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A Comparative Study of Ten Different Methods on Numerical Solving of Point Reactor Neutron Kinetics Equations

机译:点反应器中子动力学方程数求解十种不同方法的对比研究

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Point reactor neutron kinetics equations describe the time-dependent neutron density variation in a nuclear reactor core. These equations are widely applied to nuclear system numerical simulation and nuclear power plant operational control. This paper analyzes the characteristics of ten different basic or normal methods to solve the point reactor neutron kinetics equations. The accuracy after introducing different kinds of reactivity, stiffness of methods, and computational efficiency are analyzed. The calculation results show that: considering both the accuracy and stiffness, implicit Runge–Kutta method and Hermite method are more suitable for solution on these given conditions. The explicit Euler method is the fastest, while the power series method spends the most computational time.
机译:点反应堆中子动力学方程描述核反应堆核心的时间依赖中子密度变化。 这些方程被广泛应用于核系统数值模拟和核电站运行控制。 本文分析了十种不同基本或正常方法的特点,解决点反应器中子动力学方程。 分析了引入不同种类的反应性,方法刚度和计算效率后的准确性。 计算结果表明:考虑到准确性和刚度,隐式跳闸-Kutta方法和Hermite方法更适合于这些给定条件的溶液。 显式欧拉方法是最快的,而Power系列方法花费最多的计算时间。

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