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Research on natural circulation flow characteristics of Floating Nuclear Power Plant in heaving motion

机译:浮式核电站升沉运动自然循环流动特性研究

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The FNPP (Floating Nuclear Power Plant) expanded the application field of Integrated Pressurized Water Reactor (IPWR) in the movable marine platform, it is necessary to study the natural circulation flow characteristics in heaving motion on the ocean. From the characteristics of FNPP, by means of THEATRe code which was based on the two-phase drift flux model and was modified by adding module calculating the effect of heaving motion, the simulation model in heaving motion was built. Using the models developed, the natural circulation operating characteristics of natural circulation in heaving motion and the transitions between forced circulation and natural circulation are analyzed. In the case of amplitude limited, the periods of mass flow rate are equal to periods of heaving motion. The oscillation amplitude of mass flow rate increases with the heaving amplitude increase. In the case of period limited, the natural circulation flow rate oscillating amplitude increases with the heaving period increases. The result obtained are not only evaluating FNPP design behavior properly but also pointing out the direction to further optimum design to ensure FNPP operating safety in heaving motion.
机译:浮动核电站(FNPP)在移动式海洋平台上扩展了综合压水堆(IPWR)的应用领域,有必要研究海洋升沉运动中的自然环流特性。根据FNPP的特点,利用基于两相漂移通量模型的剧院代码,并通过添加计算升沉运动影响的模块进行修正,建立了升沉运动仿真模型。使用开发的模型,分析了起伏运动中自然循环的自然循环运行特性以及强迫循环和自然循环之间的过渡。在幅度受限的情况下,质量流率的周期等于起伏运动的周期。质量流率的振荡幅度随着起伏幅度的增加而增加。在周期有限的情况下,自然循环流量的振荡幅度随着起伏周期的增加而增加。获得的结果不仅可以正确评估FNPP的设计性能,而且还可以指出进一步优化设计的方向,以确保FNPP在升沉运动中的操作安全性。

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