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首页> 外文期刊>AIAA Journal >APPLICATION OF PARTICLE IMAGE VELOCIMETRY TO A SMALL-SCALE DE LAVAL NOZZLE
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APPLICATION OF PARTICLE IMAGE VELOCIMETRY TO A SMALL-SCALE DE LAVAL NOZZLE

机译:颗粒图像测速技术在小规模德拉瓦喷嘴中的应用

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摘要

The application of particle image velocimetry(PIV) to a Mach 1.4 de Lavel expansion nozzle is described. Velocity measurements are taken inside and outside the nozzle and are compared to schllieren data. The PIV technique is shown to resolve a normal shock inside the nozzle and underexpanded shock cell structures outside the nozzle in the open jet with a maximum spatial resolution of 0.54 mm, which is higher than has previously been achieved. A Reynolds-averaged computational fluid dynamics(CFD) simulation is also described and used to provide a priori data for a PIV optimization method preciously published by the authors. The instantaneous PIV measurement of the steady normal shock, inside the nozzle, is shown to achieve reasonalbe agreement with the CFD prediction within experimental limits. Problems encountered at the recording stage with respect to seeding contamination of the viewing area are also highlighted, and a solution using an altermative seeding method is described.
机译:描述了将粒子图像测速仪(PIV)应用于1.4马赫拉弗膨胀喷嘴的应用。在喷嘴的内部和外部进行速度测量,并将其与schllieren数据进行比较。所示的PIV技术可解决开放式射流中喷嘴内部的正常冲击和喷嘴外部的膨胀不足的冲击腔结构,其最大空间分辨率为0.54 mm,这比以前实现的更高。还描述了雷诺平均计算流体动力学(CFD)模拟,并用于为作者珍贵出版的PIV优化方法提供先验数据。喷嘴内稳定法向冲击的瞬时PIV测量显示在实验范围内与CFD预测达到了合理的一致性。还强调了在记录阶段关于观看区域的播种污染所遇到的问题,并且描述了使用交替播种方法的解决方案。

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