FIELD AND NUMERICAL STUDY OF THE WIND-WAVE REGIME ON THE GORKY RESERVOIR

The paper describes the study of wind-wave regime at the Gorky reservoir. A series of field experiments (carried out from May to October in 2012–2015) showed that the values of the drag coefficient CD for a middle-sized reservoir in the range of moderate and strong winds are approximately 50 % lower...

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Published in:Geography, environment, sustainability Vol. 9; no. 2; pp. 19 - 37
Main Authors: Alexandra M. Kuznetsova, Georgy A. Baydakov, Vladislav V. Papko, Alexander A. Kandaurov, Maxim I. Vdovin, Daniil A. Sergeev, Yuliya I. Troitskaya
Format: Journal Article
Language:English
Published: Lomonosov Moscow State University 30-06-2016
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Abstract The paper describes the study of wind-wave regime at the Gorky reservoir. A series of field experiments (carried out from May to October in 2012–2015) showed that the values of the drag coefficient CD for a middle-sized reservoir in the range of moderate and strong winds are approximately 50 % lower than its values typical of the ocean conditions. The obtained parameterization of CD was implemented in the wave model WAVEWATCH III to receive the correct wave forecasts for a middle-sized reservoir. Statistical distribution of the wind speeds and directions called for consideration of wind field heterogeneity over the Gorky reservoir. It was incorporated using the wind forcing from atmospheric model WRF to WAVEWATCH III. Homogeneous wind forcing from the experimental data was compared with heterogeneous wind forcing from WRF. The need for further improvement of the quality of wind and wave prediction is discussed.
AbstractList The paper describes the study of wind-wave regime at the Gorky reservoir. A series of field experiments (carried out from May to October in 2012–2015) showed that the values of the drag coefficient CD for a middle-sized reservoir in the range of moderate and strong winds are approximately 50 % lower than its values typical of the ocean conditions. The obtained parameterization of CD was implemented in the wave model WAVEWATCH III to receive the correct wave forecasts for a middle-sized reservoir. Statistical distribution of the wind speeds and directions called for consideration of wind field heterogeneity over the Gorky reservoir. It was incorporated using the wind forcing from atmospheric model WRF to WAVEWATCH III. Homogeneous wind forcing from the experimental data was compared with heterogeneous wind forcing from WRF. The need for further improvement of the quality of wind and wave prediction is discussed.
Author Vladislav V. Papko
Yuliya I. Troitskaya
Georgy A. Baydakov
Daniil A. Sergeev
Alexander A. Kandaurov
Maxim I. Vdovin
Alexandra M. Kuznetsova
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  fullname: Alexandra M. Kuznetsova
  organization: Institute of Applied Physics of the Russian Academy of Sciences, Nizhny Novgorod State University
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  fullname: Georgy A. Baydakov
  organization: Institute of Applied Physics of the Russian Academy of Sciences, Nizhny Novgorod State University
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  fullname: Vladislav V. Papko
  organization: Institute of Applied Physics of the Russian Academy of Sciences
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  fullname: Alexander A. Kandaurov
  organization: Institute of Applied Physics of the Russian Academy of Sciences, Nizhny Novgorod State University
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  fullname: Maxim I. Vdovin
  organization: Institute of Applied Physics of the Russian Academy of Sciences, Nizhny Novgorod State University
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  fullname: Daniil A. Sergeev
  organization: Institute of Applied Physics of the Russian Academy of Sciences, Nizhny Novgorod State University
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  fullname: Yuliya I. Troitskaya
  organization: Institute of Applied Physics of the Russian Academy of Sciences, Nizhny Novgorod State University
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Snippet The paper describes the study of wind-wave regime at the Gorky reservoir. A series of field experiments (carried out from May to October in 2012–2015) showed...
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reservoir
simulation
wavewatch iii
wind-wave interaction
wrf
Title FIELD AND NUMERICAL STUDY OF THE WIND-WAVE REGIME ON THE GORKY RESERVOIR
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