Абстракт
Purpose. The aim of the paper is to study buoyancy frequency in the Laptev and East Siberian Seas and to assess correlation relations between the intra-year
variability of the Vaisal - Brent frequency maximum and the climatic indices reflecting the atmosphere and hydrosphere state. Methods and Results. Based on the
World Ocean Atlas 2013 for 1955-2012, the features of spatial and temporal variability of the buoyancy frequency distribution and its maximum depth in the Laptev
and East Siberian seas are considered. It is found that the highest values of the Vaisal - Brent frequency are observed in the estuaries of the rivers Lena, Khatanga,
Kolyma and Indigirka in summer where they attain 70-86 cycle/hour. In the deep-water northern areas of the seas under study, the majority of the water area is
covered with ice throughout the whole year. As a consequence the surface layer of water is heated slightly and stability of stratification is much lower. The
buoyancy frequency values in the seasonal pycnocline attain 24-46 cycle/hour. As a result of advection of the transformed Pacific waters in the northern and
southeastern regions of the East Siberian Sea, on the depths 25-55 m observed is the layer of constant pycnocline where the Vaisal - Brent frequency values can mount
to 21 cycles/hour. Correlation analysis is carried out for the relations between the intra-annual variability of the Vaisal - Brent frequency maximum and the climatic
indices (North Atlantic Oscillation, Arctic Oscillation, Pacific Decadal Oscillation, Gulf Stream North Wall) reflecting the atmosphere and hydrosphere state. It is
shown that relationship between the buoyancy frequency maximum and the two latter indices is the most pronounced. Conclusions. The results of the carried out
investigations show that the features of spatial-temporal variability of the buoyancy frequency distribution and its maximum depth in the Laptev and East Siberian
seas are conditioned by the river discharge and also by advection in the Arctic region of the Atlantic and transformed Pacific waters inflowing from the adjacent basins.
Ключевые слова
ARCTIC, LAPTEV SEA, EAST SIBERIAN SEA, BUOYANCY FREQUENCY, WATER STABILITY, WATER VERTICAL STRUCTURE