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Reduced scale PWR passive safety system designing by genetic algorithms

机译:基于遗传算法的小型化压水堆被动安全系统设计

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This paper presents the concept of "Design by Genetic Algorithms (DbyGA)", applied to a new reduced scale system problem. The design problem of a passive thermal-hydraulic safety system, considering dimensional and operational constraints, has been solved. Taking into account the passive safety characteristics of the last nuclear reactor generation, a PWR core under natural circulation is used in order to demonstrate the methodology applicability. The results revealed that some solutions (reduced scale system DbyGA) are capable of reproducing, both accurately and simultaneously, much of the physical phenomena that occur in real scale and operating conditions. However, some aspects, revealed by studies of cases, pointed important possibilities to DbyGA methodological performance improvement.
机译:本文提出了“通过遗传算法设计(DbyGA)”的概念,并将其应用于新的缩减规模系统问题。解决了考虑尺寸和操作约束的被动式热工液压安全系统的设计问题。考虑到最后一代核反应堆的被动安全特性,使用自然循环下的压水堆堆芯以证明该方法的适用性。结果表明,某些解决方案(缩减规模的系统DbyGA)能够准确且同时地重现在实际规模和运行条件下发生的许多物理现象。但是,案例研究揭示的某些方面为DbyGA方法学性能的改进指出了重要的可能性。

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