Abstract

The isotopic composition of oxygen of the snow-and-firn and snow thickness on the Eastern peak of Elbrus had been studied. In 2006-2008, a number of snow samples were taken in the near-peak area of Elbrus to analyze the isotopic composition of them. The drilling was performed at the crater of the Eastern peak in 2006 (64 samples) while in 2017 the samples were taken from snow pit (25 samples). Another core to a depth of 23.8 m was extracted at the Western Plateau (118 samples) for the purpose to compare local 5 18 О values with samples from the Eastern peak. The δ 18 О values in the snow-and-firn thickness from the crater of the Eastern peak vary from -6.8 to -19.41 %o with the average value of -12.61 %o. It was revealed that snow layers with extremely low values of δ 18 О (down to -30 %) found on the eastern slope were absent on the western plateau. The loss of part of the annual isotope precipitation signal due to the winter extra light horizons could be caused by two reasons: wind drift of the freshly deposited snow, as well as the absence of part of the winter snowfalls with isotope-light precipitation at altitudes higher 5300 m. Seasonal variations of δ 18 О values, equal to 12 % and found in the snow-and-firn thickness on the Eastern peak, indicate that formation of the isotopic characteristics of snow is determined here by the equilibrium Rayleigh condensation and this is associated with the annual amplitude of the air temperature by a coefficient of 0.6 %o/°C. In the isotopic record obtained on the Western plateau of Elbrus, the relationship of values δ 18 О with the condensation temperature may be disturbed due to the frequent change of the main moisture-bearing air masses. This leads to significantly different δ 18 О values in precipitation at the same temperatures (the connection of seasonal δ 18 О values with the annual amplitude of air temperature varies from 0.3 to 1.12 % о /° С ).

Highlights

  • a number of snow samples were taken in the near-peak area of Elbrus to analyze the isotopic composition

  • of them. The drilling was performed at the crater of the Eastern peak

  • while in 2017 the samples were taken from snow pit

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Summary

Ледники и ледниковые покровы

Установлены сезонные вариации значений δ18О в снежно-фирновой толще на Восточной вершине Эльбруса от −6,8 до −19,41 ‰ при среднем значении −12,61 ‰. Буре ние ледников в высокогорной части Эльбру са [2, 3] показало, что в изотопной записи по глубокому керну с Западного плато Эльбруса При интерпретации изотопных записей по ледниковым кернам, как и по ледниковому льду в целом, одна из важных задач – установление ис ходного изотопного сигнала осадков. В настоящей работе исследуется изотоп ный состав кислорода и водорода снега и фирна из наиболее высокой зоны оледенения Эльбруса и полученные характеристики сопоставляются с полученными ранее на Западном плато

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