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Influence of bubbles on scattering of light in the ocean

机译:气泡对海洋中光散射的影响

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The scattering and backscattering properties of bubble populations in the upper ocean are estimated with Mie theory and a generalized bubble size spectrum based on in situ observations. Optical properties of both clean bubbles and bubbles coated with an organic film are analyzed; the results are compared with the corresponding optical properties of micro-organisms of similar size. Given a bubble number density (from similar to 10(5) to similar to 10(7) m(-3)) frequently found at sea, the bubble populations significantly influence the scattering process in the ocean, especially in oligotrophic waters. Bubbles appear to make a large contribution to the missing terms in constructing the observed total backscattering coefficient of the ocean. This contribution to backscattering is strongly enhanced if the bubbles are coated with organic film. The injection of bubbles will shift ocean color toward the green, resembling phytoplankton blooms, and hence introducing error in ocean color remote sensing if its effect is not corrected. (C) 1998 Optical Society of America. [References: 61]
机译:利用Mie理论和基于原位观测的广义气泡尺寸谱,估算了上层海洋中气泡种群的散射和反向散射特性。分析了清洁气泡和涂有有机膜的气泡的光学性能;将结果与相似大小的微生物的相应光学特性进行比较。给定在海上经常发现的气泡数密度(从类似于10(5)到类似于10(7)m(-3)),气泡种群会显着影响海洋中的散射过程,特别是在贫营养水域。在构造观测到的海洋总反向散射系数时,气泡似乎对缺失项做出了很大贡献。如果气泡被有机膜覆盖,则对反向散射的贡献将大大增强。气泡的注入会将海洋的颜色移向绿色,类似于浮游植物的花朵,因此如果不纠正其影响,则会在海洋颜色遥感中引入误差。 (C)1998年美国眼镜学会。 [参考:61]

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