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Capturing the dance of the earth: PolarGlobe: Real-time scientific visualization of vector field data to support climate science

机译:捕捉地球的舞蹈:Polarglobe:矢量现场数据的实时科学可视化,以支持气候科学

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This paper introduces a streamline visualization technique that empowers PolarGlobe, an interactive, virtual globe-based, multi-dimensional scientific visualization tool to facilitate the observation and visual inspection of changes in the climate in real time. Specifically, this technique achieves effective visualization of vector-based earth science data through an automated data processing pipeline which integrates novel strategies including random seeding, finer-granularity parallelization and real-time rendering. The random seeding strategy allows for a vivid visual effect and an interactive framerate regardless of the spatial resolution in the raw dataset. The visualization algorithm is designed to be naturally parallelizable by partitioning the rendering tasks of unsteady vector field into multiple subtasks such that high-performance rendering can be realized. The platform is capable of taking either irregular or regular gridded data as input, and through the proposed data (re)projection pipeline, an automatic transformation of spatially enabled scientific data from the original data projection to the 3D globe-based virtual space is achieved. A series of experiments was conducted to identify the best configuration of rendering parameters to achieve the optimal rendering performance and visual effect. The results demonstrated the scalability and capability of the proposed PolarGlobe system to visualize big and unsteady vector flow data across different spatial and temporal scales. PolarGlobe implements former Vice President Al Gore's vision of a digital earth that enables scientists and citizens across the world to interactively study our planet. We expect the methods and techniques presented in this work to contribute significantly to both the scientific visualization and climate science communities.
机译:本文介绍了一种精简可视化技术,使得偏光剧,互动,虚拟地球基,多维科学可视化工具,以便于实时观察和目视检查气候变化。具体地,该技术通过自动数据处理管道实现了基于矢量的地球科学数据的有效可视化,该管道集成了包括随机播种的新颖策略,更精细的粒度并行化和实时渲染。无论原始数据集中的空间分辨率如何,随机播种策略允许生动的视觉效果和交互式帧。可视化算法旨在通过将非定常矢量字段的渲染任务分成多个子任务来自然并行,使得可以实现高性能渲染。该平台能够以不规则或常规的网格数据作为输入,并且通过所提出的数据(RE)投影管道,实现了从原始数据投影到3D全球虚拟空间的空间启用的科学数据的自动转换。进行了一系列实验以确定渲染参数的最佳配置,以实现最佳的渲染性能和视觉效果。结果表明了所提出的PolarGlobe系统的可扩展性和能力,以在不同的空间和时间尺度上可视化大型和非定常矢量流数据。 Polarglobe实施前副总统Al Gore对数字地球的愿景,使世界各地的科学家和公民能够互动地研究我们的星球。我们预计这项工作中提出的方法和技术将对科学可视化和气候科学社区进行了重大贡献。

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