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Core Conversion of VVR-K Research Reactors

机译:VVR-K研究堆的核心转换

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The conversion of the VVR-K research reactor to low-enrichment uranium fuel includes switching to a compact core with low-enrichment uranium and gradually transitioning from a light-water side reflector to a beryllium reflector with restoration of the working reactivity margin without makeup with fresh fuel. In 2015, the reactor was stopped in order to modernize the main elements of the core, the control and protection system for the channels of the working rods, and the emergency electric power source. First criticality of VVR-K with low-enrichment fuel followed by first start of the reactor occurred in spring 2016. The VVR-KN type FA specially developed for VVR-K make it possible to not only preserve but also improve the neutronphysical characteristics of the core. The design-basis reactivity margin of the working core load similar to 7%Delta k/k is adequate for reactor operation for three 20-day cycles with similar to 10% average burnup reached in the central FA. The beryllium reflector is built up in stages starting at the fourth cycle. The beryllium reflector will make it possible to preserve the radial dimensions of the core and increase the neutron flux density in the central and peripheral irradiation channels.
机译:VVR-K研究堆向低浓铀燃料的转化包括切换到具有低浓铀的紧凑型堆芯,并逐渐从轻水侧反射器过渡到铍反射器,并恢复工作反应余量而无需补充新鲜的燃料。 2015年,为了使堆芯的主要组件,工作杆通道的控制和保护系统以及应急电源现代化,停堆了反应堆。低浓燃料对VVR-K的第一个临界反应是在2016年春季发生的,随后反应堆首次启动。专门为VVR-K开发的VVR-KN型FA不仅可以保存而且还可以改善反应堆的中子物理特性。核心。工作堆芯负荷的设计基准反应性裕度类似于7%Delta k / k,足以在三个20天的周期内进行反应堆运行,中央FA的平均燃耗达到10%左右。铍反射器从第四个周期开始分阶段组装。铍反射器将有可能保留堆芯的径向尺寸,并增加中心和外围辐射通道中的中子通量密度。

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