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Three-dimensional optical tomographic imaging of supersonic jets through inversion of phase data obtained through the transport-of-intensity equation

机译:通过强度传输方程获得的相位数据反演对超音速喷射器进行三维光学层析成像

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摘要

We report experimental results of quantitative imaging in supersonic circular jets by using a monochromatic light probe. An expanding cone of light interrogates a three-dimensional volume of a supersonic steady-state flow from a circular jet. The distortion caused to the spherical wave by the presence of the jet is determined through our measuring normal intensity transport. A cone-beam tomographic algorithm is used to invert wave-front distortion to changes in refractive index introduced by the flow. The refractive index is converted into density whose cross sections reveal shock and other characteristics of the flow.
机译:我们报告了通过使用单色光探头在超声速圆形射流中定量成像的实验结果。不断扩大的光锥询问来自圆形射流的超音速稳态流的三维体积。射流的存在对球面波造成的失真是通过我们测量的正常强度传输来确定的。锥束层析成像算法用于将波前畸变反转为流动引入的折射率变化。折射率被转换为密度,其横截面显示出冲击和流动的其他特征。

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