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Pronghorn A Porous Media Thermal Hydraulics Core Simulator and its Validation ith the SANA Experiments

机译:Pronghorn A多孔介质热工水力模拟器及其在SANA实验中的验证

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Pebble bed High Temperature Reactors (HTRs) are characterized by many advantageous design features, such as excellent passive heat removal in accidents, large margins to fuel failure, and online refueling potential. However, a significant challenge in the core modeling of pebble bed reactors is the complex fuel-coolant structure. This paper presents a new porous media simulation code. Pronghorn, that aims to alleviate modeling challenges for pebble bed reactors by providing a fast-running, medium-fidelity core simulator. Pronghorn is intended to accelerate the design and analysis cycle for pebble bed and prismatic HTRs by permitting fast scoping studies and providing boundary conditions for systems-level analysis. Pronghorn is built on the Multiphysics Object-Oriented Simulation Environment (MOOSE) using modern software practices and a thorough testing framework. This paper describes the physical models used in Pronghorn and demonstrates Pronghorn s capability for modeling gas-cooled pebble bed HTRs by presenting simulation results obtained for the German SANA pebble bed decay heat experiments. Within the limitations of the porous media approximation and existing available closure relationships. Pronghorn predicts the SANA experimental pebble temperatures well, expanding the code's validation base. A brief code-to-code comparison shows a level of accuracy comparable to other porous media simulation tools. Pronghorn's advantages over these related tools include: an arbitrary equation of state, unstructured mesh capabilities, compressible flow models, the ability to couple to MOOSE fuels performance and systems-level thermal-hydraulics codes, and modern software design.
机译:卵石床高温反应堆(HTR)的特点是具有许多有利的设计特征,例如事故中出色的被动除热,较大的燃料故障余量以及在线加油的潜力。然而,卵石床反应堆核心模型的一个重大挑战是复杂的燃料-冷却剂结构。本文提出了一种新的多孔介质模拟代码。 Pronghorn旨在通过提供一个快速运行的中保真堆芯模拟器来减轻卵石床反应器的建模挑战。 Pronghorn旨在通过允许进行快速范围研究并为系统级分析提供边界条件,从而加快卵石床和棱柱形HTR的设计和分析周期。 Pronghorn基于Multiphysics面向对象的仿真环境(MOOSE),使用现代软件实践和全面的测试框架构建。本文介绍了Pronghorn中使用的物理模型,并通过介绍德国SANA卵石床衰减热实验获得的模拟结果,证明了Pronghorn的能力对气冷卵石床HTR进行建模。在多孔介质近似值和现有可用封闭关系的限制范围内。 Pronghorn预测SANA实验卵石的温度很好,从而扩展了代码的验证基础。简短的代码与代码比较显示出与其他多孔介质仿真工具相当的准确性。 Pronghorn与这些相关工具相比的优势包括:任意状态方程,非结构化网格功能,可压缩流动模型,与MOOSE燃料性能和系统级热工液压代码耦合的能力以及现代软件设计。

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