乏燃料运输容器二维辐射屏蔽优化分析

Two-Dimensional Radiation Shielding Optimization Analysis of Spent Fuel Transport Container

  • 摘要: 智能辐射屏蔽优化设计软件平台是基于遗传算法程序和一维离散纵标程序ANISN而开发的一维多目标屏蔽优化程序。使用该程序对乏燃料运输容器进行辐射屏蔽优化设计,构建了乏燃料运输容器多目标优化辐射屏蔽设计的计算模型,对乏燃料运输容器重量和外部剂量率进行了优化计算,并使用蒙特卡罗程序MCNP/4C进行校核计算。优化后乏燃料运输容器重量为原来的81.1%,剂量率下降到原来的65.4%以下。该程序计算结果与MCNP/4C校核计算结果最大偏差小于5%。计算结果证明了优化设计方案的可行性并验证了该程序计算的正确性。

     

    Abstract: The intelligent radiation shielding optimization design software platform is a one-dimensional multi-target radiation shielding optimization program which is developed on the basis of the genetic algorithm program and one-dimensional discrete ordinate program—ANISN. This program was applied in the optimization design analysis of the spent fuel transport container radiation shielding. The multi-objective optimization calculation model of the spent fuel transport container radiation shielding was established, and the optimization calculation of the spent fuel transport container weight and radiation dose rate was carried by this program. The calculation results were checked by Monte-Carlo program—MCNP/4C. The results show that the weight of the optimized spent fuel transport container decreases to 81.1% of the origin and the radiation dose rate decreases to below 65.4% of the origin. The maximum deviation between the calculated values from the program and the MCNP is below 5%. The results show that the optimization design scheme is feasible and the calculation result is correct.

     

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