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Comparison of near-forward light scattering on oceanic turbulence and particles

机译:海洋湍流和粒子近前光散射的比较

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摘要

We examine and compare near-forward light scattering that is caused by turbulence and typical particulate assemblages in the ocean. The near-forward scattering by particles was calculated using Mie theory for homogeneous spheres and particle size distributions representative of natural assemblages in the ocean. Direct numerical simulations of a passive scalar with Prandtl number 7 mixed by homogeneous turbulence were used to represent temperature fluctuations and resulting inhomogeneities in the refractive index of water. Light scattering on the simulated turbulent flow was calculated using the geometrical-optics approximation. We found that the smallest temperature scales contribute the most to scattering, and that scattering on turbulence typically dominates over scattering on particles for small angles as large as 0.1 degrees. The scattering angle deviation that is due to turbulence for a light beam propagating over a 0.25-m path length in the oceanic water can be as large as 0.1 degrees. In addition, we carried out a preliminary laboratory experiment that illustrates the differences in the near-forward scattering on refractive-index inhomogeneities and particles. (C) 1998 Optical Society of America. [References: 39]
机译:我们检查并比较了由湍流和海洋中典型的微粒集合引起的近前光散射。使用米(Mie)理论对均匀球体和代表海洋自然集合的粒径分布进行了计算,从而得出了粒子的近前散射。普朗特数为7的无源标量与均匀湍流混合的直接数值模拟用于表示温度波动和水折射率的不均匀性。使用几何光学近似来计算模拟湍流上的光散射。我们发现,最小的温度标度对散射的影响最大,湍流的散射通常比小角度(最大为0.1度)的粒子散射更占优势。由于在海洋水中在0.25 m的光程长度上传播的光束的湍流引起的散射角偏差可能高达0.1度。此外,我们进行了初步的实验室实验,该实验说明了折射率不均匀性和颗粒在近前散射方面的差异。 (C)1998年美国眼镜学会。 [参考:39]

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