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CRANE: A NEW SCALE SUPER-SEQUENCE FOR NEUTRON TRANSPORT CALCULATIONS

机译:起重机:中子传输计算的新规模超级序列

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A new "super-sequence" called CRANE has been developed to automate the application of reduced order modeling (ROM) to reactor analysis calculations under the SCALE code environment. This new super-sequence is designed to support computationally intensive analyses that require repeated execution of flux solvers with variations in design parameters and nuclear data. This manuscript provides a brief overview of CRANE and demonstrates its applications to representative reactor physics calculations. Specifically, two ROM applications are demonstrated, the intersection subspace-based approach for uncertainty quantification which is intended to reduce the number of uncertainty sources in a conventional uncertainty analysis, and the exact-to-precision generalized perturbation theory methodology intended as a physics-based surrogate model to replace the flux solver, i.e., NEWT. Our overarching goal is to provide a prototypic ROM capability that allows users to further explore and investigate the benefits of using ROM methods in their respective domain and help guide further developments of the methodology and evolution of the tools.
机译:已经开发出一种新的“超级序列”,已开发出CRANE,以自动在规模代码环境下将阶数建模(ROM)的应用程序应用于反应堆分析计算。这种新的超级序列旨在支持计算密集型分析,这些分析需要重复执行助焊剂溶剂,其中设计参数和核数据的变化。此手稿提供了起重机的简要概述,并展示了其代表反应堆物理计算的应用。具体地,证明了两个ROM应用,基于交叉子空间的不确定量化方法,该方法旨在减少传统的不确定性分析中不确定性来源的数量,以及旨在作为基于物理学的精确精密广义扰动理论方法代理模型更换助焊剂求解器,即纽特。我们的总体目标是提供一种原型ROM功能,允许用户进一步探索和调查在各自的域中使用ROM方法的好处,并帮助指导工具的方法和演化的进一步发展。

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