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Sensitivity Analysis of Core Neutronic Parameters in Electron Accelerator-driven Subcritical Advanced Liquid Metal Reactor

机译:电子加速器驱动的亚临界先进液态金属反应堆核心中子参数的敏感性分析

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Calculation of the core neutronic parameters is one of the key components in all nuclear reactors. In this research, the energy spectrum and spatial distribution of the neutron flux in a uranium target have been calculated. In addition, sensitivity of the core neutronic parameters in accelerator-driven subcritical advanced liquid metal reactors, such as electron beam energy (E-e) and source multiplication coefficient (k(s)), has been investigated. A Monte Carlo code (MCNPX_2.6) has been used to calculate neutronic parameters such as effective multiplication coefficient (k(eff)), net neutron multiplication (M), neutron yield (Y-n/e), energy constant gain (G(0)), energy gain (G), importance of neutron source (phi*), axial and radial distributions of neutron flux, and power peaking factor (P-max/P-ave) in two axial and radial directions of the reactor core for four fuel loading patterns. According to the results, safety margin and accelerator current (I-e) have been decreased in the highest case of k(s), but G and phi* have increased by 88.9% and 21.6%, respectively. In addition, for LP1 loading pattern, with increasing E-e from 100 MeV up to 1 GeV, Y-n/e and G improved by 91.09% and 10.21%, and I-e and P-acc decreased by 91.05% and 10.57%, respectively. The results indicate that placement of the Np-Pu assemblies on the periphery allows for a consistent k(eff) because the NpePu assemblies experience less burn-up. Copyright (C) 2015, Published by Elsevier Korea LLC on behalf of Korean Nuclear Society.
机译:核心中子学参数的计算是所有核反应堆的关键组成部分之一。在这项研究中,计算了铀靶中的中子通量的能谱和空间分布。此外,还研究了加速器驱动的亚临界先进液态金属反应堆中核心中子参数的敏感性,例如电子束能量(E-e)和源倍增系数(k(s))。蒙特卡罗代码(MCNPX_2.6)已用于计算中子学参数,例如有效倍增系数(k(eff)),净中子倍增(M),中子产率(Yn / e),能量常数增益(G(0 )),能量增益(G),中子源的重要性(phi *),中子通量的轴向和径向分布以及反应堆堆芯在两个轴向和径向上的功率峰值因数(P-max / P-ave)四种燃料装载模式。根据结果​​,在k(s)最高的情况下,安全裕度和加速器电流(I-e)减小,但是G和phi *分别增加了88.9%和21.6%。此外,对于LP1加载模式,随着E-e从100 MeV增加到1 GeV,Y-n / e和G分别提高了91.09%和10.21%,I-e和P-acc分别降低了91.05%和10.57%。结果表明,将Np-Pu组件放置在外围允许k(eff)一致,因为NpePu组件的燃耗较小。版权所有(C)2015,由Elsevier Korea LLC代表韩国核协会出版。

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