首页> 外文会议>International conference on nuclear engineering >A TIME-DEPENDENT SOLVER FOR COUPLED NEUTRON-TRANSPORT THERMAL- MECHANICS CALCULATIONS AND SIMULATION OF A GODIVA PROMPT-CRITICAL BURST
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A TIME-DEPENDENT SOLVER FOR COUPLED NEUTRON-TRANSPORT THERMAL- MECHANICS CALCULATIONS AND SIMULATION OF A GODIVA PROMPT-CRITICAL BURST

机译:中子传输热力学耦合计算的时变求解器和GODIVA瞬发临界爆裂的模拟

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The present paper describes a first step taken at the Paul Scherrer Institut in the development of a new multi-physics platform for reactor analysis. Such platform is based on the finite-volume software OpenFOAM and aims at a tightly coupled description of neutron transport, thermal mechanics and fluid dynamics. For this purpose, a steady-state 3-D discrete ordinates/thermal-mechanics solver was first developed in collaboration with the Politecnico di Milano. The present work briefly discusses such solver and its preliminary validation, which will be described in detail in parallel publications. It then focuses on its extension to time-dependent simulations. The solver is first tested by simulating different step-wise reactivity insertions in a critical configuration constituted by an infinite slab of highly enriched uranium. Subsequently, a super-prompt-critical power burst in the Godiva reactor has been simulated. Godiva was a spherical assembly of highly enriched uranium built and operated at the Los Alamos National Laboratory (US) during the Fifties. A prompt-critical transient in such system configures as a quick power excursion (up to ~10 GW), which causes a temperature rise, and a subsequent reactivity reduction via expansion of the sphere. The overall transient lasts for few fractions of a millisecond. Results obtained with the newly developed model have been compared to experimental results, showing a relatively good agreement.
机译:本文描述了Paul Scherrer研究所在开发用于反应堆分析的新多物理平台上迈出的第一步。这样的平台基于有限体积的软件OpenFOAM,旨在对中子传输,热力学和流体动力学进行紧密耦合的描述。为此,首先与米兰理工大学合作开发了稳态3D离散纵坐标/热力学求解器。本工作简要讨论了这种求解器及其初步验证,将在并行出版物中对其进行详细描述。然后,将重点放在扩展到与时间有关的仿真上。首先通过模拟由无限富高铀平板构成的临界配置中的不同逐步反应插入来测试求解器。随后,模拟了戈迪瓦反应堆中的超快速临界功率爆发。 Godiva是五十年代在洛斯阿拉莫斯国家实验室(US)建造和运行的高浓缩铀球形组件。这种系统中的瞬态临界瞬态配置为快速功率偏移(最大〜10 GW),这会引起温度上升,并随后由于球体膨胀而降低反应性。整个瞬态持续几毫秒的时间。使用新开发的模型获得的结果已与实验结果进行了比较,显示出相对较好的一致性。

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