首页> 外文期刊>Weather and forecasting >The advanced Dvorak technique: Continued development of an objective scheme to estimate tropical cyclone intensity using geostationary infrared satellite imagery
【24h】

The advanced Dvorak technique: Continued development of an objective scheme to estimate tropical cyclone intensity using geostationary infrared satellite imagery

机译:先进的Dvorak技术:继续开发使用对地静止红外卫星图像估算热带气旋强度的客观方案

获取原文
获取原文并翻译 | 示例
       

摘要

Tropical cyclones are becoming an increasing menace to society as populations grow in coastal regions. Forecasting the intensity of these often-temperamental weather systems can be a real challenge, especially if the true intensity at the forecast time is not well known. To address this issue, techniques to accurately estimate tropical cyclone intensity from satellites are a natural goal because in situ observations over the vast oceanic basins are scarce. The most widely utilized satellite-based method to estimate tropical cyclone intensity is the Dvorak technique, a partially subjective scheme that has been employed operationally at tropical forecast centers around the world for over 30 yr. With the recent advent of improved satellite sensors, the rapid advances in computing capacity, and accumulated experience with the behavioral characteristics of the Dvorak technique, the development of a fully automated, computer-based objective scheme to derive tropical cyclone intensity has become possible. In this paper the advanced Dvorak technique is introduced, which, as its name implies, is a derivative of the original Dvorak technique. The advanced Dvorak technique builds on the basic conceptual model and empirically derived rules of the original Dvorak technique, but advances the science and applicability in an automated environment that does not require human intervention. The algorithm is the culmination of a body of research that includes the objective Dvorak technique ( ODT) and advanced objective Dvorak technique ( AODT) developed at the University of Wisconsin-Madison's Cooperative Institute for Meteorological Satellite Studies. The ODT could only be applied to storms that possessed a minimum intensity of hurricane/typhoon strength. In addition, the ODT still required a storm center location to be manually selected by an analyst prior to algorithm execution. These issues were the primary motivations for the continued advancement of the algorithm ( AODT). While these two objective schemes had as their primary goal to simply achieve the basic functionality and performance of the Dvorak technique in a computer-driven environment, the advanced Dvorak technique exceeds the boundaries of the original Dvorak technique through modifications based on rigorous statistical and empirical analysis. It is shown that the accuracy of the advanced Dvorak technique is statistically competitive with the original Dvorak technique, and can provide objective tropical cyclone intensity guidance for systems in all global basins.
机译:随着沿海地区人口的增长,热带气旋对社会的威胁越来越大。预测这些经常性的天气系统的强度可能是一个真正的挑战,尤其是在未知预测时间的真实强度的情况下。为了解决这个问题,从卫星上准确估算热带气旋强度的技术是一个自然目标,因为在广阔的海洋盆地上进行实地观测的情况很少。估计热带气旋强度最广泛使用的基于卫星的方法是Dvorak技术,这是一种部分主观的方案,已在世界各地的热带预报中心投入了30多年的使用。随着最近改进的卫星传感器的出现,计算能力的飞速发展以及Dvorak技术的行为特征方面的经验积累,开发一种基于计算机的全自动目标方案以导出热带气旋强度成为可能。本文介绍了先进的Dvorak技术,顾名思义,它是原始Dvorak技术的衍生产品。先进的Dvorak技术建立在基本Dvorak技术的基本概念模型和经验推导规则的基础上,但在不需要人工干预的自动化环境中提高了科学性和适用性。该算法是包括威斯康星大学麦迪逊分校气象卫星研究合作研究所开发的客观Dvorak技术(ODT)和先进的客观Dvorak技术(AODT)在内的一大研究成果。 ODT仅适用于飓风/台风强度最低的风暴。此外,ODT仍然需要分析师在执行算法之前手动选择风暴中心位置。这些问题是算法(AODT)持续发展的主要动力。尽管这两个目标方案的主要目标是在计算机驱动的环境中简单地实现Dvorak技术的基本功能和性能,但先进的Dvorak技术通过基于严格的统计和经验分析进行修改而超越了原始Dvorak技术的范围。 。结果表明,先进的Dvorak技术的准确性与原始Dvorak技术在统计上具有竞争力,并且可以为全球所有盆地的系统提供客观的热带气旋强度指导。

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