蒸汽环境下温度循环分离效应试验锆合金包层的原位应变行为和BISON模拟

IF 3.2 2区 工程技术 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Nuclear Materials Pub Date : 2025-02-01 Epub Date: 2024-12-21 DOI:10.1016/j.jnucmat.2024.155570
Jennifer I. Espersen , Nathan A. Capps , Mackenzie J. Ridley , Sam B. Bell , Nicholas R. Brown
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引用次数: 0

摘要

了解沸水反应堆(BWRs)在预期无停堆瞬态(ATWSs)期间燃料系统的性能,对于完善当前和未来的安全限值是必要的。高保真材料模型和模拟是严格评估锆基包层性能的基础。然而,在模拟atws期间验证这些模式的实验热力学数据是有限的。为了提供相关的现场数据,在蒸汽环境下对锆合金-4包层进行了循环加热,以模拟堆外沸水堆ATWS。使用数字图像相关技术捕获包层应变行为,并与BISON有限元程序的模拟结果进行比较。为了更好地了解三种BISON模型对BWR ATWS的适用性,采用多种方案对常规高温模型进行了比较:(1)BISON中蠕变模型的默认组合,(2)高温Erbacher模型单独,(3)低温Limback-Andersson模型单独。单独使用Limback-Andersson模型运行的案例产生了最低的均方根误差(RMSE)。Limback-Andersson模型的最低RMSE为0.659%,最高RMSE为4.22%。我们还发现了模型中有关温度的数据缺口,为了解释这一缺口,BISON的当前模型在两个独立的数据集之间进行了线性插值。这一评估强调了开发新模型或改进现有模型的必要性,以捕获由循环温度瞬变引起的瞬态蠕变效应。
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In-situ strain behavior and BISON simulations of Zircaloy cladding subjected to temperature cycling separate-effects tests in a steam environment
Understanding fuel system performance during anticipated transients without scram (ATWSs) in boiling water reactors (BWRs) is necessary for refining current and future safety limits. High-fidelity material models and simulations are fundamental to rigorous assessment of zirconium-based cladding performance. However, experimental thermomechanical data during simulated ATWSs to validate these modes are limited. To provide relevant in-situ data, Zircaloy-4 cladding was subjected to cyclic heating in a steam environment to simulate an out-of-pile BWR ATWS. Digital image correlation was used to capture the cladding strain behavior in-situ for comparison against simulations using the BISON finite element code. Conventional high-temperature models were compared using multiple schemes to gain a better understanding of the applicability of three BISON models to BWR ATWS: (1) the default combination of creep models in BISON, (2) the high-temperature Erbacher model alone, and (3) the low-temperature Limback-Andersson model alone. The cases run with the Limback-Andersson model alone produced the lowest root mean square error (RMSE). The lowest RMSE for the Limback-Andersson model alone was 0.659%, and the highest RMSE reported was 4.22%. A data gap within the model in the temperature regime of interest was also identified, and to account for this gap, the current model in BISON is linearly interpolated between two separate datasets. This evaluation highlights the need to either develop a new model or to improve the existing model to capture transient creep effects resulting from a cyclic temperature transient.
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来源期刊
Journal of Nuclear Materials
Journal of Nuclear Materials 工程技术-材料科学:综合
CiteScore
5.70
自引率
25.80%
发文量
601
审稿时长
63 days
期刊介绍: The Journal of Nuclear Materials publishes high quality papers in materials research for nuclear applications, primarily fission reactors, fusion reactors, and similar environments including radiation areas of charged particle accelerators. Both original research and critical review papers covering experimental, theoretical, and computational aspects of either fundamental or applied nature are welcome. The breadth of the field is such that a wide range of processes and properties in the field of materials science and engineering is of interest to the readership, spanning atom-scale processes, microstructures, thermodynamics, mechanical properties, physical properties, and corrosion, for example. Topics covered by JNM Fission reactor materials, including fuels, cladding, core structures, pressure vessels, coolant interactions with materials, moderator and control components, fission product behavior. Materials aspects of the entire fuel cycle. Materials aspects of the actinides and their compounds. Performance of nuclear waste materials; materials aspects of the immobilization of wastes. Fusion reactor materials, including first walls, blankets, insulators and magnets. Neutron and charged particle radiation effects in materials, including defects, transmutations, microstructures, phase changes and macroscopic properties. Interaction of plasmas, ion beams, electron beams and electromagnetic radiation with materials relevant to nuclear systems.
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