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A VARIABLE-ORDER TIME-DEPENDENT NEUTRON TRANSPORT METHOD FOR NUCLEAR REACTOR KINETICS USING ANALYTICALLY-INTEGRATED SPACE-TIME CHARACTERISTICS

机译:解析时空特征的核反应堆动力学的变数时变中子传输方法

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A new time-dependent neutron transport method based on the method of characteristics (MOC) has been developed. Whereas most spatial kinetics methods treat time dependence through temporal discretization, this new method treats time dependence by defining the characteristics to span space and time. In this implementation regions are defined in space-time where the thickness of the region in time fulfills an analogous role to the time step in discretized methods. The time dependence of the local source is approximated using a truncated Taylor series expansion with high order derivatives approximated using backward differences, permitting the solution of the resulting space-time characteristic equation. To avoid a drastic increase in computational expense and memory requirements due to solving many discrete characteristics in the space-time planes, the temporal variation of the boundary source is similarly approximated. This allows the characteristics in the space-time plane to be represented analytically rather than discretely, resulting in an algorithm comparable in implementation and expense to one that arises from conventional time integration techniques. Furthermore, by defining the boundary flux time derivative in terms of the preceding local source time derivative and boundary flux time derivative, the need to store angularly-dependent data is avoided without approximating the angular dependence of the angular flux time derivative. The accuracy of this method is assessed through implementation in the neutron transport code DeCART. The method is employed with variable-order local source representation to model a TWIGL transient. The results demonstrate that this method is accurate and more efficient than the discretized method.
机译:基于特征方法(MOC),开发了一种新的时变中子输运方法。尽管大多数空间动力学方法通过时间离散化来处理时间依赖性,但是这种新方法通过定义跨越空间和时间的特征来处理时间依赖性。在该实施方式中,在时空中定义区域,其中该区域的厚度在时间上实现与离散方法中的时间步长类似的作用。使用截断的泰勒级数展开来近似本地源的时间相关性,其中泰勒级数展开是使用向后差分来近似的高阶导数,从而可以解决由此产生的时空特性方程。为了避免由于解决时空平面中的许多离散特性而导致的计算费用和内存需求的急剧增加,对边界源的时间变化进行了类似的近似估算。这允许时空平面中的特征被解析地而不是离散地表示,从而导致在实现和费用上与传统时间积分技术产生的算法相当的算法。此外,通过根据先前的本地源时间导数和边界通量时间导数定义边界通量时间导数,避免了在不近似角通量时间导数的角度依赖性的情况下存储与角度相关的数据的需要。该方法的准确性通过中子传输代码DeCART中的实现进行评估。该方法与可变阶本地源表示一起使用,以对TWIGL瞬态进行建模。结果表明,该方法比离散化方法准确,有效。

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