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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Reactor physics and safety aspects of various design options of a Russian light water reactor with rock-like fuels
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Reactor physics and safety aspects of various design options of a Russian light water reactor with rock-like fuels

机译:带有岩石状燃料的俄罗斯轻水反应堆各种设计方案的反应堆物理和安全方面

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This paper presents results of analytical studies on weapons grade plutonium incineration in VVER (640) medium size light water reactors using a special composition of rock-like fuel (ROX-fuel) to assure spent fuel long-term storage without its reprocessing. The main goal is to achieve high degree of plutonium incineration in once-through cycle. In this paper we considered two fuel compositions. In both compositions weapons grade plutonium is used as fissile material. Spinel (MgAl2O4) is used as the 'preserving' material assuring safe storage of the spent fuel. Besides an inert matrix, the option of rock-like fuel with thorium dioxide was studied. One of principal problems in the realization of the proposed approach is the substantial change of properties of the light water reactor core when passing to the use of the ROX-fuel, in particular: (i) due to the absence of U-238 the Doppler effect playing a crucial role in reactor's self-regulation and limiting the consequences of reactivity accidents, decreases significantly, (ii) no fuel breeding on one hand, and the quest to attain the maximum plutonium burnup on the other hand, would result in a drastical change of the fuel assembly power during the lifetime and, as a consequence, the rise in irregularity of the power density of fuel assemblies, (iii) both the control rods worth and dissolved boron worth decrease in view of neutron spectrum hardening brought on by the larger absorption cross-section of plutonium as compared to uranium, (iv) beta(eff) is markedly reduced. All these distinctive features are potentially detrimental to the reactor nuclear safety. The principal objective of this work is that to identify a variant of the fuel composition and the reactor layout, which would permit neutralize the negative effect of the above-mentioned distinctive features. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 6]
机译:本文介绍了对VVER(640)中型轻水反应堆中武器级composition焚烧的分析研究结果,该反应堆使用特殊成分的类岩石燃料(ROX燃料)来确保乏燃料能够长期储存而无需进行后处理。主要目标是在一次循环中实现高度的in焚烧。在本文中,我们考虑了两种燃料成分。在这两种成分中,武器级p均用作裂变材料。尖晶石(MgAl2O4)用作“保存”材料,以确保安全存储乏燃料。除了惰性基质外,还研究了带有二氧化or的岩石燃料的选择。实现建议方法的主要问题之一是轻水反应堆堆芯在使用ROX燃料时的性能发生了重大变化,尤其是:(i)由于没有多普勒U-238在反应堆的自我调节和限制反应性事故后果中起着至关重要的作用,其效果显着降低;(ii)一方面没有燃料的繁殖,另一方面寻求达到最大burn燃烧的要求,将导致严重的后果。寿命期间燃料组件功率的变化,以及因此导致的燃料组件功率密度不规则性的增加,(iii)考虑到中子光谱硬化导致控制棒价值和溶解硼价值均下降。与铀相比,of的吸收截面更大,(iv)β(eff)显着降低。所有这些独特的特征都可能损害反应堆的核安全。这项工作的主要目的是确定燃料成分和反应堆布局的变化形式,这将抵消上述独特特征的负面影响。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:6]

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