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Development of a numerical model of sea ice for biogeochemical studies. Part 1: Sea-ice thermodynamics

机译:开发用于生物地球化学研究的海冰数值模型。第1部分:海冰热力学

摘要

A fully prognostic 1-D thermodynamic model, functional for studies of sea-ice biogeochemistry is developed to better understand the physical processes and the interactions between the environment and the sea-ice ecosystem. The physical model is capable of simulating seasonal changes of snow and ice thickness. Particular attention is paid to reproduce the snow-ice and the superimposed ice formation which play important roles in the dynamics of sea ice algae. The assessment of the model capabilities is done in 1979--1993 at four different stations in the Baltic Sea. A sensitivity analysis stresses the importance of adequate surface forcing functions to properly simulate the onset of sea ice. Our results show that thickness of the ice layers and timing of the melting are in good agreement with the observed data and confirm that one of the key variables in modelling sea-ice thermodynamics is the snow layer and its metamorphism.
机译:开发了一种完全可预测的一维热力学模型,可用于研究海冰生物地球化学,以更好地了解物理过程以及环境与海冰生态系统之间的相互作用。物理模型能够模拟雪和冰厚度的季节性变化。要特别注意复制在冰海藻动力学中起重要作用的冰雪和叠加的冰层。对模型能力的评估是在1979--1993年在波罗的海的四个不同站点进行的。敏感性分析强调了足够的表面强迫功能以正确模拟海冰发作的重要性。我们的结果表明,冰层的厚度和融化的时间与观测到的数据非常吻合,并证实了模拟海冰热力学的关键变量之一是雪层及其变质作用。

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