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A. Yu. Lazaryuk

Researcher at Russian Academy of Sciences

Publications -  7
Citations -  12

A. Yu. Lazaryuk is an academic researcher from Russian Academy of Sciences. The author has contributed to research in topics: Boundary layer & Sea ice. The author has an hindex of 1, co-authored 7 publications receiving 3 citations.

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Vertical Distribution of Brine and Volume Structure of Thin Annual Ice in Amursky Bay Based on the Methods of Nuclear Magnetic Resonance and Magnetic Resonance Imaging

TL;DR: In this article, the spatial distribution of the liquid and solid phases in the pores of first-year sea ice in Amursky Bay was studied using the method of nuclear magnetic resonance and magnetic resonance imaging in the period from 2013 to 2016.
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The results of hydrometeorological measurements by the wavescan buoy system on the southwestern shelf of the peter the great bay in 2016

TL;DR: For the first time, the long-term measurements of meteorological and oceanographic characteristics were measured using the anchored autonomous complex of the WaveScan buoy on the Southwestern shelf of the Peter the Great Bay (Japan Sea) from 21 April to 23 December 2016 as discussed by the authors.
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Vertical distribution of brine and volume structure thin one year ice Amur bay on base NMR and MRT dates

TL;DR: In this article, the distribution of liquid and solid phases in one year sea ice on Amur Bay with using NMR and MRT methods in period 2013-2016 was studied, and the main features of spatial phase dictribution in thin ice in comparision Arctic ice were presented.
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Response functions of the temperature and conductivity sensors of CTD profilers

TL;DR: In this paper, the effect of the boundary layer of the fluid on the response time of the temperature and electric conductivity sensors of a CTD profiler at its motion in a water medium is discussed.
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Avhrr imagery in the study of coastal upwellings

TL;DR: In this article, a technology for processing AVHRR/NOAA multispectral data for supporting local oceanographic monitoring is described, and an algorithm is proposed for mapping the field of surface currents.