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Investigation of Ice and Water Properties and Under-ice Light Fields in Fresh and Brackish Water Bodies

机译:淡咸水水体中冰水性质和冰底光场的研究

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Light transmission through ice and light conditions beneath ice have been investigated in the mild winter of the year 2000 in eight Estonian lakes and in one brackish water basin, Santala Bay in the Gulf of Finland. A new system designed for optical measurements beneath the ice was successfully tested. In the water body the vertical profiles of photosynthetically active radiation (PAR), temperature and oxygen were mapped. The concentrations of optically active substances (dissolved organic matter, chlorophyll a, particles) were estimated for water samples and meltwater of ice samples. The PAR band albedo was 0.28-0.76 and transmittance was 1-52% for the ice/snow cover. The light field below ice was much more diffuse than in open water conditions. Euphotic depth was 0.1-5.5 m. The amount of yellow substance in lake ice is very small in comparison with the lake water; lake ice may contain a lot of particles, but their source is atmospheric fallout rather than the water body. In some lakes a depletion of oxygen was observed. There were considerable differences between the fresh and brackish water ice (structure, stratigraphy, amount of impurities), which influenced the underwater light field.
机译:在2000年的温和冬季,已经研究了在八个爱沙尼亚湖泊和一个微咸水盆(芬兰湾的桑塔拉湾)中通过冰的透光和冰下的光线条件。设计用于冰下光学测量的新系统已成功测试。在水体中,绘制了光合有效辐射(PAR),温度和氧气的垂直剖面图。估计水样品和冰样品的融水中旋光物质(溶解的有机物,叶绿素a,颗粒)的浓度。冰/雪盖的PAR带反照率为0.28-0.76,透射率为1-52%。冰下的光场比在开阔水域的情况下散布得多。共生深度为0.1-5.5 m。与湖水相比,湖冰中黄色物质的量非常少;湖冰可能含有很多颗粒,但是它们的来源是大气尘埃而不是水体。在一些湖泊中,观察到氧气耗尽。淡水和微咸水冰之间存在相当大的差异(结构,地层,杂质含量),这影响了水下光场。

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