析了枪口流和自由飞行中5.56 mm弹丸周围的流场。捕获的结构,例如涡流,桶形冲击,马赫盘和爆炸波,与常规Schlieren装置发出的结构显示出良好的一致性。

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