Collaborative Research: EarthCube Capabilities: Raijin: Community Geoscience Analysis Tools for Unstructured Mesh Data
Collaborative Research: EarthCube Capabilities: Raijin: Community Geoscience Analysis Tools for Unstructured Mesh Data
批准号:
2126458
负责人:
John Clyne
金额:
$87.99万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2021
资助国家:
美国
项目状态:
已结题
起止时间:
2021-09-01 至 2024-08-31
中文摘要
用于模拟地球气候和全球天气的下一代数值模式代表了人类在现实和准确地模拟地球系统方面的重大进步。这些新模型解决了复杂的数学方程,这些方程描述了地球海洋和大气在空间尺度上的运动、化学和能量转移,精确到足以捕捉单个风暴。因此,这些所谓的“全球风暴解析模式”(GSRMs)产生了大量的数值数据。此外,这些数据的结构比目前的模型复杂得多。这项工作的目标是开发并为全球天气和气候建模社区提供他们需要的软件工具,以理解这些庞大而复杂的数据集。如果没有有效地探索和询问GSRM输出的能力,这些新模型的价值将受到极大的限制。Project Raijin创建的工具将在开源许可下开发,并免费提供给世界上任何想要使用甚至改进它们的人。由非结构化网格“动力核心”实现的全球天气和气候建模社区向千米尺度分辨率的转变带来了双重成本。首先,模型分辨率的提高导致大量数据的输出,进一步加剧了“大数据”问题。其次,现有的通用软件工具通常用于分析、后处理和可视化地球科学模型输出,主要用于结构化网格数据,很少或根本不支持非结构化网格。这个名为Raijin的项目的目标是通过开发社区拥有的、可持续的、可扩展的工具,促进对非结构化气候和全球天气数据的操作,从而增强分析和可视化工具的前景。通过与大气建模者的密切合作,研究人员计划:开发可扩展的、可扩展的、开源的工具,支持基础分析和可视化方法,能够在全球风暴分辨率的非结构化网格模型输出上直接操作(无需重新采样);和2。建立一个活跃的,充满活力的用户贡献者社区,致力于将我们的工作扩展到项目范围之外,并帮助确保项目的长期可持续性。这项工作的主要环境将是科学Python生态系统。研究人员将特别利用nsf支持的开放开发Xarray和Dask包,以及Pangeo社区。为了更好地支持我们的两个主要目标,我们的工作将在开放的开发模式下进行,鼓励参与项目开发的各个方面。该奖项反映了美国国家科学基金会的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
The next generation of numerical models used to simulate the Earth’s climate and global weather represent a significant advancement in humanity’s ability to realistically and accurately model the Earth System. These new models solve complex mathematical equations that describe the motion, chemistry, and energy transfer of the planet’s oceans and atmosphere at spatial scales fine enough to capture individual storms. As a result, these so-called “Global Storm Resolving Models” (GSRMs) generate tremendous amounts of numerical data. Moreover, the structure of these data is far more complex than it is for current models. The goal of this work, Project Raijin, is to develop and provide the global weather and climate modeling communities with the software tools they need to make sense of these massive and complex data sets. Without the ability to effectively explore and interrogate GSRM outputs the value of these new models will be greatly limited. The tools created by Project Raijin will be developed under an open source license and made freely available to anyone in the world who wants to use, or even improve, them.The transition by the global weather and climate modeling communities to kilometer-scale resolutions enabled by unstructured grid “dynamical cores” comes with a two-fold cost. First, the increased model resolution results in the output of massive volumes of data, further exacerbating the “Big Data” problem. Second, the existing, general purpose software tools commonly used for analyzing, post-processing, and visualizing geoscience model outputs primarily operate on structured grid data, providing little or no support for unstructured meshes. The goal of this project, called Raijin, is to enhance the analysis and visualization tool landscape by developing community-owned, sustainable, scalable tools that facilitate operating on unstructured climate and global weather data. Working in close collaboration with atmospheric modelers the researchers plan to: 1. develop extensible, scalable, open source tools supporting fundamental analysis and visualization methods capable of operating directly (without resampling) on unstructured grid model outputs at global storm resolving resolutions; and 2. establish an active, vibrant community of user-contributors, committed to extending our work beyond the scope of this project, and helping ensure the long term sustainability of the project. The primary environment for this effort will be the Scientific Python Ecosystem. The researchers will leverage, in particular, the NSF-supported, open development Xarray and Dask packages, and the Pangeo community. To better support both of our primary goals, our work will be conducted under an open development model that encourages participation in all aspects of the project’s development.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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Collaborative Research: GEO OSE Track 2: Project Pythia and Pangeo: Building an inclusive geoscience community through accessible, reusable, and reproducible workflows
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批准号:2324303
-
项目类别:Standard Grant
-
资助金额:$71.04万
-
财政年份:2024
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负责人:John Clyne
-
依托单位:
Collaborative Research: EarthCube Data Capabilities: Project Pythia: A Community Learning Resource for Geoscientists
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批准号:2026899
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项目类别:Standard Grant
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资助金额:$69.07万
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财政年份:2020
-
负责人:John Clyne
-
依托单位:
国内基金
海外基金
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