Internal Tides in the Denmark Strait
Е. Г. Морозов, D. I. Frey, С. В. Гладышев, А. А. Klyuvitkin, А. N. Novigatsky
Abstract
Е. Г. Морозов, D. I. Frey, С. В. Гладышев, А. А. Klyuvitkin, А. N. Novigatsky
Abstract
Abstract Six-day temperature records carried out at the three mooring levels revealed isotherm fluctuations in the Denmark Strait sill in July 2018 caused by internal waves. In addition to the field measurements, fluctuations of isopycnals were estimated on the basis of a numerical model. It was shown that the wave height (vertical displacements of water particles) caused by semidiurnal internal tides are approximately 50 m in the region of the sill crossing the strait. The wave height decreases to 30 m over a distance of 100 km from the sill. The internal waves in the northern part of the strait are more intense than in the southern part because the wave propagates in the opposite direction to the mean current. In the southern part the waves and the current propagate to the south, which increases the wavelength and decreases their amplitudes.
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Abstract Six-day temperature records carried out at the three mooring levels revealed isotherm fluctuations in the Denmark Strait sill in July 2018 caused by internal waves. In addition to the field measurements, fluctuations of isopycnals were estimated on the basis of a numerical model. It was shown that the wave height (vertical displacements of water particles) caused by semidiurnal internal tides are approximately 50 m in the region of the sill crossing the strait. The wave height decreases to 30 m over a distance of 100 km from the sill. The internal waves in the northern part of the strait are more intense than in the southern part because the wave propagates in the opposite direction to the mean current. In the southern part the waves and the current propagate to the south, which increases the wavelength and decreases their amplitudes.
Key concepts: Sill, Geology, Mooring, Amplitude, Internal wave, Current (fluid), Internal tide, Wavelength