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首页> 外文期刊>Annals of nuclear energy >Design and performance of 2D and 3D-shuffled breed-and-burn cores
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Design and performance of 2D and 3D-shuffled breed-and-burn cores

机译:2D和3D混洗的混烧芯的设计和性能

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摘要

The primary objective of this work is to find design approaches that will enable 3D fuel shuffling in stationary breed-and-burn (B&B) cores and to quantify the attainable reduction in peak DPA and change in additional performance characteristics going from conventional 2D to 3D fuel shuffling strategies. An additional objective is to establish the tradeoff between the minimum required DPA (displacements per atom) and average required bumup (fuel utilization) for B&B cores spanning a core power range from 1250 to 3500 MWth. It is found possible to design a B&B core fuelled with depleted uranium to have a peak radiation damage at or below 350 DPA when using 3D-shuffling. Relative to conventional 2D-shuffling, 3D-shuffling offers between 30% and 40% reduction in the peak DPA along with up to 30% increase in the average discharge bumup and, hence, in the depleted uranium utilization as well as significant increase in the core average and specific power density. Per DPA, the 3D shuffling option offers up to 60% higher uranium utilization. Even though 350 DPA is above the 200 DPA peak radiation damage HT9 steels were exposed to so far, it is below the 400 DPA advanced structural materials are expected to tolerate. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项工作的主要目的是找到一种设计方法,该方法将使固定的燃放(B&B)堆芯中的3D燃料能够改组,并量化可实现的峰值DPA降低以及其他性能特征从传统2D燃料到3D燃料的变化。改组策略。另一个目标是在核心功率范围从1250到3500 MWth的B&B磁芯中,在最小所需DPA(每个原子的位移)与平均所需老化(燃料利用率)之间建立折衷。发现可以设计出使用贫铀燃料的B&B核,在使用3D改组时,其峰值辐射损伤在350 DPA或以下。相对于传统的2D改组,3D改组可将峰值DPA降低30%至40%,平均排污量最多可增加30%,从而减少铀的利用,并显着提高铀的利用率。磁芯平均值和比功率密度。根据DPA,3D改组选项可将铀利用率提高多达60%。到目前为止,即使350 DPA高于200 DPA峰值辐射损伤,HT9钢仍可以承受,但仍低于400 DPA先进结构材料。 (C)2015 Elsevier Ltd.保留所有权利。

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