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首页> 外文期刊>Journal of Climate >Tropical Cyclone Intensity Evolution Modeled as a Dependent Hidden Markov Process
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Tropical Cyclone Intensity Evolution Modeled as a Dependent Hidden Markov Process

机译:热带旋风强度演变为依赖隐藏的马尔可夫过程

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摘要

A hidden Markov model is developed to simulate tropical cyclone intensity evolution dependent on the surrounding large-scale environment. The model considers three unobserved (hidden) discrete states of storm intensity change and associates each state with a probability distribution of intensity change. The storm's transit from one state to another is described as a Markov chain. Both the intensity change and state transit components of the model are dependent on environmental variables including potential intensity, vertical wind shear, relative humidity, and ocean feedback. This Markov Environment-Dependent Hurricane Intensity Model (MeHiM) is used to simulate the evolution of storm intensity along the storm track over the ocean, and a simple decay model is added to estimate the intensity change when the storm moves over land. Data for the North Atlantic (NA) basin from 1979 to 2014 (555 storms) are used for model development and evaluation. Probability distributions of 6- and 24-h intensity change, lifetime maximum intensity, and landfall intensity based on model simulations and observations compare well. Although the MeHiM is still limited in fully describing rapid intensification, it shows a significant improvement over previous statistical models (e.g., linear, nonlinear, and finite mixture models).
机译:开发了一个隐藏的马尔可夫模型,以模拟依赖于周围的大型环境的热带气旋强度进化。该模型考虑了三个未观察(隐藏的)风暴强度变化状态,并将每个状态与强度变化的概率分布相关联。风暴从一个州到另一个国家的过境被描述为马尔可夫链。该模型的强度变化和状态传输组件均取决于环境变量,包括潜在强度,垂直风剪,相对湿度和海洋反馈。这种马尔可夫环境依赖的飓风强度模型(Mehim)用于模拟沿着海洋的风暴轨道的风暴强度的演变,并且增加了一个简单的衰变模型来估计当风暴在陆地上移动时的强度变化。 1979年至2014年北大西洋(NA)盆地的数据(555次风暴)用于模型开发和评估。基于模型模拟和观测的概率分布,寿命最大强度,寿命最大强度和登陆强度比较良好。尽管Mehim仍然有限地限于完全描述的快速增强,但它显示出对先前统计模型的显着改进(例如,线性,非线性和有限混合物模型)。

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