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A NEW METHOD ON FLUX MAPPING BY FUNCTION EXPANSION

机译:函数展开的磁通映射新方法

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The core flux (power) distribution is very important to safe and economical operation of nuclear reactor. It can be obtained by many methods depending on the desired accuracy and execution time. For on-line core surveillance and regulation, we need to get the real-time flux distribution. If the true local parameters such as fuel temperature, coolant temperature and material density were known, the solution of the diffusion equation with instantaneous parameters could, in principle, provide the necessary spatial details. However, in reality, it is impossible to obtain the operational "readings" of these parameters for each fuel cell. The detector results at certain locations can be applied to improve the results of the only diffusion calculations by Flux Mapping methods.Function expansion method is employed to express the approximate real distribution by the combination of several Flux Mapping method results as the expansion basis functions. The Harmonics Synthesis Method (HSM) and Least-Square method are combined to get a new Flux Mapping method in this paper. The simulation results show that the new method can be used for Flux Mapping and get better results.
机译:堆芯通量(功率)的分布对于核反应堆的安全和经济运行非常重要。根据所需的精度和执行时间,可以通过许多方法来获得它。对于在线核心监视和监管,我们需要获取实时流量分布。如果知道真实的局部参数(例如燃料温度,冷却剂温度和材料密度),则具有瞬时参数的扩散方程的求解原则上可以提供必要的空间细节。然而,实际上,不可能获得每个燃料电池的这些参数的操作“读数”。可以将某些位置的检测器结果用于通过通量映射法改善唯一扩散计算的结果。 通过将几种通量映射方法的结果作为展开基函数的组合,使用函数展开法来表示近似实数分布。本文将谐波合成方法(HSM)和最小二乘方法相结合,得到了一种新的通量映射方法。仿真结果表明,该方法可用于磁通映射,并取得较好的效果。

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