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SCALE 6.2 CONTINUOUS-ENERGY TSUNAMI-3D CAPABILITIES

机译:规模6.2连续海啸3D能力

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The TSUNAMI (Tools for Sensitivity and UNcertainty Analysis Methodology Implementation) capabilities within the SCALE code system make use of sensitivity coefficients for an extensive number of criticality safety applications, such as quantifying the data-induced uncertainty in the eigenvalue of critical systems, assessing the neutronic similarity between different systems, quantifying computational biases, and guiding nuclear data adjustment studies. The need to model geometrically complex systems with improved ease of use and fidelity and the desire to extend TSUNAMI analysis to advanced applications have motivated the development of a SCALE 6.2 module for calculating sensitivity coefficients using three-dimensional (3D) continuous-energy (CE) Monte Carlo methods: CE TSUNAMI-3D. This paper provides an overview of the theory, implementation, and capabilities of the CE TSUNAMI-3D sensitivity analysis methods. CE TSUNAMI contains two methods for calculating sensitivity coefficients in eigenvalue sensitivity applications: (1) the Iterated Fission Probability (IFP) method and (2) the Contributon-Linked eigenvalue sensitivity/Uncertainty estimation via Track length importance CHaracterization (CLUTCH) method. This work also presents the GEneralized Adjoint Response in Monte Carlo method (GEAR-MC), a first-of-its-kind approach for calculating adjoint-weighted, generalized response sensitivity coefficients-such as flux responses or reaction rate ratios-in CE Monte Carlo applications. The accuracy and efficiency of the CE TSUNAMI-3D eigenvalue sensitivity methods are assessed from a user perspective in a companion publication, and the accuracy and features of the CE TSUNAMI-3D GEAR-MC methods are detailed in this paper.
机译:SCALE代码系统中的TSUNAMI(灵敏度和不确定性分析方法实施工具)功能将灵敏度系数用于大量的临界安全应用,例如量化关键系统特征值中数据引起的不确定性,评估中子学不同系统之间的相似性,量化计算偏差并指导核数据调整研究。需要对几何形状复杂的系统进行建模,以提高其易用性和保真度,并希望将TSUNAMI分析扩展到高级应用程序,这激发了SCALE 6.2模块的发展,该模块可使用三维(3D)连续能量(CE)计算灵敏度系数蒙特卡洛方法:CE TSUNAMI-3D。本文概述了CE TSUNAMI-3D灵敏度分析方法的理论,实现和功能。 CE TSUNAMI包含两种在特征值灵敏度应用中计算灵敏度系数的方法:(1)迭代裂变概率(IFP)方法和(2)通过轨道长度重要性C表征(CLUTCH)方法进行的关联贡献特征值灵敏度/不确定性估计。这项工作还提出了通用蒙特卡洛方法的伴随响应(GEAR-MC),这是首个用于计算伴随加权的广义响应灵敏度系数(例如通量响应或反应速率比)的CE Monte方法卡罗应用程序。 CE TSUNAMI-3D特征值灵敏度方法的准确性和效率是从用户角度在随附出版物中评估的,并且本文详细介绍了CE TSUNAMI-3D GEAR-MC方法的准确性和功能。

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