Wavelike Structures in the Turbulent Layer During the Morning Development of Convection at Dome C, Antarctica

被引:15
作者
Petenko, Igor [1 ,2 ]
Argentini, Stefania [1 ]
Casasanta, Giampietro [1 ]
Kallistratova, Margarita [2 ]
Sozzi, Roberto [1 ,3 ]
Viola, Angelo [1 ]
机构
[1] CNR, Inst Atmospher Sci & Climate, Via Fosso del Cavaliere 100, I-00133 Rome, Italy
[2] RAS, AM Obukhov Inst Atmospher Phys, Pyzhevskiy 3, Moscow 119017, Russia
[3] Reg Environm Protect Agcy Lazio, Via Boncompagni 101, I-00187 Rome, Italy
基金
俄罗斯科学基金会; 俄罗斯基础研究基金会;
关键词
Dome C Antarctica; Kelvin-Helmholtz instability; Morning evolution of the boundary layer; Sodar; Temperature structure parameter; PLANETARY BOUNDARY-LAYER; KELVIN-HELMHOLTZ BILLOWS; ACOUSTIC DOPPLER SODAR; HEAT-FLUX; TEMPERATURE; CLIMATE; INSTABILITY; PARAMETERS; ATMOSPHERE; PLATEAU;
D O I
10.1007/s10546-016-0173-6
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
In the period January-February 2014, observations were made at the Concordia station, Dome C, Antarctica to study atmospheric turbulence in the boundary layer using a high-resolution sodar. The turbulence structure was observed beginning from the lowest height of about 2 m, with a vertical resolution of less than 2 m. Typical patterns of the diurnal evolution of the spatio-temporal structure of turbulence detected by the sodar are analyzed. Here, we focus on the wavelike processes observed within the transition period from stable to unstable stratification occurring in the morning hours. Thanks to the high-resolution sodar measurements during the development of the convection near the surface, clear undulations were detected in the overlying turbulent layer for a significant part of the time. The wavelike pattern exhibits a regular braid structure, with undulations associated with internal gravity waves attributed to Kelvin-Helmholtz shear instability. The main spatial and temporal scales of the wavelike structures were determined, with predominant periodicity of the observed wavy patterns estimated to be 40-50 s. The horizontal scales roughly estimated using Taylor's frozen turbulence hypothesis are about 250-350 m.
引用
收藏
页码:289 / 307
页数:19
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