Simulation of spatio-temporal variability of temperature in the Taganrog Bay with MITgcm model
The goal of the paper is to analyze efficiency of MITgcm in simulation of temperature fields' variability in the Taganrog Bay. Authors are the first to consider hydrodynamic modeling approach based on MITgcm for this bay. In situ temperature values to be compared with the model data have been...
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doaj-0d646d1546e147beaaa05c70415f191c2020-11-24T23:32:31ZrusMurmansk State Technical UniversityVestnik MGTU1560-92781997-47362017-03-01201/223124110.21443/1560-9278-2017-20-1/2-231-241 Simulation of spatio-temporal variability of temperature in the Taganrog Bay with MITgcm modelZaporozhtsev I. F.0Moiseev D. V.1Murmansk Arctic State UniversityMurmansk Marine Biological Institute KSC RAS,Murmansk State Technical University The goal of the paper is to analyze efficiency of MITgcm in simulation of temperature fields' variability in the Taganrog Bay. Authors are the first to consider hydrodynamic modeling approach based on MITgcm for this bay. In situ temperature values to be compared with the model data have been obtained during two Murmansk Marine Biological Institute Kola Scientific Center RAS and Southern Scientific Center RAS coupled expeditions in summer and autumn of 2005. The step of calculation grid is agreed with the step of direct measurements stations grid. The obtained during cruises temperature and salinity data cover the Taganrog Bay with 2' latitude and 3' longitude steps (and with 4' latitude and 6' longitude steps correspondingly for thermohaline homogeneous areas). Depth step is 0.5 m. Data for initialization and atmospheric forcing have been taken from public reanalysis databases and atlases, datasets limitations are discussed. To simplify boundary conditions simulation has been carried out for the whole Azov Sea. Numerical experiments series has been fulfilled to determine the optimal start date of simulation and initial constant temperature field. In view of significant experiment time cost optimization task has been solved for restricted parameters values set and with doubled grid steps (4' latitude and 6' longitude steps). The determined values have been used to solve original task of model data verification with the measured ones. As far as the results obtained by the authors with the particular workstation PC are concerned, the conclusion about possibility of MITgcm simulation in real areas without specialized highperformance computers has been given.http://vestnik.mstu.edu.ru/show.shtml?art=1865&pdf=1: model MITgcmTaganrog BayAzov Seasimulation of spatio-temporal variability of temperaturemodel verification with in situ data |
collection |
DOAJ |
language |
Russian |
format |
Article |
sources |
DOAJ |
author |
Zaporozhtsev I. F. Moiseev D. V. |
spellingShingle |
Zaporozhtsev I. F. Moiseev D. V. Simulation of spatio-temporal variability of temperature in the Taganrog Bay with MITgcm model Vestnik MGTU : model MITgcm Taganrog Bay Azov Sea simulation of spatio-temporal variability of temperature model verification with in situ data |
author_facet |
Zaporozhtsev I. F. Moiseev D. V. |
author_sort |
Zaporozhtsev I. F. |
title |
Simulation of spatio-temporal variability of temperature in the Taganrog Bay with MITgcm model |
title_short |
Simulation of spatio-temporal variability of temperature in the Taganrog Bay with MITgcm model |
title_full |
Simulation of spatio-temporal variability of temperature in the Taganrog Bay with MITgcm model |
title_fullStr |
Simulation of spatio-temporal variability of temperature in the Taganrog Bay with MITgcm model |
title_full_unstemmed |
Simulation of spatio-temporal variability of temperature in the Taganrog Bay with MITgcm model |
title_sort |
simulation of spatio-temporal variability of temperature in the taganrog bay with mitgcm model |
publisher |
Murmansk State Technical University |
series |
Vestnik MGTU |
issn |
1560-9278 1997-4736 |
publishDate |
2017-03-01 |
description |
The goal of the paper is to analyze efficiency of MITgcm in simulation of temperature fields' variability in the
Taganrog Bay. Authors are the first to consider hydrodynamic modeling approach based on MITgcm for this
bay. In situ temperature values to be compared with the model data have been obtained during two Murmansk
Marine Biological Institute Kola Scientific Center RAS and Southern Scientific Center RAS coupled expeditions
in summer and autumn of 2005. The step of calculation grid is agreed with the step of direct measurements
stations grid. The obtained during cruises temperature and salinity data cover the Taganrog Bay with 2' latitude
and 3' longitude steps (and with 4' latitude and 6' longitude steps correspondingly for thermohaline homogeneous
areas). Depth step is 0.5 m. Data for initialization and atmospheric forcing have been taken from public
reanalysis databases and atlases, datasets limitations are discussed. To simplify boundary conditions simulation
has been carried out for the whole Azov Sea. Numerical experiments series has been fulfilled to determine the
optimal start date of simulation and initial constant temperature field. In view of significant experiment time cost
optimization task has been solved for restricted parameters values set and with doubled grid steps (4' latitude and
6' longitude steps). The determined values have been used to solve original task of model data verification with
the measured ones. As far as the results obtained by the authors with the particular workstation PC are
concerned, the conclusion about possibility of MITgcm simulation in real areas without specialized highperformance
computers has been given. |
topic |
: model MITgcm Taganrog Bay Azov Sea simulation of spatio-temporal variability of temperature model verification with in situ data |
url |
http://vestnik.mstu.edu.ru/show.shtml?art=1865&pdf=1 |
work_keys_str_mv |
AT zaporozhtsevif simulationofspatiotemporalvariabilityoftemperatureinthetaganrogbaywithmitgcmmodel AT moiseevdv simulationofspatiotemporalvariabilityoftemperatureinthetaganrogbaywithmitgcmmodel |
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