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Measurements of light transfer through drift ice and landfast ice in the northern Baltic Sea

机译:通过北部波罗的海的漂移冰和陆地冰的光线测量

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The aim of this study was to investigate the light transfer through sea ice with a focus on bio-optical substances both in fast ice and in the drift ice zones in the northern Baltic Sea. The measurements included snow and ice structure, spectral irradiance and photosynthetically active radiation below the sea ice. We also measured the concentrations of the three main bio-optical substances which are chlorophyll- a , suspended particulate matter, and coloured dissolved organic matter (CDOM). These bio-optical substances were determined for melted ice samples and for the underlying sea water. The present study provides the first spectral light transfer data set for drift ice in the Baltic Sea. We found high CDOM absorption values typical to the Baltic Sea waters also within sea ice. Our results showed that the transmittance through bare ice was lower for the coastal fast ice than for the drift ice sites. Bio-optical substances, in particular CDOM, modified the spectral distribution of light penetrating through the ice cover. Differences in crystal structure and the amount of gas inclusions in the ice caused variation in the light transfer. Snow cover on ice was found to be the dominant factor influencing the light field under ice, confirming previous studies. In conclusion, snow cover dominated the amount of light under the ice, but did not modify its spectral composition. CDOM in the ice absorbs strongly in the short wavelengths. As pure water absorbs most in the long wavelengths, the light transfer through ice was highest in the green (549–585?nm).
机译:本研究的目的是通过海冰来调查光线冰,重点在快速冰和北波罗的海的漂移冰区中的生物光学物质。测量包括雪和冰结构,光谱辐照度和海冰下方的光合作用辐射。我们还测量了叶绿素-A,悬浮颗粒物质和有色溶解有机物(CDOM)的三个主要生物光学物质的浓度。测定这些生物光学物质用于熔化的冰上样品和用于底层海水。本研究提供了用于波罗的海中的漂移冰的第一光谱光传输数据。我们发现海冰中的波罗的海水域典型的高CDom吸收值。我们的研究结果表明,沿海快速冰的透射率越低于漂移冰场。生物光学物质,特别是CDOM,修改了穿过冰盖的光的光谱分布。晶体结构的差异和冰中的气体夹杂物的量导致光学变化。发现冰上的雪覆盖是影响冰下灯田的主导因素,确认以前的研究。总之,雪覆盖着冰下的光量,但没有改变其光谱组成。冰中的CDOM在短波长中强烈吸收。由于纯净在长波长中吸收最大的水,通过冰的光线在绿色中最高(549-585?nm)。

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