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IMPACT OF SEA SPRAY ON TROPICAL CYCLONE STRUCTURE AND INTENSITY CHANGE
作者姓名:曾智华  陈联寿  包剑文
作者单位:Nanjing University of Information Science and Technology, Nanjing 210044 China;Shanghai Typhoon Institute, Laboratory of Typhoon Forecast Technique/China Meteorological Administration, Shanghai 200030 China;Chinese Academy of Meteorological Sciences, China Meteorological Administration, Beijing 100081 China;NOAA/Earth System Research Laboratory, Boulder, Colorado, USA
基金项目:National Basic Research Program of China (973 Program) (2009CB421500); Natural Science Foundation of China (40875039, 40730948, 40921160381); Projects for Public Welfare (Meteorology) of China (GYHY201006008)
摘    要:In this paper,the effects of sea spray on tropical cyclone(TC)structure and intensity variation are evaluated through numerical simulations using an advanced sea-spray parameterization from the National Oceanic and Atmospheric Administration/Earth System Research Laboratory(NOAA/ESRL),which is incorporated in the idealized Advanced Research version of the Weather Research and Forecast (WRF-ARW)model.The effect of sea spray on TC boundary-layer structure is also analyzed.The results show that there is a significant increase in TC intensity when its boundary-layer wind includes the radial and tangential winds,their structure change,and the total surface wind speed change.Diagnosis of the vorticity budget shows that an increase of convergence in TC boundary layer enhances TC vorticity due to the dynamic effect of sea spay.The main kinematic effect of the friction velocity reduction by sea spray produces an increment of large-scale convergence in the TC boundary layer,while the radial and tangential winds significantly increase with an increment of the horizontal gradient maximum of the radial wind, resulting in a final increase in the simulated TC intensity.The surface enthalpy flux enlarges TC intensity and reduces storm structure change to some degree,which results in a secondary thermodynamic impact on TC intensification.Implications of the new interpretation of sea-spray effects on TC intensification are also discussed.

关 键 词:sea  spray  tropical  cyclone  structure  and  intensity  change  numerical  simulation
收稿时间:2011/9/30 0:00:00
修稿时间:2012/2/15 0:00:00

IMPACT OF SEA SPRAY ON TROPICAL CYCLONE STRUCTURE AND INTENSITY CHANGE
ZENG Zhi-hu,CHEN Lian-shou and BAO Jian-wen.IMPACT OF SEA SPRAY ON TROPICAL CYCLONE STRUCTURE AND INTENSITY CHANGE[J].Journal of Tropical Meteorology,2012,18(2):135-145.
Authors:ZENG Zhi-hu  CHEN Lian-shou and BAO Jian-wen
Institution:Nanjing University of Information Science and Technology, Nanjing 210044 China;Shanghai Typhoon Institute, Laboratory of Typhoon Forecast Technique/China Meteorological Administration, Shanghai 200030 China;Chinese Academy of Meteorological Sciences, China Meteorological Administration, Beijing 100081 China;NOAA/Earth System Research Laboratory, Boulder, Colorado, USA
Abstract:In this paper, the effects of sea spray on tropical cyclone (TC) structure and intensity variation are evaluated through numerical simulations using an advanced sea-spray parameterization from the National Oceanic and Atmospheric Administration/Earth System Research Laboratory (NOAA/ESRL), which is incorporated in the idealized Advanced Research version of the Weather Research and Forecast (WRF-ARW) model. The effect of sea spray on TC boundary-layer structure is also analyzed. The results show that there is a significant increase in TC intensity when its boundary-layer wind includes the radial and tangential winds, their structure change, and the total surface wind speed change. Diagnosis of the vorticity budget shows that an increase of convergence in TC boundary layer enhances TC vorticity due to the dynamic effect of sea spay. The main kinematic effect of the friction velocity reduction by sea spray produces an increment of large-scale convergence in the TC boundary layer, while the radial and tangential winds significantly increase with an increment of the horizontal gradient maximum of the radial wind, resulting in a final increase in the simulated TC intensity. The surface enthalpy flux enlarges TC intensity and reduces storm structure change to some degree, which results in a secondary thermodynamic impact on TC intensification. Implications of the new interpretation of sea-spray effects on TC intensification are also discussed.
Keywords:sea spray  tropical cyclone  structure and intensity change  numerical simulation
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