Assessment of turbulent kinetic energy budget and boundary layer characteristics during pre-monsoon thunderstorm season over Ranchi

被引:0
作者
Bhishma Tyagi
A. N. V. Satyanarayana
机构
[1] Stockholm University,Department of Meteorology
[2] Indian Institute of Technology Kharagpur,Centre for Oceans, Rivers, Atmosphere and Land Sciences
来源
Asia-Pacific Journal of Atmospheric Sciences | 2013年 / 49卷
关键词
Turbulent kinetic energy; dissipation rates; standard deviations of wind and temperature;
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摘要
In the present work turbulent kinetic energy (TKE) budget and boundary layer characteristics are studied for an Indian tropical station Ranchi (23°25N, 85°26E), situated over Chota Nagpur plateau. The pre-monsoon months (March-May) data for years 2008–2010 has been used in the present study which is the period of severe thunderstorm over the North East India. TKE budget terms, dissipation rates, and normalized standard deviations of wind and temperature along with skewness of temperature have been analyzed to find out characteristic difference between days of thunderstorm and days of clear weather. Present study brought out significant variations in the turbulence transportation between the days of thunderstorm activity to that of fair weather days. Site and season specific relationships normalized standard deviations of wind and temperature with atmospheric stability during pre-monsoon thunderstorm and non thunderstorm days over Ranchi are proposed. One of the important outcomes of the study is proposing site specific relationships between TKE dissipation rates with respect to atmospheric stability. These results are useful in validating the mesoscale simulations of thunderstorm activity.
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页码:587 / 601
页数:14
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[1]  
Albertson J D(1997)The average dissipation rate of turbulent kinetic energy in the neutral and unstable atmospheric surface layer J. Geophys. Res. 102 13423-13432
[2]  
Parlange M B(2006)Evaluation of the von Kármán constant in the atmospheric surface layer J. Fluid Mech. 559 117-149
[3]  
Kiely G(1998)Statistics of surface layer turbulence over terrain with metre-scale heterogeneity Bound.-Layer Meteor. 86 379-408
[4]  
Eichinger W E(1983)Conditional sampling of turbulence in the atmospheric surface layer J. Appl. Meteor. Climatol. 22 69-78
[5]  
Andreas E L(2003)Analysis of turbulence parameters in the Near-Surface Layer at Qamdo of the Southeastern Tibetan Pleateau Adv. Atmos. Sci. 20 369-378
[6]  
Hill R J(1998)Dissipative heating and hurricane intensity Meteor. Atmos. Phys. 65 233-240
[7]  
Gose J R(1995)Example of reduced turbulence during thunderstorm outflow J. Appl. Meteorol. 35 1028-1032
[8]  
Moore D I(1971)Flux profile relationships in the atmospheric surface layer J. Atmos. Sci. 28 181-189
[9]  
Otto W D(2001)Viscous dissipation of turbulence kinetic energy in storms J. Atmos. Sci. 58 3793-3796
[10]  
Sarma A D(2009)Turbulence characteristics in the atmospheric surface layer during summer monsoon of 1997 over a semi-arid location in India Meteor. Atmos. Phys. 104 113-123