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Investigation of different burnable absorbers effects on the neutronic characteristics of PWR assembly

机译:不同可燃吸收剂对压水堆组件中子特性影响的研究

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There is an urgent need to find compact burnable BA materials as an alternative to the traditional materials (B4C and Ag-In-Cd). These materials must possess higher density, good thermophysical properties, radiation resistance, and swelling resistance. In this article, the most interesting rare earth nuclides for neutron absorption (gadolinium, erbium, dysprosium, hafanium and dysprosium) are studied and compared from the point of view of their possibilities for the control of core reactivity in PWRs to increase the cycle length. MCNPX code is used to design a three dimensional model for PWR assembly. The PWR assembly is loaded in different operation process with 2% Gd2O3 and 2% Er2O3 as integral burnable absorbers (IBAs). The effects of gadolinia and erbia on the thermal neutron flux and normalized power are investigated. The study presents that erbium is more effective IBA than gadolinium for a reactor with a very long cycle. The dysprosium titanate, dysprosium hafnate and hafnium diboride are investigated as material for a control rod in PWR assembly. The effects of these control rod materials on the multiplication factor and the concentrations of fission products are calculated. From the viewpoint of the achievable fuel discharge burnup, it was found that the suggested control rod materials achieve a satisfactory control rod worth (CRW), i.e., the CRW of the presented materials is comparable with the CRW of the standard AIC control rods. (C) 2016 Elsevier Ltd. All rights reserved.
机译:迫切需要找到一种紧凑的可燃BA材料,以替代传统材料(B4C和Ag-In-Cd)。这些材料必须具有更高的密度,良好的热物理特性,抗辐射性和抗溶胀性。在本文中,从控制中压堆中核心反应性以增加循环长度的可能性的角度出发,研究并比较了最有趣的中子吸收稀土核素(ga,,,ha和)。 MCNPX代码用于设计PWR组装的三维模型。 PWR组件在不同的操作过程中装入2%Gd2O3和2%Er2O3作为整体可燃吸收剂(IBA)。研究了氧化ado和二氧化on对热中子通量和归一化功率的影响。研究表明,对于周期很长的反应堆,is比g更有效的IBA。研究了钛酸dy,f酸和二硼化investigated作为PWR组件中控制棒的材料。计算了这些控制棒材料对倍增因子和裂变产物浓度的影响。从可实现的燃料排放燃尽的观点来看,发现建议的控制杆材料达到令人满意的控制杆价值(CRW),即,所提供材料的CRW可与标准AIC控制杆的CRW相当。 (C)2016 Elsevier Ltd.保留所有权利。

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