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Computerized background-oriented schlieren

机译:电脑化背景纹饰

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摘要

A schlieren measurement technique based on computer evaluation of image variations due to refractive index variations in the propagation medium is presented; in what follows, this concept is referred to as the "background-oriented schlieren" (BOS) method. The differences between BOS and other optical techniques for refractive index measurement are the governing role of numerical methods, the extremely small amount of optical equipment, the high accuracy, the bidirectional sensitivity, the fast evaluation, and the missing field limitations. The principle of the method is the numerical comparison of a schlieren distorted and an undistorted image of a deliberate background. The method has become usable in practice owing to the immense progress in computing power and to newly developed fast-correlation algorithms. The extension of this method to space resolving techniques is possible. Some experimental studies show the applicability. Examples are a mixing turbulent jet, a supersonic jet, a shed vortex, and the sound wave of a gun shot. These few results underline the encouraging prospect for the future applicability of this technique. The BOS method offers not only the possibility of qualitative and quantitative schlieren investigations but also has the potential to determine density fields by integration of the measured gradient fields. [References: 11]
机译:提出了一种基于计算机评估由于传播介质中的折射率变化而引起的图像变化的schlieren测量技术;在下文中,该概念被称为“面向背景的纹影”(BOS)方法。 BOS与其他用于折射率测量的光学技术之间的差异是数值方法的主导作用,光学设备的数量极少,精度高,双向灵敏度高,评估速度快以及缺少场限制。该方法的原理是对故意背景的畸形畸变图像和未畸变图像进行数值比较。由于计算能力的巨大进步和新开发的快速相关算法,该方法已在实践中可用。可以将此方法扩展到空间解析技术。一些实验研究证明了其适用性。示例包括混合湍流射流,超音速射流,脱落涡流和枪击声波。这些很少的结果强调了该技术未来适用性的令人鼓舞的前景。 BOS方法不仅提供了定性和定量刻痕研究的可能性,而且还具有通过积分测得的梯度场来确定密度场的潜力。 [参考:11]

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