新雪对海冰生长和融化的影响

IF 0.7 Q4 GEOSCIENCES, MULTIDISCIPLINARY Led i Sneg-Ice and Snow Pub Date : 2019-03-20 DOI:10.15356/2076-6734-2019-1-103-111
D. Zavyalov, T. Solomakha
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引用次数: 0

摘要

为了再现亚速海东北部冰厚的季节变化特征,采用热力学模型对新雪密度、反照率和热导系数进行了参数化优化。模拟结果相互比较,并与塔甘罗格湾俄罗斯科学院南方科学中心沿海站的观测结果进行了比较。结果表明,冰雪物性和热性参数化方案的微小差异可能导致模拟结果的显著离散。为了评估冰厚季节过程的预报质量,确定了计算冰厚与测量冰厚期间平均值的标准差、标准差、相关系数和预报的验证性。在对这些参数进行分析的基础上,提出了能够充分再现海冰厚度季节热动态的最优雪层参数配置。冬季最接近2010/2011的条件值计算冰层厚度测量的结果在东北部的一部分塔甘罗格湾被确定的密度的依赖获得新鲜的雪在大气的表层温度的算法类,反照率EHAM5雪表面——的方案,和雪的导热系数的公式——N.I. Osokin或m·詹森。
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Influence of new snow on growth and melting of sea ice
Numerical experiments were carried out using the thermodynamic model with the aim to optimize choice of parameterization of the density of fresh snow, its albedo, and thermal conductivity coefficient in order to reproduce the seasonal evolution of ice thickness in the North-Eastern part of the Sea of Azov. The simulation results were compared with each other as well as with the observations obtained at the costal station of the Southern Scientific Center of the Russian Academy of Sciences in the Taganrog Bay. It is shown that small differences in the schemes of parameterization of physical and thermal properties of snow and ice cover may result in significant scatter in the simulation results. To assess the quality of the forecasting of the seasonal course of the ice thickness, the standard deviation of the calculated ice thickness from the average value for the period of measuring ice thickness, the standard deviation, the correlation coefficient, and the verification of the forecast were determined. Based on the analysis of these parameters, the optimal configuration of the snow layer parameters is proposed, which allows adequate reproducing of the seasonal thermal dynamics of the sea ice thickness. For the conditions of winter 2010/2011 the most close values of calculated ice thickness to results of the measurements in the North-Eastern part of the Taganrog Bay were obtained by determining the dependence of the density of fresh snow on the temperature in the near-surface layer of the atmosphere by the algorithm CLASS, albedo of the snow surface - by the scheme EHAM5, and the coefficient of thermal conductivity of snow – by the formulas of N.I. Osokin or M. Janson. 
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来源期刊
Led i Sneg-Ice and Snow
Led i Sneg-Ice and Snow GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
1.50
自引率
42.90%
发文量
11
审稿时长
8 weeks
期刊介绍: The journal was established with the aim of publishing new research results of the Earth cryosphere. Results of works in physics, mechanics, geophysics, and geochemistry of snow and ice are published here together with geographical aspects of the snow-ice phenomena occurrence in their interaction with other components of the environment. The challenge was to discuss the latest results of investigations carried out on Russia’s territory and works performed by Russian investigators together with foreign colleagues. Editorial board works in collaboration with Glaciological Association that is professional community of specialists in glaciology from all republics of the Former Soviet Union which are now new independent states. The journal serves as a platform for the presentation and discussion of new discoveries and results which help to elucidate the state of the Earth’s cryosphere and the characteristics of the evolution of the snow-ice processes and phenomena under the current conditions of rapid climate change.
期刊最新文献
СТОХАСТИЧЕСКОЕ МОДЕЛИРОВАНИЕ ПОЛЕЙ СПЛОЧЁННОСТИ ЛЕДЯНОГО ПОКРОВА ДЛЯ ОЦЕНКИ УСЛОВИЙ ПЛАВАНИЯ ПО ТРАССЕ СЕВЕРНОГО МОРСКОГО ПУТИ ЭВОЛЮЦИЯ ОЗЁР У ЛЕДНИКА ДЖИКИУГАНКЕЗ (СЕВЕРНОЕ ПРИЭЛЬБРУСЬЕ) В 1957-2020 ГГ. С УЧЁТОМ ПОДЗЕМНЫХ КАНАЛОВ СТОКА ВЛИЯНИЕ РЕЖИМА СНЕЖНОГО ПОКРОВА НА АГРОНОМИЧЕСКИЕ РИСКИ РАЗВИТИЯ РОЗОВОЙ СНЕЖНОЙ ПЛЕСЕНИ ВЛИЯНИЕ ЗЕМЛЕТРЯСЕНИЯ 1988 Г. НА ОЛЕДЕНЕНИЕ И РЕЛЬЕФ МАССИВА ЦАМБАГАРАВ (ЗАПАДНАЯ МОНГОЛИЯ) БАЛАНС ЛЬДА В СЕВЕРНОМ ЛЕДОВИТОМ ОКЕАНЕ В 1979-2019 ГГ. (ПО ДАННЫМ МОДЕЛИРОВАНИЯ)
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