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Three-dimensional visualization of ensemble weather forecasts – Part 1: The visualization tool Met.3D (version 1.0)

机译:天气预报的三维可视化–第1部分:可视化工具Met.3D(1.0版)

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摘要

We present "Met.3D", a new open-source tool for the interactive three-dimensional (3-D) visualization of numerical ensemble weather predictions. The tool has been developed to support weather forecasting during aircraft-based atmospheric field campaigns; however, it is applicable to further forecasting, research and teaching activities. Our work approaches challenging topics related to the visual analysis of numerical atmospheric model output – 3-D visualization, ensemble visualization and how both can be used in a meaningful way suited to weather forecasting. Met.3D builds a bridge from proven 2-D visualization methods commonly used in meteorology to 3-D visualization by combining both visualization types in a 3-D context. We address the issue of spatial perception in the 3-D view and present approaches to using the ensemble to allow the user to assess forecast uncertainty. Interactivity is key to our approach. Met.3D uses modern graphics technology to achieve interactive visualization on standard consumer hardware. The tool supports forecast data from the European Centre for Medium Range Weather Forecasts (ECMWF) and can operate directly on ECMWF hybrid sigma-pressure level grids. We describe the employed visualization algorithms, and analyse the impact of the ECMWF grid topology on computing 3-D ensemble statistical quantities. Our techniques are demonstrated with examples from the T-NAWDEX-Falcon 2012 (THORPEX – North Atlantic Waveguide and Downstream Impact Experiment) campaign.
机译:我们介绍“ Met.3D”,这是一种新的开放源代码工具,用于数字合奏天气预报的交互式三维(3-D)可视化。开发了该工具以支持基于飞机的大气野战期间的天气预报;但是,它适用于进一步的预测,研究和教学活动。我们的工作涉及与大气数值模型输出的可视化分析相关的具有挑战性的主题– 3-D可视化,整体可视化以及如何将二者以有意义的方式用于天气预报。 Met.3D通过在3-D环境中结合两种可视化类型,搭建了从气象学中常用的经过验证的2-D可视化方法到3-D可视化的桥梁。我们在3D视图中解决了空间感知的问题,并提出了使用整体方法让用户评估预测不确定性的方法。交互性是我们方法的关键。 Met.3D使用现代图形技术在标准消费类硬件上实现交互式可视化。该工具支持来自欧洲中型天气预报中心(ECMWF)的预报数据,并且可以直接在ECMWF混合sigma-pressure水平网格上运行。我们描述了采用的可视化算法,并分析了ECMWF网格拓扑对计算3-D总体统计量的影响。 T-NAWDEX-Falcon 2012(THORPEX –北大西洋波导和下游撞击实验)活动的示例演示了我们的技术。

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