Standard

Evaluation factors of horizontal turbulent exchange in the White Sea according to flow measurement. / Zhegulin, G. V.; Zimin, A. V.

In: Fundamentalnaya i Prikladnaya Gidrofizika, Vol. 10, No. 1, 01.01.2017, p. 17-30.

Research output: Contribution to journalArticlepeer-review

Harvard

APA

Vancouver

Author

Zhegulin, G. V. ; Zimin, A. V. / Evaluation factors of horizontal turbulent exchange in the White Sea according to flow measurement. In: Fundamentalnaya i Prikladnaya Gidrofizika. 2017 ; Vol. 10, No. 1. pp. 17-30.

BibTeX

@article{5776a0f27a764ce8a5efd466245ba28c,
title = "Evaluation factors of horizontal turbulent exchange in the White Sea according to flow measurement",
abstract = "The coefficients of horizontal turbulent viscosity and their variability with the depth depending on the averaging period of flow rates are calculated on the basis of an increased flow velocity measurement data performed in the heavy areas of the White Sea. The technique of sliding averaging was used to eliminate the orderly movement in the velocity field, and the selection of local effects was carried out on the basis of wavelet analysis. The results indicated the possibility of release the time interval scale inflow of energy from the energy-ordered motions in the White Sea (fluctuations with the tidal frequencies M2, M4 and M6, the mechanism of the regular adjustment of currents, bottom friction), and unstable external sources (baroclinic currents, the disintegration of the internal tide, short-period internal waves). It was found that the anisotropy increases with the averaging period. Under certain extent of smoothing the flow velocity, mainly for the central regions of the flow field, the field of pulsations of a horizontal vector of speed is isotropic. Taking into account the exclusion of influence of external sources of energy in the flow structure and the surface wind and wave processes the values of eddy viscosity coefficients along the flow was 102-105 sm2/s, and in a direction normal to the flow the exchange ratio was 1-3 times smaller.",
keywords = "Averaging period, Energy, The White Sea, Turbulent exchange coefficient, Velocity fluctuations",
author = "Zhegulin, {G. V.} and Zimin, {A. V.}",
year = "2017",
month = jan,
day = "1",
doi = "10.7868/S2073667317010038",
language = "English",
volume = "10",
pages = "17--30",
journal = "ФУНДАМЕНТАЛЬНАЯ И ПРИКЛАДНАЯ ГИДРОФИЗИКА",
issn = "2073-6673",
publisher = "Российская академия наук",
number = "1",

}

RIS

TY - JOUR

T1 - Evaluation factors of horizontal turbulent exchange in the White Sea according to flow measurement

AU - Zhegulin, G. V.

AU - Zimin, A. V.

PY - 2017/1/1

Y1 - 2017/1/1

N2 - The coefficients of horizontal turbulent viscosity and their variability with the depth depending on the averaging period of flow rates are calculated on the basis of an increased flow velocity measurement data performed in the heavy areas of the White Sea. The technique of sliding averaging was used to eliminate the orderly movement in the velocity field, and the selection of local effects was carried out on the basis of wavelet analysis. The results indicated the possibility of release the time interval scale inflow of energy from the energy-ordered motions in the White Sea (fluctuations with the tidal frequencies M2, M4 and M6, the mechanism of the regular adjustment of currents, bottom friction), and unstable external sources (baroclinic currents, the disintegration of the internal tide, short-period internal waves). It was found that the anisotropy increases with the averaging period. Under certain extent of smoothing the flow velocity, mainly for the central regions of the flow field, the field of pulsations of a horizontal vector of speed is isotropic. Taking into account the exclusion of influence of external sources of energy in the flow structure and the surface wind and wave processes the values of eddy viscosity coefficients along the flow was 102-105 sm2/s, and in a direction normal to the flow the exchange ratio was 1-3 times smaller.

AB - The coefficients of horizontal turbulent viscosity and their variability with the depth depending on the averaging period of flow rates are calculated on the basis of an increased flow velocity measurement data performed in the heavy areas of the White Sea. The technique of sliding averaging was used to eliminate the orderly movement in the velocity field, and the selection of local effects was carried out on the basis of wavelet analysis. The results indicated the possibility of release the time interval scale inflow of energy from the energy-ordered motions in the White Sea (fluctuations with the tidal frequencies M2, M4 and M6, the mechanism of the regular adjustment of currents, bottom friction), and unstable external sources (baroclinic currents, the disintegration of the internal tide, short-period internal waves). It was found that the anisotropy increases with the averaging period. Under certain extent of smoothing the flow velocity, mainly for the central regions of the flow field, the field of pulsations of a horizontal vector of speed is isotropic. Taking into account the exclusion of influence of external sources of energy in the flow structure and the surface wind and wave processes the values of eddy viscosity coefficients along the flow was 102-105 sm2/s, and in a direction normal to the flow the exchange ratio was 1-3 times smaller.

KW - Averaging period

KW - Energy

KW - The White Sea

KW - Turbulent exchange coefficient

KW - Velocity fluctuations

UR - http://www.scopus.com/inward/record.url?scp=85025136968&partnerID=8YFLogxK

U2 - 10.7868/S2073667317010038

DO - 10.7868/S2073667317010038

M3 - Article

AN - SCOPUS:85025136968

VL - 10

SP - 17

EP - 30

JO - ФУНДАМЕНТАЛЬНАЯ И ПРИКЛАДНАЯ ГИДРОФИЗИКА

JF - ФУНДАМЕНТАЛЬНАЯ И ПРИКЛАДНАЯ ГИДРОФИЗИКА

SN - 2073-6673

IS - 1

ER -

ID: 37007924