分布式计算环境下融合仿真工作流的高级工具

M. Plóciennik, T. Zok, M. Owsiak, B. Palak, B. Guillerminet, Y. Frauel, F. Imbeaux, B. Scott
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引用次数: 3

摘要

本文描述了欧洲综合托卡马克建模工作组(ITM-TF)工作的选定方面。它涵盖了与向聚变科学家提供聚变建模和仿真软件框架相关的最新发展主题。提出的框架为研究人员提供了一个易于使用的、基于工作流的科学计算环境。它允许在众多分布式计算资源中直接从用户友好、直观的界面执行各种应用程序。我们介绍了在开发易于使用的工具方面的最新进展,这些工具允许将物理代码集成到科学工作流程中,从而将工作安排到不同的基础设施中。所提出的方法提供了一种访问大量计算资源的简单方法,同时隐藏了过程的复杂性。它允许轻松扩展现有的仿真场景和快速原型。讨论了工作流环境与运行作业之间交互通信的几个方面。在讨论的基于工作流的解决方案的背景下,给出了两个实际用例的结果:参数化研究和等离子体湍流工作流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High level tools for fusion simulations workflows in distributed computing environment
This paper describes chosen aspects of the European Integrated Tokamak Modelling Task Force (ITM-TF) effort. It covers topics related to latest developments towards providing fusion scientists with a software framework for fusion modeling and simulation. The proposed framework provides researchers with an easy to use, workflow based environment for scientific computations. It allows the execution of various applications in numerous distributed computational resources directly from a user friendly, intuitive interface. We present the latest advances in the development of easy to use tools allowing the integration of the physics codes into the scientific workflows that schedule jobs to different infrastructures. The presented approach provides a simple way to access extensive computational resources and hides the complexity of the process at the same time. It allows for easy extension of existing simulation scenarios and fast prototyping. Some aspects of interactive communication between workflow environment and running jobs are discussed. Results of two practical use cases are presented in the context of the discussed workflow based solution: a parametric study and a plasma turbulence workflow.
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