Impact of the Novaya Zemlya Bora on the Ocean-Atmosphere Heat Exchange and Ocean Circulation: A Case-Study with the Coupled Model

被引:1
作者
Shestakova, Anna A. [1 ]
Debolskiy, Andrey, V [1 ,2 ,3 ]
机构
[1] Russian Acad Sci, AM Obukhov Inst Atmospher Phys, Moscow 119017, Russia
[2] Lomonosov Moscow State Univ, Res Comp Ctr, Moscow 119991, Russia
[3] Moscow Ctr Fundamental & Appl Math, Moscow 119992, Russia
基金
俄罗斯科学基金会;
关键词
downslope windstorm; coupled modelling; turbulent heat fluxes; Barents Sea; DENSE WATER FORMATION; BARENTS SEA; NUMERICAL-SIMULATION; WAVE MODEL; VARIABILITY; PREDICTION; CLIMATE; SURFACE; STRESS; WINDS;
D O I
10.3390/atmos13071108
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Novaya Zemlya bora is a strong downslope windstorm in the east of the Barents Sea. This paper considers the influence of the Novaya Zemlya bora on the turbulent heat exchange between the atmosphere and the ocean and on processes in the ocean. Another goal of this study is to demonstrate the sensitivity of simulated turbulent fluxes during bora to model coupling between atmosphere, ocean and sea waves. In this regard, a high-resolution numerical simulation of one winter bora episode was carried out using the COAWST (Coupled-Ocean-Atmosphere-Wave-Sediment Transport) modeling system, which includes the atmospheric (WRF-ARW model), oceanic (ROMS model), and sea waves (SWAN model) components. As shown by the simulation results, in the fully coupled experiment, turbulent heat exchange is enhanced in comparison with the uncoupled experiment (by 3% on average over the region). This is due to the atmosphere-sea-waves interaction, and the results are highly sensitive to the choice of roughness parameterization. The influence of the interaction of the atmospheric and oceanic components on turbulent fluxes in this episode is small on average. Bora has a significant impact on the processes in the ocean directly near the coast, forming a strong coastal current and making a decisive contribution to the formation of dense waters. In the open sea, the bora, or rather, the redistribution of the wind and temperature fields caused by the orography of Novaya Zemlya, leads to a decrease in ocean heat content losses due to a decrease in turbulent heat exchange in comparison with the experiment with flat topography.
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页数:24
相关论文
共 86 条
[1]   Modelling Indonesian rainfall with a coupled regional model [J].
Aldrian, E ;
Sein, D ;
Jacob, D ;
Gates, LD ;
Podzun, R .
CLIMATE DYNAMICS, 2005, 25 (01) :1-17
[2]  
[Anonymous], 2009, **DATA OBJECT** **DATA OBJECT**
[3]  
[Anonymous], 2004, 20 C WEATH AN FOR 16
[4]  
[Anonymous], SODA OCEAN REANALYSI
[5]  
[Anonymous], Model Coupling Toolkit
[6]   Dense water formation and circulation in the Barents Sea [J].
Arthun, M. ;
Ingvaldsen, R. B. ;
Smedsrud, L. H. ;
Schrum, C. .
DEEP-SEA RESEARCH PART I-OCEANOGRAPHIC RESEARCH PAPERS, 2011, 58 (08) :801-817
[7]   Progress and challenges in short- to medium-range coupled prediction [J].
Brassington, G. B. ;
Martin, M. J. ;
Tolman, H. L. ;
Akella, S. ;
Balmeseda, M. ;
Chambers, C. R. S. ;
Chassignet, E. ;
Cummings, J. A. ;
Drillet, Y. ;
Jansen, P. A. E. M. ;
Laloyaux, P. ;
Lea, D. ;
Mehra, A. ;
Mirouze, I. ;
Ritchie, H. ;
Samson, G. ;
Sandery, P. A. ;
Smith, G. C. ;
Suarez, M. ;
Todling, R. .
JOURNAL OF OPERATIONAL OCEANOGRAPHY, 2015, 8 :S239-S258
[8]   A fully-coupled atmosphere-ocean-wave model of the Caspian Sea [J].
Bruneau, Nicolas ;
Toumi, Ralf .
OCEAN MODELLING, 2016, 107 :97-111
[9]   Numerical simulation of ice-ocean variability in the Barents Sea region Towards dynamical downscaling [J].
Budgell, W. P. .
OCEAN DYNAMICS, 2005, 55 (3-4) :370-387
[10]  
Buzin I.V., 2005, MAT GLYACIOLOGICHESK, V99, P39