首页> 外文OA文献 >Analysis of warm season thunderstorms using an object-oriented tracking method based on radar and total lightning data
【2h】

Analysis of warm season thunderstorms using an object-oriented tracking method based on radar and total lightning data

机译:基于雷达和总闪电数据的面向对象跟踪方法分析暖季雷暴

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Monitoring thunderstorms activity is an essential part of operational weather surveillance given their potential hazards, including lightning, hail, heavy rainfall, strong winds or even tornadoes. This study has two main objectives: firstly, the description of a methodology, based on radar and total lightning data to characterise thunderstorms in real-time; secondly, the application of this methodology to 66 thunderstorms that affected Catalonia (NE Spain) in the summer of 2006. An object-oriented tracking procedure is employed, where different observation data types generate four different types of objects (radar 1-km CAPPI reflectivity composites, radar reflectivity volumetric data, cloud-to-ground lightning data and intra-cloud lightning data). In the framework proposed, these objects are the building blocks of a higher level object, the thunderstorm. The methodology is demonstrated with a dataset of thunderstorms whose main characteristics, along the complete life cycle of the convective structures (development, maturity and dissipation), are described statistically. The development and dissipation stages present similar durations in most cases examined. On the contrary, the duration of the maturity phase is much more variable and related to the thunderstorm intensity, defined here in terms of lightning flash rate. Most of the activity of IC and CG flashes is registered in the maturity stage. In the development stage little CG flashes are observed (2% to 5%), while for the dissipation phase is possible to observe a few more CG flashes (10% to 15%). Additionally, a selection of thunderstorms is used to examine general life cycle patterns, obtained from the analysis of normalized (with respect to thunderstorm total duration and maximum value of variables considered) thunderstorm parameters. Among other findings, the study indicates that the normalized duration of the three stages of thunderstorm life cycle is similar in most thunderstorms, with the longest duration corresponding to the maturity stage (approximately 80% of the total time).
机译:鉴于雷暴的潜在危害,包括雷电,冰雹,大雨,强风甚至龙卷风,监测雷暴活动是业务天气监测的重要组成部分。这项研究有两个主要目标:第一,基于雷达和总闪电数据的方法描述,以实时描述雷暴。其次,将该方法应用于2006年夏季影响加泰罗尼亚(西班牙东北部)的66次雷暴。采用面向对象的跟踪程序,其中不同的观测数据类型生成四种不同类型的对象(雷达1公里CAPPI反射率)复合材料,雷达反射率体积数据,云对地闪电数据和云内闪电数据)。在提出的框架中,这些对象是更高级别的对象(雷雨)的构造块。用雷暴数据集证明了该方法,其统计数据描述了对流结构整个生命周期(发展,成熟和消散)的主要特征。在大多数情况下,发育和耗散阶段的持续时间相似。相反,成熟阶段的持续时间变化更大,并且与雷暴强度有关,雷暴强度在此根据雷击闪动速率进行定义。 IC和CG闪烁的大多数活动都在成熟阶段注册。在开发阶段,很少观察到CG闪烁(2%至5%),而在耗散阶段可能观察到更多的CG闪烁(10%至15%)。此外,雷暴的选择用于检查一般生命周期模式,这些模式是通过对标准化的(关于雷暴总持续时间和所考虑变量的最大值而言)雷暴参数的分析获得的。除其他发现外,该研究还表明,在大多数雷暴天气中,雷暴生命周期的三个阶段的标准化持续时间相似,最长持续时间对应于成熟阶段(约占总时间的80%)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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