Estimation of the surface ablation and mass balance of Eustre Grønfjordbreen (Spitsbergen)

IF 0.7 Q4 GEOSCIENCES, MULTIDISCIPLINARY Led i Sneg-Ice and Snow Pub Date : 2019-03-20 DOI:10.15356/2076-6734-2019-1-59-66
Р. А. Чернов, А. В. Кудиков, Т. В. Вшивцева, Н. И. Осокин
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引用次数: 5

Abstract

Due to climatic changes in Spitsbergen the glaciation of the Nordenskjold Land (West Spitsbergen) has significantly degraded over the past 100 years. Changes in glaciers are undoubtedly associated with intensive melting caused by a rise of summer air temperatures. Based on the results of field measurements of ablation on the East Grenford glacier, data on the ice reduction were obtained since 2004. Analysis of the results showed that magnitude of the surface ablation is in a good agreement with the values calculated by the Krenke–Hodakov formula, in which the argument is the average summer air temperature. The parabolic dependence of the Krenke-Hodakov formula with the exponent of 3.25 presented the best approximation to the field measurements for all high-altitude zones of the glacier with a correlation coefficient of 0.96. The calculated values of ablation of ice and snow were used to estimate the mass balance of the East Grenford glacier since 2004. The calculations were based on the following: measured values of jump in temperature at the boundary of the glacier, averaged values of the air temperature gradient, and averaged data on snow storage on the glacier. Data on the mass balance of the glacier is indicative of its shortening during the last decade, despite the interannual variations. In 2016, the glacier mass balance reached the lowest value equal to −1990 mm, the calculated value was equal to −1960 mm. Analysis of the data demonstrated that the average summer air temperature is the major factor affecting the glacier mass balance. These results may be useful for estimating  melting and mass balance of a number of mountain glaciers of the Nordenskjold Land. 
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斯匹次卑尔根群岛Eustre Grønfjordbreen的表面消融和物质平衡估算
由于斯匹次卑尔根的气候变化,Nordenskjold Land(西斯匹次卑尔根)的冰川在过去的100年里显著退化。冰川的变化无疑与夏季气温升高引起的冰川剧烈融化有关。基于对东格伦福德冰川消融的实地测量结果,获得了自2004年以来冰量减少的数据。分析结果表明,地表烧蚀量与以夏季平均气温为参数的Krenke-Hodakov公式计算值吻合较好。Krenke-Hodakov公式的抛物线相关性为3.25,其相关系数为0.96,与冰川所有高海拔地区的野外测量结果最接近。利用计算得到的冰雪消融值估算了2004年以来东格伦福德冰川的物质平衡。计算的依据是:冰川边界温度跳变的实测值、气温梯度的平均值、冰川积雪量的平均值。关于冰川质量平衡的数据表明,尽管存在年际变化,但冰川在过去十年中缩短了。2016年冰川物质平衡达到最低值= - 1990 mm,计算值= - 1960 mm。数据分析表明,夏季平均气温是影响冰川物质平衡的主要因素。这些结果可能有助于估计北登斯克罗德地一些山地冰川的融化和物质平衡。
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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.
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