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Development of time-dependent reaction rates to optimise predictor-corrector algorithm in ALEPH burn-up code

机译:开发时变反应速率以优化ALEPH燃耗代码中的预测校正算法

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摘要

Shells coupling Monte-Carlo transport and deterministic depletion codes are extensively used in the nuclear field to simulate material changes throughout irradiation. The dynamic behaviour of the phenomenon is described by the system of coupled ordinary differential equations, with generally a stiff matrix of coefficients that current codes keep constant in time along each burn-up interval. The matrix coefficients represent decay constants and microscopic reaction rates of the numerous nuclides involved in the calculations. For a typical burn-up problem, their determination consumes most of the required computational time while only a small fraction is spent by the depletion solver. Predictor-corrector methods have been implemented to guarantee more accurate results, but not much has been done to overcome the running time issue. This work presents a unique and innovative feature of the ALEPH Monte-Carlo burn-up code which optimises the depletion algorithm by using time-dependent matrix coefficients. Linear polynomials interpolate the evolution of the matrix coefficients along a few consecutive time steps. Then, trend curves are constructed and used to extrapolate the effective reaction rates in the following intervals, thus reducing the total required computational time spent in the neutronic calculations. This technique has been implemented in the version 2 of the ALEPH Monte-Carlo burn-up code and validated against the REBUS experimental benchmark. The results revealed a considerable computational time saving without any drawbacks in the accuracy.
机译:耦合蒙特卡洛运输和确定性耗竭代码的壳层在核领域被广泛使用,以模拟整个辐照过程中的物质变化。现象的动态行为由耦合的常微分方程组描述,通常具有一个刚性系数矩阵,当前代码在每个燃尽间隔中的时间常数保持恒定。矩阵系数表示计算中涉及的许多核素的衰减常数和微观反应速率。对于典型的燃耗问题,耗时求解器仅花费一小部分时间即可确定其消耗的大部分计算时间。预测器-校正器方法已实现以确保更准确的结果,但是在克服运行时间问题方面所做的工作很少。这项工作展示了ALEPH蒙特卡洛燃尽代码的独特创新特性,该特性通过使用与时间有关的矩阵系数来优化耗尽算法。线性多项式沿着几个连续的时间步长插值矩阵系数的演变。然后,构造趋势曲线并用于在以下间隔中推断有效反应速率,从而减少了在中子学计算中花费的总计算时间。该技术已在ALEPH蒙特卡洛燃耗代码的版本2中实现,并已通过REBUS实验基准进行了验证。结果表明可节省大量计算时间,而准确性没有任何缺点。

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  • 来源
    《Annals of nuclear energy》 |2013年第12期|307-315|共9页
  • 作者单位

    Institute of Advanced Nuclear Systems, SCK·CEN, Boeretang 200, 2400 Mol, Belgium,Universite Libre de Bruxelles, ULB, Avenue Franklin Roosevelt 50, 1050 Bruxelles, Belgium;

    Institute of Advanced Nuclear Systems, SCK·CEN, Boeretang 200, 2400 Mol, Belgium;

    Institute of Advanced Nuclear Systems, SCK·CEN, Boeretang 200, 2400 Mol, Belgium;

    Universite Libre de Bruxelles, ULB, Avenue Franklin Roosevelt 50, 1050 Bruxelles, Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Reaction rate; Burn-up code; Linear interpolation;

    机译:反应速度;燃尽代码;线性插值;

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