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Analysis of Fractional-order Point Reactor Kinetics Model with Adiabatic Temperature Feedback for Nuclear Reactor with Subdiffusive Neutron Transport

机译:具有亚达菲尔中子运输的核反应堆绝热温度反馈的分数级响应器动力学模型分析

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In this paper, a fractional-order nonlinear model is developed for the nuclear reactor with subdiffusive neutron transport. The proposed fractional-order point reactor kinetics model is a system of three coupled, nonlinear differential equations. The model represents subprompt critical condition. The nonlinearity in the model is due to the adiabatic temperature feedback of reactivity. This model originates from the fact that neutron transport inside the reactor core is subdiffusion and should be better modeled using fractional-order differential equations. The proposed fractional-order model is analyzed for step and sinusoidal reactivity inputs. The stiff system of differential equations is solved numerically with Adams-Bashforth-Moulton method. The proposed model is stable with self-limitting power excursions. The issue of convergence of this method for the proposed model for different values of fractional derivative order is also discussed.
机译:本文采用诸着柔性中子传输的核反应堆开发了分数级非线性模型。所提出的分数级点电抗器动力学模型是三个耦合的非线性微分方程的系统。该模型表示次要临界条件。模型中的非线性是由于反应性的绝热反馈。该模型起源于反应器内部的中子传输是低偏移的,并且应该使用分数级微分方程更好地建模。分析所提出的分数阶模型进行步骤和正弦反应性输入。用Adams-Bashforth-Moulton方法在数值上进行差动方程的刚性系统。所提出的模型具有自限制电源偏移稳定。还讨论了用于不同数值的分数衍生顺序的不同值的提出模型的这种方法的收敛性问题。

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