黑海最东部的海洋天气预报

D. Demetrashvili, V. Kukhalashvili, D. Kvaratskhelia, A. Surmava
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引用次数: 0

摘要

由于沿海和大陆架地区的人为负荷很高,对海洋的各种人为和自然物质的动态过程和分布进行建模和预测具有极大的意义。本文的目的是利用黑海动力学的高分辨率区域模型,介绍一些动态场的建模和短期预测的例子-黑海最东部覆盖黑海格鲁吉亚部分和邻近水域的水流,温度和盐度。z级区域模型基于一个完整的海洋水热力学方程系统,并嵌套在塞瓦斯托波尔海洋水物理研究所黑海动力学的盆地尺度模型中。为了求解模型方程组,采用了一种基于分裂法的数值算法。计算结果表明,黑海最东端海域的环流过程具有不同环流模式的永久交替特征,全年中尺度和亚中尺度涡旋的形成对温盐场的形成有显著影响;大气风强迫不仅决定了海面水平环流的特性,也决定了海流场的垂直结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MARINE FORECAST FOR THE EASTERNMOST PART OF THE BLACK SEA
Modelling and forecasting of dynamic processes and distribution of various substances of anthropogenic and natural origin in coastal and shelf zones of the seas and oceans are of great interest due to the high anthropogenic load of these zones. The aim of this paper is to present some examples of modelling and short-term forecasting of dynamic fields – the current, temperature and salinity in the easternmost Black Sea covering Georgian sector of the Black Sea and adjacent water area using a high-resolution regional model of the Black Sea dynamics. The z-level regional model is based on a full system of ocean hydro-thermodynamics equations and is nested in the basin-scale model of the Black Sea dynamics of Marine Hydrophysical Institute (Sevastopol). To solve the model equation system, a numerical algorithm based on the splitting method is used. Calculations show that circulation processes in the easternmost water area of the Black Sea are characterized by a permanent alternation of different circulation modes with the formation of mesoscale and submesoscale eddies throughout the year, which significantly affect the formation of thermohaline fields; atmospheric wind forcing substantially determines not only the peculiarities of the sea surface horizontal circulation, also the vertical structure of the current field.
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