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Lightning Activity and Its Relationship with Typhoon Intensity and Vertical Wind Shear for Super Typhoon Haiyan (1330) 被引量:5
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作者 王芳 郄秀书 +2 位作者 刘冬霞 史海锋 Abhay Srivastava 《Journal of Meteorological Research》 SCIE CSCD 2016年第1期117-127,共11页
Super Typhoon Halyan (1330), which occurred in 2013, is the most powerful typhoon during landfall in the meteorological record. In this study, the temporal and spatial distributions of lightning activity of Haiyan w... Super Typhoon Halyan (1330), which occurred in 2013, is the most powerful typhoon during landfall in the meteorological record. In this study, the temporal and spatial distributions of lightning activity of Haiyan were analyzed by using the lightning data from the World Wide Lightning Location Network, typhoon intensity and position data from the China Meteorological Administration, and horizontal wind data from the ECMWF. Three distinct regions were identified in the spatial distribution of daily average lightning density, with the maxima in the inner core and the minima in the inner rainband. The lightning density in the intensifying stage of Haiyan was greater than that in its weakening stage. During the time when the typhoon intensity measured with maximum sustained wind speed was between 32.7 and 41.4 m s-1, the storm had the largest lightning density in the inner core, compared with other intensity stages. In contrast to earlier typhoon studies, the eyewall lightning burst out three times. The first two eyewall lightning outbreaks occurred during the period of rapid intensification and before the maximum intensity of the storm, suggesting that the eyewall lightning activity could be used to identify the change in tropical cyclone intensity. The flashes frequently occurred in the inner core, and in the outer rainbands with the black body temperature below 220 K. Combined with the ECMWF wind data, the influences of vertical wind shear (VWS) on the azimuthal distribution of flashes were also analyzed, showing that strong VWS produced downshear left asymmetry of lightning activity in the inner core and downshear right asymmetry in the ralnbands. 展开更多
关键词 super typhoon haiyan typhoon intensity eyewall lightning outbreak vertical wind shear
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Track of Super Typhoon Haiyan Predicted by a Typhoon Model for the South China Sea 被引量:5
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作者 陈子通 张诚忠 +5 位作者 黄燕燕 冯业荣 钟水新 戴光丰 徐道生 杨兆礼 《Journal of Meteorological Research》 SCIE 2014年第4期510-523,共14页
Super Typhoon Haiyan was the most notable typhoon in 2013. In this study, results from the operational prediction of Haiyan by a tropical regional typhoon model for the South China Sea are analyzed. It is shown that t... Super Typhoon Haiyan was the most notable typhoon in 2013. In this study, results from the operational prediction of Haiyan by a tropical regional typhoon model for the South China Sea are analyzed. It is shown that the model has successfully reproduced Haiyan’s rapid passage through the Philippines and its northward deflection after its second landfall in Vietnam. However, the predicted intensity of Haiyan is weaker than the observed. An analysis of higher-resolution model simulations indicates that the storm is characterized by an upper-level warm core during its mature stage and a deep layer of easterly flow. Sensitivity experiments are conducted to study the impact of certain physical processes such as the interaction between stratus and cumulus clouds on the improvement of the typhoon intensity forecast. It is found that appropriate boundary layer and cumulus convective parameterizations, and orographic gravity-wave parameterization, as well as improved initial conditions and increased horizontal grid resolution, all help to improve the intensity forecast of Haiyan. 展开更多
关键词 super typhoon haiyan typhoon track typhoon intensity numerical weather prediction
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1330号台风海燕强烈发展和快速移动原因分析 被引量:25
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作者 张玲 许映龙 黄奕武 《气象》 CSCD 北大核心 2014年第12期1464-1480,共17页
本文运用NCEP再分析资料(水平分辨率1°×1°,垂直层次26层)和各种常规观测资料以及中央气象台台风实时定位定强数据对2013年全球最强台风海燕的特点和极端性展开分析,并运用天气学分析和动力学诊断的方法探讨"海燕&qu... 本文运用NCEP再分析资料(水平分辨率1°×1°,垂直层次26层)和各种常规观测资料以及中央气象台台风实时定位定强数据对2013年全球最强台风海燕的特点和极端性展开分析,并运用天气学分析和动力学诊断的方法探讨"海燕"强度发展的动力机制和快速移动的原因,同时发掘预报着眼点,以提高中央气象台对类似台风的综合预报能力。本文主要研究结论为:(1)"海燕"在登陆菲律宾之前的持续加强和高强度维持发生在副热带西风急流加强南压和副热带高压南侧对流层各层低纬东风同时加强的条件下。(2)副热带西风急流加强南压是导致西太平洋副热带高压加强和副热带高压南侧对流层各层低纬东风加强及"海燕"高速靠近并登陆菲律宾的重要原因。(3)"海燕"的水平风速分布存在明显不对称,呈现台风北侧东风大于南侧西风、台风东侧南风大于西侧北风的特点,其中纬向风的不对称更显著。而由台风海燕东西两侧经向风和南北两侧纬向风的不对称分布导致的切变正涡度的增加可能是台风强度持续增强的重要原因之一。(4)对流层低层水平辐合的显著加强和台风海燕南北两侧经向垂直环流圈的加强和建立也是"海燕"强度持续加强的重要原因之一。(5)台风海燕持续加强和高强度维持的主要动力机制为内核区对流层低层水平辐合和对流层中低层涡度的持续增长以及台风所处环境的高层辐散的明显增加和高低层垂直切变的减小。(6)预报启示为:对于秋冬季的台风而言,除了西太平洋副热带高压、西风槽、对流层低层偏东风、越赤道气流外,还需关注对流层上层副热带西风急流的变化,特别是对于偏西行台风而言,副热带西风急流的加强南压可能会导致台风移速的加快和强度的明显加强。另外对流层上层不光是台风的出流层,能影响台风高层出流的变化,对流层上层的环流还可能对台风移动造成一定影响。 展开更多
关键词 超强台风海燕 强度强 移速快 天气分析 动力学诊断分析
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