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A NEW LOW ENRICHMENT URANIUM CORE DESIGN OF MNSR

机译:MNSR的新型低浓铀核设计

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The Miniature Neutron Source Reactor (MNSR) is a low-power research reactor, which uses 90% high enriched uranium (HEU) fuel. However, due to the nuclear safety risk, and according to the principle of nuclear non-proliferation, MNSR must be gradually converted from HEU to low enriched uranium (LEU), which means the LEU fuel with U-235 enrichment less than 20% should be used. The prototype MNSR of China Institute of Atomic Energy has completed the transformation, but other commercial MNSRs have not finished, which is different with the prototype in the application and structure. Therefore, using MCNP code to simulate, calculate and optimization design LEU core has been done in this issue. Firstly, UO_2 with U-235 enrichment of 12.5% was selected as the fuel pellet of LEU core, keeping the rest of the core unchanged. The Φ, excess reactivity and the worth of the central control rod are calculated and analyzed. The results show that the commercial MNSR of LEU conversion is feasible. Secondly, in this paper, through changing the fuel elements and the arrangement method, the new low enriched uranium (NLEU) core was designed to improve Φ/P ratio of the core, the proportion of thermal neutrons and the worth of the control rod. UO_2 with U-235 enrichment of 19.75% was selected as the fuel pellet of the NLEU, NLEU not only meets the design parameters, but in many parameters, NLEU is better than LEU. The fuel element quantity is reduced by 43%, from original 344 to 196; reducing the amount of U-235 loading; improving the Φ/P ratio and the thermal neutron fraction is increased. The results show that the NLEU optimizes some parameters, simplifies the core structure, saves the construction cost, improves the nuclear safety and is more suitable for the application of MNSR.
机译:微型中子源反应堆(MNSR)是一种低功率研究堆,它使用90%的高浓铀(HEU)燃料。但是,由于核安全风险,并且根据核不扩散原则,MNSR必须逐步从HEU转换为低浓缩铀(LEU),这意味着U-235浓缩度低于20%的LEU燃料应使用。中国原子能科学研究院的MNSR原型已完成改造,但其他商用MNSR尚未完成,这与原型的应用和结构不同。因此,本期已经完成了使用MCNP代码对LEU内核进行仿真,计算和优化设计的工作。首先,选择U-235浓缩度为12.5%的UO_2作为低浓铀核的燃料芯块,其余核保持不变。计算并分析了中心控制杆的Φ,超额反应性和价值。结果表明,LEU转换的商业MNSR是可行的。其次,通过改变燃料元件和布置方法,设计了新型低浓铀核(NLEU),以提高核的Φ/ P比,热中子的比例和控制棒的价值。选择U-235浓缩度为19.75%的UO_2作为NLEU的燃料芯块,NLEU不仅满足设计参数,而且在许多参数中,NLEU均优于LEU。燃料元件数量减少了43%,从原来的344减少到196;减少U-235的装载量;改善Φ/ P比和增加热中子分数。结果表明,NLEU优化了部分参数,简化了堆芯结构,节省了建造成本,提高了核安全性,更适合于MNSR的应用。

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