首页> 外文期刊>Weather and forecasting >Satellite-Based Observations of Nonlinear Relationships between Vertical Wind Shear and Intensity Changes during the Life Cycle of Hurricane Joaquin (2015)
【24h】

Satellite-Based Observations of Nonlinear Relationships between Vertical Wind Shear and Intensity Changes during the Life Cycle of Hurricane Joaquin (2015)

机译:卫星在飓风Juaquin的垂直风剪和强度变化之间的非线性关系的观察(2015)

获取原文
获取原文并翻译 | 示例
       

摘要

A CIMSS vertical wind shear (VWS-C) dataset based on reprocessed GOES-East atmospheric motion vectors (AMVs) at 15-min intervals has a -0.36 correlation with the CIMSS Satellite Consensus (SATCON) intensity changes at 30-min intervals over the life cycle of Hurricane Joaquin (2015). Correlations are then calculated for four intensity change events including two rapid intensifications (RIs) and two decays, and four intensity change segments immediately before or after these events. During the first RI, the peak intensity increase of 16 kt (6 h)(-1)(1 kt approximate to 0.51 m s(-1)) follows a small VWS-C decrease to a moderate 8 m s(-1)value (negative correlation). A 30-h period of continued RI following the first peak RI occurred under moderate magnitude VWS-C (negative correlation), but with a rotation of the VWS-C direction to become more aligned with the southwestward heading of Joaquin. During the second RI, the peak intensity increase of 15 kt (6 h)(-1)leads the rapid VWS-C increase (positive correlation), which the horizontal plots of VWS-C vectors demonstrate is related to an upper-tropospheric cyclone to the northeast of Joaquin. A conceptual model of ocean cooling within the anticyclonic track loop is proposed to explain a counterintuitive decreasing intensity when the VWS-C was also decreasing (positive correlation) during the Joaquin track reversal. These alternating negative and positive correlations during the four events and four segments of intensity change demonstrate the nonlinear relationships between the VWS-C and intensity changes during the life cycle of Joaquin that must be understood, analyzed, and modeled to improve tropical cyclone intensity forecasts, and especially RI events.
机译:基于再加工的上东大气运动向量(AMV)的CIMSS垂直风剪(VWS-C)数据集以15分钟的间隔具有-0.36与CIMSS卫星共识(SATCON)强度在30分钟内变化的相关性飓风Joaquin的生命周期(2015)。然后计算包括两个快速强化(RIS)和两个衰减的四个强度变化事件的相关性,以及在这些事件之前或之后的四个强度改变段。在第一RI期间,16 kt(6小时)( - 1)(1kt近似为0.51ms(-1))的峰强度增加,遵循小的VWS-C减少到中等8ms(-1)值(负相关关系)。在第一峰RI之后的30-H持续RI在适度的大小VWS-C(负相关)下发生,但随着VWS-C方向的旋转,与Jaaquin的西南部标题变得更加对准。在第二rI期间,15 kt(6 h)( - 1)的峰强度增加引发了快速的Vws-c增加(阳性相关),Vws-c vectors的水平图表明与上层旋流旋风有关到Joaquin的东北部。建议在Juaquin轨道逆转期间的VWS-C也降低(正相关)时解释反气旋轨道环内的海洋冷却的概念模型。在四个事件和四个强度变化中的交替的负和正相关性证明了必须理解,分析和建模的Juaquin的生命周期期间VWS-C和强度变化之间的非线性关系,以改善热带气旋强度预测,特别是ri事件。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号