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Micron size particle image velocimetry by fast Fourier transform

机译:微米尺寸粒子图像速度快速傅里叶变换

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In this paper, a non-intrusive, unique optical measurement technique of seeding polystyrene granular beads image velocimetry has been described. The flows of seeded particles are illuminated by laser light and double frame-single exposure images are captured at a specified interval of time. Images are segmented into sub interrogation domain and cross correlation of images are evaluated by Fast Fourier Transform method. From the captured images, particle displacement is calculated and then magnitude of the velocity of micron size seeds in the plane is estimated. This technique is most suitable for high density concentration of seeded particles. Laser speckle velocimetry has wide range of pulse separation time and reduction of noise in the estimation of fluid velocity without directional ambiguity.
机译:本文已经描述了播种聚苯乙烯粒状珠子图像速度的非侵入式,独特的光学测量技术。种子颗粒的流量被激光照射,并在指定的时间间隔内捕获双框架单曝光图像。图像被分段为子询问域,并通过快速傅里叶变换方法评估图像的互相关。从捕获的图像中,计算粒子位移,然后估计平面中微米尺寸种子的速度的大小。该技术最适合于高密度浓度的种子颗粒。激光散斑速度范围内具有宽范围的脉冲分离时间和噪声减少,估计流体速度而没有定向模糊。

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