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Analysis of Interactions Among Two Tropical Depressions and Typhoons Tembin and Bolaven (2012) in Pacific Ocean by Using Satellite Cloud Images

机译:利用卫星云图分析太平洋上两个热带低压与台风特宾和波拉文(2012)的相互作用

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This paper presents a framework for using remote sensing imagery and image processing techniques to analyze the interactions among tropical depressions (TDs) and typhoons. The purpose is to properly understand and predict this phenomenon, in order to reduce their influence on the regions where they pass by. Improvements on the understanding of the interactions among TDs and typhoons are obtained and presented. They carry the potential to improve forecast of severe weather system. In this paper, we analyzed the physical responses of TDs on two typhoons Tembin and Bolaven (2012), including TD's appearance, development, interaction, and mergence. According to the Central Weather Bureau of Taiwan, Tembin and Bolaven were formed about 1550 km apart. In general, the Fujiwhara effect happens when two storms are within a distance of 1400 km. Does the TD have impacts on the typhoons, and could we also call this impact as Fujiwhara effect? The 3-D profiles of the weather systems are reconstructed using the multifunctional transport satellite (MTSAT) infrared cloud images by the image reconstruction technique (IRT). The 3-D profiles of typhoons were implemented for investigating the in-depth distribution of the cloud top from a surface cloud image. The main parameters, which have been analyzed in this paper, are distance, height difference, rotation, and sizes of the two TDs and the two typhoons. The results showed that two TDs occurred between typhoons Tembin and Bolaven, which interacted with each other through upward convection and attraction between two typhoons and the TDs, respectively. The mergence of the two TDs caused the typhoons to start rotating and generate strengthened power. The findings of the TD effects on two typhoons represent a new aspect of the interaction between TD and typhoon.
机译:本文提出了一个利用遥感图像和图像处理技术来分析热带低气压(TDs)和台风之间相互作用的框架。目的是正确理解和预测这种现象,以减少它们对它们经过的区域的影响。获得并提出了对TD和台风之间相互作用的理解的改进。它们具有改善恶劣天气系统预报的潜力。在本文中,我们分析了TD在两个台风Tembin和Bolaven(2012)上的物理响应,包括TD的出现,发展,相互作用和融合。根据台湾中央气象局的数据,Tembin和Bolaven大约相距1550公里。通常,藤原效应是在1400公里范围内有两次风暴时发生的。运输署对台风有影响吗?我们也可以称这种影响为藤原效应吗?通过图像重建技术(IRT)使用多功能运输卫星(MTSAT)红外云图像重建天气系统的3-D轮廓。实施台风的3-D剖面用于调查表面云图图像中云顶的深度分布。本文已分析的主要参数是两个TD和两个台风的距离,高度差,旋转和大小。结果表明,台风Tembin和Bolaven之间发生了两个TD,这两个TD分别通过两个台风和TD之间的向上对流和引力相互作用。两个TD的合并使台风开始旋转并产生增强的动力。 TD对两个台风的影响的发现代表了TD与台风相互作用的一个新方面。

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