首页> 外文会议>Congress of the International Council of the Aeronautical Sciences >QUANTITATIVE 3D DENSITY MEASURMENT OF SUPERSONIC FLOW BY COLORED GRID BACKGROUND ORIENTED SCHLIEREN (CGBOS) TECHNIQUE
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QUANTITATIVE 3D DENSITY MEASURMENT OF SUPERSONIC FLOW BY COLORED GRID BACKGROUND ORIENTED SCHLIEREN (CGBOS) TECHNIQUE

机译:彩色网格背景面向超声波流量的定量3D密度测量Schlieren(BOS)技术

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The background oriented schlieren (BOS) technique is one of the visualization techniques that enable the quantitative measurement of density information in the flow field with very simple experimental setup. The principle of BOS is similar to conventional Schlieren technique, it exploit the bending of light caused by refractive index change corresponding to density change in the medium and both techniques are sensible to density gradient. In this report we propose the Colored Grid Background Oriented Schlieren (CGBOS) technique. The experiments were carried out in the 0.6 m x 0.6 m test section of supersonic wind tunnel at JAXA-ISAS. A colored grid pattern was used as background image and density gradient in vertical and horizontal direction was obtained. Computed tomographic reconstruction of 3D density information of supersonic flow field around asymmetric body from multi-directional CGBOS images is examined.
机译:背景面向的Schlieren(BOS)技术是可视化技术之一,其能够通过非常简单的实验设置使流场中的密度信息进行定量测量。 BOS的原理类似于传统的Schlieren技术,它利用对应于介质中的密度变化的折射率变化引起的光的弯曲,并且两种技术对密度梯度是明智的。在本报告中,我们提出了彩色网格背景导向的Schlieren(CGBOS)技术。在Jaxa-Isas的超声波风隧道的0.6M×0.6M试验部分中进行了实验。使用彩色网格图案作为背景图像,获得垂直和水平方向上的密度梯度。检查了来自多向CGBOS图像的非对称体周围的超声波流场的3D密度信息的计算断层重建。

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