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Linear programming approach for optimization of radionuclide loading in vitrified HLW

机译:线性规划法优化玻璃化高放废物中放射性核素的负载

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摘要

A linear programming approach has been developed to determine maximum mass loading of radionuclides in vitrified high-level waste (HLW). Linear approximation for the centerline temperature of vertically stacked cylindrical HLW canisters has been developed by assuming constant heat flux from a canister, steady-state heat transfer, natural convection, and by neglecting radiation effects. With the linear formula for the centerline temperature, it has been demonstrated that maximum radionuclide mass loading can be determined by the linear programming model conservatively. A numerical result for vitrification of HLW from PUREX reprocessing of pressurized water reactor spent fuel indicates that the maximum temperature constraint is one of the essential constraints in determining the feasible solution space for optimization if the heat emission from the waste is in a certain range (between 11.2 and 24.5 W/kg in this example).
机译:已经开发出一种线性规划方法来确定玻璃化高放废物(HLW)中放射性核素的最大质量负载。通过假设来自罐的恒定热通量,稳态传热,自然对流以及忽略辐射效应,已开发出垂直堆叠的圆柱形HLW罐的中心线温度的线性近似。利用中心线温度的线性公式,已证明可以通过线性规划模型保守地确定最大放射性核素质量负载。压水堆乏燃料的PUREX后处理对高放废物进行玻璃化的数值结果表明,如果废物的热量排放在一定范围内(介于两者之间),则最大温度约束是确定可行的优化方案空间的基本约束之一。在此示例中为11.2和24.5 W / kg)。

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