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首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >A method to optimize the shield compact and lightweight combining the structure with components together by genetic algorithm and MCNP code
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A method to optimize the shield compact and lightweight combining the structure with components together by genetic algorithm and MCNP code

机译:一种用遗传算法和MCNP代码将结构与组件组合在一起的屏蔽紧凑和轻质的方法

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摘要

To optimize the shield for neutrons and gamma rays compact and lightweight, a method combining the structure and components together was established employing genetic algorithms and MCNP code. As a typical case, the fission energy spectrum of U-235 which mixed neutrons and gamma rays was adopted in this study. Six types of materials were presented and optimized by the method. Spherical geometry was adopted in the optimization after checking the geometry effect. Simulations have made to verify the reliability of the optimization method and the efficiency of the optimized materials. To compare the materials visually and conveniently, the volume and weight needed to build a shield are employed. The results showed that, the composite multilayer material has the best performance.
机译:为了优化中子和伽马光线的屏蔽紧凑轻便,建立了将结构和部件组合在一起的方法,采用遗传算法和MCNP代码。 作为典型案例,本研究采用了U-235的U-235的裂变能谱和γ射线。 通过该方法提出和优化了六种材料。 在检查几何效应后,优化采用球面几何。 模拟已经验证了优化方法的可靠性和优化材料的效率。 为了在视觉和方便地进行比较材料,采用构建屏蔽所需的体积和重量。 结果表明,复合多层材料具有最佳性能。

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