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Self-consistent approach to the solution of the light transfer problem for irradiances in marine waters with arbitrary turbidity, depth, and surface illumination. I. Case of absorption and elastic scattering

机译:一种自洽的方法,可以解决任意浑浊度,深度和表面照度的海水中的辐照光传递问题。一,吸收和弹性散射的情况

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A self-consistent variant of the two-flow approximation that takes into account strong anisotropy of light scattering in seawater of finite depth and arbitrary turbidity is presented. To achieve an appropriate accuracy, this approach uses experimental dependencies between downward and total mean cosines. It calculates irradiances, diffuse attenuation coefficients, and diffuse reflectances in waters with arbitrary values of scattering, backscattering, and attenuation coefficients. It also takes into account arbitrary conditions of illumination and reflection from the bottom with the Lambertian albedo. This theory can be used for the calculation of apparent optical properties in both open and coastal oceanic waters, lakes, and rivers. It can also be applied to other types of absorbing and scattering medium such as paints, photographic emulsions, and biological tissues. (C) 1998 Optical Society of America. [References: 41]
机译:提出了一种两流近似的自洽变体,该变体考虑了有限深度和任意浊度的海水中光散射的强各向异性。为了获得适当的精度,此方法使用向下和总平均余弦之间的实验依赖性。它计算具有任意值的散射,反向散射和衰减系数的水域中的辐照度,漫反射衰减系数和漫反射系数。它还考虑了Lambertian反射率对光照和反射的任意条件。该理论可用于计算开放和沿海海洋水域,湖泊和河流中的视光学特性。它也可以应用于其他类型的吸收和散射介质,例如涂料,照相乳剂和生物组织。 (C)1998年美国眼镜学会。 [参考:41]

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