首页> 外文会议>International congress on advances in nuclear power plants >DEVELOPMENT OF RBWR (RESOURCE-RENEWABLE BWR) FOR RECYCLING AND TRANSMUTATION OF TRANSURANIUM ELEMENTS (4)RADIAL CORE DESIGN BASED ON RADIAL TRANSPORT EFFECT
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DEVELOPMENT OF RBWR (RESOURCE-RENEWABLE BWR) FOR RECYCLING AND TRANSMUTATION OF TRANSURANIUM ELEMENTS (4)RADIAL CORE DESIGN BASED ON RADIAL TRANSPORT EFFECT

机译:铀元素循环再利用的RBWR(资源可再生BWR)的开发(4)基于径向运输效应的径向核心设计

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The resource-renewable boiling water reactor (RBWR) has been proposed as an innovative boiling water reactor (BWR) that has the capability to burn transuranium elements (TRUs) using a multi-recycling process by hardening the neutron energy spectrum. In this paper, RBWR core configurations with flat radial power distribution are investigated. In general, flat distribution of the radial power will be achieved if fuel bundles with a relatively large amount of fissile nuclides are arranged in a relatively low neutron flux area except for the outermost region of the core. There are two design policies of fuel bundle arrangement for flat distribution of the radial power. One is scatter loading using the local neutron flux gradient area is intentionally produced by arranging fuel bundles. The other is zone loading using the overall neutron flux gradient due to a leakage of neutrons to the radially outer side of the reactor core. For RBWR. both loading policies are adopted in succession. First, zone loading is adopted in the outer region of the reactor core in the radial direction. The fresh fuel bundles that have a relatively large amount of fissile nuclides are arranged in the radial outer region. Scatter loading is also adopted in the inner region of the reactor core in the radial direction. The inner region is divided into several layer rings that consist of a bundle in the angular direction. Layer rings for 2nd, 3rd, and 4th cycle fuel are arranged adjacently to each other. The radial power distribution at the end of cycle (EOC) is calculated using the whole core transport calculation, and it is confirmed that the radial power of RBWR is distributed in fiat shape to be applied to the combined fuel arrangement of scatter loading and zone loading.
机译:已经提出了资源可再生的沸水反应堆(RBWR)作为一种创新的沸水反应堆(BWR),该反应堆具有通过硬化中子能谱通过多次循环过程燃烧超铀元素(TRU)的能力。在本文中,研究了径向功率分布平坦的RBWR铁心配置。通常,如果在堆芯的最外层区域以外的中子通量相对较低的区域布置具有相对较大的易裂变核素的燃料束,则将实现径向功率的平坦分布。对于径向功率的平面分布,有两种燃料束布置设计策略。一种是使用局部中子通量梯度区域通过布置燃料束有意产生散射负荷。另一个是由于中子向反应堆堆芯的径向外侧泄漏而使用整体中子通量梯度产生的区域载荷。对于RBWR。两种加载策略都是相继采用的。首先,在径向上在反应堆堆芯的外部区域中采用区域载荷。在径向外部区域中布置具有相对多的易裂变核素的新鲜燃料束。在径向上在反应堆堆芯的内部区域也采用了分散载荷。内部区域被分成几个层环,这些层环在角度方向上由束组成。用于第二,第三和第四循环燃料的层环彼此相邻布置。使用整个堆芯传输计算来计算周期结束时的径向功率分布(EOC),并且可以确定RBWR的径向功率呈平板状分布,可应用于散布载荷和区域载荷的组合燃料布置。

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