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Meteoric ice contribution and influence of weather on landfast ice growth in the Gulf of Finland, Baltic Sea

机译:波罗的海芬兰湾流冰的贡献和天气对陆地冰生长的影响

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The stable oxygen isotopic composition (delta O-18), texture and stratigraphy of landfast ice in Santala Bay, Gulf of 1 inland, were studied annually from 1999 to 2009. Apart from one year when there was no ice, maximum ice thickness ranged from 0.22 to 0.60 m. Maximum ice thickness was determined primarily by average air temperature, and a simple accumulated freezing-degree-day-ice-thickness model explained 86% of ice-thickness variance. The total ice thickness each winter was dominated by columnar ice and intermediate granular/columnar ice formed at the base of the ice cover. Meteoric ice (snow ice and superimposed ice) accumulated at the top of the ice cover each winter and constituted 4-39% of the total ice thickness (ice mass). Snow ice formed in seven of the ten winters; superimposed ice formed in only three winters. The snow fraction in the meteoric ice contributed 1-30% annually of the total ice mass, with an average of 8.8%.
机译:从1999年至2009年,每年对内陆1个海湾的桑塔拉湾的稳定氧同位素组成(δO-18),陆冰的质地和地层进行研究。除无冰的一年外,最大冰厚度范围为0.22至0.60 m最大冰厚度主要由平均气温确定,简单的累积冰点日冰厚度模型解释了86%的冰厚度变化。每年冬季的总冰层厚度主要由柱状冰和在冰盖底部形成的中间颗粒/柱状冰组成。每年冬天,流冰(积雪和叠层冰)积聚在冰盖的顶部,占冰总厚度(冰质量)的4-39%。十个冬天中的七个冬天形成了冰雪。仅仅三个冬天就形成了叠加的冰。流冰中的积雪比例每年占总冰量的1-30%,平均为8.8%。

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