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首页> 外文期刊>Nuclear technology & radiation protection >VARIATIONAL METHODS AND SPEED-UP OF MONTE CARLO PERTURBATION COMPUTATIONS FOR OPTIMAL DESIGN IN NUCLEAR SYSTEMS
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VARIATIONAL METHODS AND SPEED-UP OF MONTE CARLO PERTURBATION COMPUTATIONS FOR OPTIMAL DESIGN IN NUCLEAR SYSTEMS

机译:核系统最优设计的蒙特卡洛摄动计算的变分方法和加速

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Seeking optimal material distribution in a nuclear system to maximize a response function of interest has been a subject of considerable interest in nuclear engineering. Examples are the optimal fuel distribution in a nuclear reactor core to achieve uniform burnup using minimum critical mass and the use of composite materials with an optimal mix of constituent elements in detection systems and radiation shielding. For such studies, variational methods have been found to be useful but, they have been used for standalone analyses often restricted to idealized models, while more elaborate design studies have required computationally expensive Monte Carlo simulations ill-suited to iterative schemes for optimization. Such an inherent disadvantage of Monte Carlo methods changed with the development of perturbation algorithms but, their efficiency is still dependent on the reference configuration for which a hit-and-trial approach is often used. In the first illustrative example, this paper explores the computational speedup for a bare cylindrical reactor core, achievable by using a variational result to enhance the computational efficiency of Monte Carlo design optimization simulation. In the second example, the effect of non-uniform material density in a fixed-source problem, applicable to optimal moderator and radiation shielding, is presented. While applications of this work are numerous, the objective of this paper is to present preliminary variational results as inputs to elaborate stochastic optimization by Monte Carlo simulation for large and realistic systems.
机译:在核系统中寻求最佳材料分布以最大化感兴趣的响应函数一直是核工程领域的一个重要课题。例如,在核反应堆堆芯中使用最小临界质量实现均匀燃烧的最佳燃料分配,以及在检测系统和辐射屏蔽系统中使用具有最佳成分混合的复合材料。对于此类研究,已发现变分方法是有用的,但它们已用于通常限于理想化模型的独立分析,而更复杂的设计研究则需要计算量大的蒙特卡洛模拟,不适合用于优化的迭代方案。蒙特卡洛方法的这种固有缺点随着微扰算法的发展而改变,但是它们的效率仍然取决于参考配置,对于该参考配置,经常采用“即插即用”方法。在第一个说明性示例中,本文探讨了通过使用变分结果来提高蒙特卡洛设计优化仿真的计算效率而可以实现的裸圆柱反应堆堆芯的计算速度。在第二个示例中,提出了固定源问题中材料密度不均匀的影响,适用于最佳减速器和辐射屏蔽。尽管这项工作的应用众多,但本文的目的是提出初步的变分结果,作为通过蒙特卡罗模拟对大型和现实系统进行详细的随机优化的输入。

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