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首页> 外文期刊>Journal of nuclear science and technology >Design and Optimization Study of 10, 000MWe Very Large Fast Reactor Core
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Design and Optimization Study of 10, 000MWe Very Large Fast Reactor Core

机译:10,000MWe超大型快堆堆芯的设计与优化研究

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To answer the increasing demand for electric power in Japan, Very Large Fast Reactors of 10, 000MWe unit capacity are expected to make their appearance in due course. The paper describes the method and results of a design study on a 10, 000MWe Liquid Metal Fast Breeder Reactor. First, a reference design was obtained for this unit of unprecedented capacity by extrapolating the various characteristics of a 1, 000MWe LMFBR and the nuclear characteristics thereof were studied. It was found that reactivity increase could be reduced to about 6¢ when seven subassemblies were voided in the central part of the core, and that the increase of reactivity and the decrease of breeding ratio with time were rather large for the initial loading core.Secondly, a design optimization procedure was developed based on complex method of nonlinear programming, and the method was applied to the Very Large Fast Reactor. The process resulted in a relatively large core height and fuel pin diameter, while the power cost was improved due to enhanced breeding gain. The fuel center temperature and the coolant velocity were found close to the upper boundaries of their prescribed ranges. These results concurred qualitatively with calculations using more straightforward optimization techniques.
机译:为了满足日本不断增长的电力需求,预计将在适当时候出现容量为10,000MWe的超大型快堆。本文介绍了在10,000MWe液态金属快中子增殖反应堆上进行设计研究的方法和结果。首先,通过外推1,000MWe LMFBR的各种特性,获得了该装置的空前容量的参考设计,并对其核特性进行了研究。结果发现,当在核心的中部排空七个子组件时,反应性的增加可以减少到6 ¢左右,并且对于初始加载核心而言,反应性的增加和繁殖率的降低随时间的变化都很大。 ,基于复杂的非线性规划方法,开发了一种设计优化程序,并将该方法应用于超大型快堆。该工艺导致了相对较大的堆芯高度和燃料销直径,同时由于提高了繁殖增益而降低了动力成本。发现燃料中心温度和冷却剂速度接近其规定范围的上限。这些结果在质量上与使用更简单的优化技术进行的计算相一致。

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