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首页> 外文期刊>Nuclear engineering and technology >Extension of the NEAMS workbench to parallel sensitivity and uncertainty analysis of thermal hydraulic parameters using Dakota and Nek5000
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Extension of the NEAMS workbench to parallel sensitivity and uncertainty analysis of thermal hydraulic parameters using Dakota and Nek5000

机译:使用Dakota和Nek5000扩展NIMAS工作台与热液压参数的平行灵敏度和不确定度分析

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摘要

With the increasing availability of high-performance computing (HPC) platforms, uncertainty quantification (UQ) and sensitivity analyses (SA) can be efficiently leveraged to optimize design parameters of complex engineering problems using modeling and simulation tools. The workflow involved in such studies heavily relies on HPC resources and hence requires pre-processing and post-processing capabilities of large amounts of data along with remote submission capabilities. The NEAMS Workbench addresses all aspects of the workflows involved in these studies by relying on a user-friendly graphical user interface and a python application program interface.This paper highlights the NEAMS Workbench capabilities by presenting a semiautomated coupling scheme between Dakota and any given package integrated with the NEAMS Workbench, yielding a simplified workflow for users. This new capability is demonstrated by running a SA of a turbulent flow in a pipe using the open-source Nek5000 CFD code. A total of 54 jobs were run on a HPC platform using the remote capabilities of the NEAMS Workbench. The results demonstrate that the semiautomated coupling scheme involving Dakota can be efficiently used for UQ and SA while keeping scripting tasks to a minimum for users. All input and output files used in this work are available inhttps://code.ornl.gov/neams-workbench/dakota-nek5000-study.
机译:随着高性能计算(HPC)平台的不断增加,可以有效地利用不确定量化(UQ)和灵敏度分析(SA),以优化使用建模和仿真工具的复杂工程问题的设计参数。此类研究中涉及的工作流程依赖于HPC资源,因此需要预处理和后处理能力大量数据以及远程提交功能。 NIMAS Workbench通过依赖于用户友好的图形用户界面和Python应用程序接口来解决这些研究中涉及的工作流程的所有方面。本文通过在达科他州和任何给定的包之间呈现半动物耦合方案来突出显示NIMAS工作台功能使用NIMAS Workbench,为用户提供简化的工作流程。通过使用开源NEK5000 CFD代码运行管道中的湍流的SA来证明这种新能力。使用NIMAS Workbench的远程功能,共有54个作业在HPC平台上运行。结果表明,涉及达科他达的半报道耦合方案可以有效地用于UQ和SA,同时将脚本任务保留到用户最小。本工作中使用的所有输入和输出文件都是inhttps://code.ornl.gov/neams-workbench/dakota-nek5000-study。

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