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NEUTRONICS ANALYSES OF SMALL COMPACT PRISMATIC NUCLEAR REACTORS FOR THE PRELIMINARY DESIGN

机译:小型紧凑型棱镜核反应堆初步设计的中型分析

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Due to the advantages of small volume, light weight and long-time running, nuclear reactor can provide an idea energy source for submarines, ships and even space crafts. In this paper, two small compact prismatic nuclear reactors with different core block material are presented, which have a thermal power of 5 MW for 10 years of equivalent full power operation. These two reactors use Mo-14%Re alloy or nuclear grade graphite IG110 as core block material, loaded with high enriched uranium nitride fuel and cooled by helium, whose inlet/outlet temperature of the reactor and operational pressure are 850/1300 K and 2 MPa respectively. High temperature helium flowing out of the reactor can be used as the working medium for Closed Brayton Cycle (CBC) power conversion to generate at least 1 MW electricity due to the high efficiency of CBC. Neutronics analyses of reactors for the preliminary design in this paper are performed using Reactor Monte-Carlo (RMC) code developed by Tsinghua University. Both the two reactors have enough initial excess reactivity to ensure 10 years of full power operation without refueling, which have at least $1 reactivity shutdown margin, and remains at least $1 subcritical in the submersion accident as well as one control drum failed accident. Finally, the optimization design is determined after comparing the U-235 mass and the total reactor mass of the above two prismatic reactors.
机译:由于体积小,重量轻,长时间运行,核反应堆可以为潜艇,船舶甚至空间工艺提供思想能源。本文提出了两个具有不同芯块材料的小型紧凑型棱柱核反应堆,其热功率为5 MW,可达10年的等效全功率操作。这两种反应器使用Mo-14%Re合金或核级石墨IG110作为芯块材料,装载高富富富铀氮化物燃料并通过氦气冷却,其入口/出口温度的反应器和操作压力为850/1300 k和2 MPA分别。流出反应器的高温氦气可用作闭合Brayton循环(CBC)功率转换的工作介质,以产生由于CBC的高效率而产生至少1MW的电力。本文初步设计的反应器中的反应器的中子学分析是使用清华大学开发的反应堆蒙特卡罗(RMC)代码进行的。两种反应器都有足够的初始反应性,以确保10年的全电力运行而不加油,至少有1美元的反应性关闭余量,并且在淹没事故中仍然至少为1美元,并且一个控制鼓事故发生了一次控制。最后,在比较U-235质量和上述两种棱镜反应器的总反应器质量之后确定优化设计。

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