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首页> 外文期刊>Annals of nuclear energy >Design of a Small Modular Nuclear Reactor with dual cooled annular fuel and investigation of the fuel inner radius effect on the power peaking factor and natural circulation parameters
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Design of a Small Modular Nuclear Reactor with dual cooled annular fuel and investigation of the fuel inner radius effect on the power peaking factor and natural circulation parameters

机译:带有双重冷却环形燃料的小型模块化核反应堆的设计以及燃料内径对功率峰值因子和自然循环参数的影响的研究

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Recently, a kind of fuel called "dual-cooled annular fuel" is used in the nuclear reactors, which allows the coolant to flow from the inside and outside of the fuel rod and finally causes a substantial increase in power density. The dual-cooled annular fuel rod has both inner and outer coolant channels. Also, Small Modular Reactors (SMRs) are the innovative design of nuclear reactors making remarkable interest during recent years. Since there is not enough available operating experience on SMRs, it might be possible to initiate extensive investigations on these types of reactors for the purpose of improving the current performance level of these systems, significantly.In this paper, for the first time, the core of a Small Modular Reactor (SMR) is designed based on the use of internally and externally cooled annular fuels. And then, neutronics and natural circulation parameters of this type of reactor are analyzed. For this purpose, at the first, the dual-cooled annular fuel under clean and cold conditions is modeled for the different inner clad diameter with same distance gap to gap of fuel rod and effective multiplication factor has been calculated. Then, these annular fuels under full power conditions are modeled for each inner clad diameter and power peaking factor has been calculated. Finally, natural circulation parameters calculations are performed for a simulated fuel rod in the hot channel using computational fluid dynamics simulation codes. These calculations are compared with a conventional NuScale reactor that does not use this kind of fuel. One of the most prominent of its advantages is the ability to moderate more of the neutrons in the reactor core with this type of fuel, which can increase the core effective multiplication, reduce total power peaking factor and improve natural circulation parameters. Increasing of the effective multiplication coefficient at cold and clean condition leads to increase the excess reactivity of the core which increases the operation cycle without refueling and it is useful from fuel management view-point. Also, it was found that by increasing the inner radius by more than 0.5 (cm), the power peaking factor increases, which is due to the more increasing of the pitch lattice relative to the mean free-path and excessive reduction of the mean power-density in the core and, also, increasing the flux gradient. (C) 2019 Elsevier Ltd. All rights reserved.
机译:近来,在核反应堆中使用了一种称为“双冷环形燃料”的燃料,其允许冷却剂从燃料棒的内部和外部流动,并最终导致功率密度的显着提高。双冷却环形燃料棒同时具有内部和外部冷却液通道。而且,小型模块化反应堆(SMR)是近年来引起人们极大关注的核反应堆的创新设计。由于SMR的可用操作经验不足,因此有可能对此类反应堆进行广泛的研究,以期显着提高这些系统的当前性能水平。小型模块化反应堆(SMR)的设计基于内部和外部冷却的环形燃料的使用。然后,分析了这种反应堆的中子学和自然循环参数。为此,首先,针对不同的内包层直径,在距燃料棒间隙相同的距离间隙下,对清洁和寒冷条件下的双冷环形燃料进行建模,并计算出有效的乘数。然后,针对每个内包层直径对全功率条件下的这些环形燃料进行建模,并计算出功率峰值因数。最后,使用计算流体动力学模拟代码对热通道中的模拟燃料棒进行自然循环参数计算。将这些计算结果与不使用此类燃料的常规NuScale反应堆进行了比较。其最突出的优点之一是能够使用这种类型的燃料缓和反应堆堆芯中的更多中子,这可以增加堆芯的有效乘数,降低总功率峰值因子并改善自然循环参数。在冷和清洁条件下,有效倍增系数的增加会导致堆芯的过量反应性增加,从而增加了无需加油的运行周期,从燃料管理的角度来看,这是有用的。此外,还发现通过将内半径增加0.5(cm)以上,功率峰值因数增加,这是由于间距晶格相对于平均自由程的增加更多以及平均功率的过度降低所致芯中的密度,并且还增加了通量梯度。 (C)2019 Elsevier Ltd.保留所有权利。

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