论文标题

具有快速傅立叶解调的背景定向的Schlieren技术,用于测量流体的大密度梯度场

Background oriented schlieren technique with fast Fourier demodulation for measuring large density-gradient fields of fluids

论文作者

Shimazaki, Takaaki, Ichihara, Sayaka, Tagawa, Yoshiyuki

论文摘要

为了测量水下冲击波等流体的较大密度梯度场,我们在背景方向的Schlieren(BOS)技术中采用了一种称为快速棋盘解调(FCD)方法的快速傅立叶解调。 BOS是一种基于图像的简单测量技术,它检测由背景前流体的密度梯度引起的背景图像的明显位移(局部失真)。 BOS技术中通常采用的互相关粒子图像速度计(PIV)方法检测明显的位移,使用随机点背景,而FCD则使用周期性模式作为背景(例如,Checkerboard模式,晶格网格模式(GRID SCALE(GRID SCABLE)),以检测显而易见的空间位置。在这项研究中,我们测量了使用FCD和PIV的水下冲击波与流体密度梯度成正比的明显位移。结果表明,FCD可以测量比PIV可以测量的位移梯度的2.5倍。此外,我们通过更改周期性模式(例如网格大小)的几个参数来系统地研究FCD-BOS的测量极限。另外,我们探索了傅立叶空间中的相关参数以了解局限性。值得注意的是,具有晶格网格模式(网格尺度)的FCD-BO可以与定制模式一样准确地测量明显的位移,这表明可以使用具有市售(便宜的)模式的简单设置来测量较大的密度梯度梯度场。

In order to measure the large density-gradient fields of fluids such as underwater shock waves, we employed a fast Fourier demodulation called Fast Checkerboard Demodulation (FCD) method in Background Oriented Schlieren (BOS) technique. BOS is a simple image-based measurement technique that detects the apparent displacement (local distortion) of a background image caused by the density gradient of the fluid in front of the background. The cross-correlation particle image velocimetry (PIV) method, which is commonly employed in the BOS technique for detecting the apparent displacement, uses a random-dot background, whereas FCD uses a periodic pattern as the background (e.g., checkerboard pattern, lattice grid pattern (grid scale)) to detect the apparent displacement as the phase change of the pattern in the Fourier space. In this study, we measured the apparent displacement, which is proportional to density gradient of fluid, of an underwater shock wave using FCD and PIV. The results showed that FCD can measure a displacement gradient of up to 2.5 times larger than that which PIV can measure. Furthermore, we systematically investigated the measurement limit of FCD-BOS by changing several parameters of the periodic patterns, such as the grid size. Also, we explored the related parameters in the Fourier space to understand the limitations. It is worth noting that FCD-BOS with lattice grid pattern (grid scale) can measure the apparent displacement as accurately as that with a custom-made pattern, indicating that large density-gradient fields of fluids can be measured using a simple setup with a commercially available (inexpensive) pattern.

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