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Verification and improvement of dynamic motion model in MARS for marine reactor thermal-hydraulic analysis under ocean condition

机译:海洋条件下海洋反应堆热工水力分析中MARS动态运动模型的验证与改进

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Unlike land-based nuclear power plants, a marine or floating reactor is affected by external forces due to ocean conditions. These external forces can cause additional accelerations and affect each system and equipment of the marine reactor. Therefore, in designing a marine reactor and evaluating its performance and stability, a thermal hydraulic safety analysis code is necessary to consider the thermal hydrodynamic effects of ship motion. MARS, which is a reactor system analysis code, includes a dynamic motion model that can simulate the thermal-hydraulic phenomena under three-dimensional motion by calculating the body force term included in the momentum equation. In this study, it was verified that the dynamic motion model can simulate fluid motion with reasonable accuracy using conceptual problems. In addition, two modifications were made to the dynamic motion model; first, a user-supplied table to simulate a realistic ship motion was implemented, and second, the flow regime map determination algorithm was improved by calculating the volume inclination information at every time step if the dynamic motion model was activated. With these modifications, MARS could simulate the thermal-hydraulic phenomena under ocean motion more realistically.
机译:与陆基核电站不同,海洋或浮动反应堆受海洋条件的影响而受到外力的影响。这些外力会导致额外的加速度,并影响船用反应堆的每个系统和设备。因此,在设计船用反应堆并评估其性能和稳定性时,需要热液安全分析代码来考虑船舶运动的热流体动力效应。 MARS是反应堆系统分析代码,其中包括一个动态运动模型,该模型可以通过计算动量方程中包含的体力项来模拟三维运动下的热工现象。在这项研究中,已验证了动态运动模型可以使用概念问题以合理的精度模拟流体运动。此外,对动态运动模型进行了两次修改;首先,实现了用户提供的表来模拟现实的船舶运动;其次,如果激活了动态运动模型,则通过在每个时间步计算体积倾斜度信息来改进流态图确定算法。通过这些修改,MARS可以更真实地模拟海洋运动下的热工现象。

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