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An Investigation of Power Stabilization and Space-Dependent Dynamics of a Nuclear Fluidized-Bed Reactor

机译:核流化床反应堆功率稳定和空间依赖动力学的研究

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Previous work into the space-dependent kinetics of the conceptual nuclear fluidized bed has highlighted the sensitivity of fission power to particle movements within the bed. The work presented in this paper investigates a method of stabilizing the fission power by making it less sensitive to fuel particle movement. Steady-state neutronic calculations are performed to obtain a suitable design that is stable to radial and axial fuel particle movements in the bed. Detailed spatial/temporal simulations performed using the finite element transient criticality (FETCH.) code investigate the dynamics of the new reactor design. A dual requirement of the design is that it has a moderate power output of ~300 MW(thermal).
机译:先前对概念性核流化床的空间依赖性动力学的研究突出了裂变动力对床内颗粒运动的敏感性。本文提出的工作研究了一种通过降低裂变功率对燃料颗粒运动的敏感性来稳定裂变功率的方法。进行稳态中子计算可得到对床中径向和轴向燃料颗粒运动稳定的合适设计。使用有限元瞬态临界度(FETCH。)代码执行的详细空间/时间仿真研究了新反应堆设计的动力学。设计的双重要求是它具有适中的〜300 MW(热)功率输出。

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