拉格朗日模型PETROMAR-3D描述海洋石油泄漏的复杂过程

Amilcar E. Calzada, Iván Delgado, C. Ramos, F. Pérez, Dailín Reyes, Dayana Carracedo, Alejandro Rodríguez, Dayron Chang, Javier Cabrales, Alexander Lobaina
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引用次数: 6

摘要

介绍了由古巴气象研究所海洋气象中心制作的2.1版PETROMAR-3D模型。该拉格朗日模型旨在描述在海洋环境的多种情况下海洋石油泄漏的物理过程。虽然它适用于世界任何地区,但它主要是为美洲海域设计的。新颖之处在于将漂移和风化过程整合到一个模型中,并采用包含3D现象的更新方法,这是在古巴和该地区实现近期和中期操作系统的非常有利的情况。之所以选择Python作为编程语言,是因为它具有用于数值建模、自动化工作和其他有用的预处理和后处理工具的高级库。通过适配器,考虑了许多重要的大气、水动力和波浪模型来有效地创建场景。创建代码的模块化分布便于其用于其他色散分析和生物物理应用。最后,展示了一组简单的图像,旨在告知决策者,以减轻泄漏对环境的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lagrangian Model PETROMAR-3D to Describe Complex Processes in Marine Oil Spills
The version 2.1 of PETROMAR-3D model, created in the Center for Marine Meteorology of the Meteorology Institute of Cuba, is presented. This Lagrangian model has been designed to describe the physical processes of marine oil spills in the face of multiple scenarios of the marine environment. Although it is applicable to any part of the world, it is mainly designed for inter-American seas. The novelty has been to integrate the processes of drift and weathering into a model, with updated methods that incorporate 3D phenomena, a very favorable situation to achieve an operating system in Cuba and the region for the immediate and medium term. Python was chosen as the programming language because it has advanced libraries for numerical modeling, automation work and other useful tools for pre-and post-processing. By means of adapters, an important number of atmospheric, hydrodynamic and wave models have been considered to create the scenarios efficiently. The modular distribution in which the code has been created facilitates its use for other dispersion analysis and biophysical applications. Finally, a set of simple images are presented, aimed at informing decision-makers in order to mitigate the effects of the spill on the environment.
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