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首页> 外文期刊>EPJ Web of Conferences >A STUDY OF LEAKAGE-CORRECTED TWO-STEP METHOD BASED ON THE NODAL EQUIVALENCE THEORY FOR FAST REACTOR ANALYSIS
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A STUDY OF LEAKAGE-CORRECTED TWO-STEP METHOD BASED ON THE NODAL EQUIVALENCE THEORY FOR FAST REACTOR ANALYSIS

机译:基于节点对应器分析的节点等效理论的漏腐蚀两步法研究

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The conventional two-step method based on the generalized equivalence theory (GET) cannot be directly applied to the fast reactor analysis since the assumption of the space-energy separability is not very valid due to a relatively long neutron mean free path. This study aims to develop a leakage-corrected two-step method for the fast reactor analysis with the aid of the albedo-corrected parameterized equivalence constants (APEC) method. The critical idea of the APEC method is to correct the homogenized group constants (HGCs) including discontinuity factors (DFs) during the nodal calculation through predetermined APEC functions. The APEC functions are functionalized in terms of the normalized leakage parameters such as a current-to-flux (CFR) ratio so that they can correct the cross-sections (XSs) and discontinuity factors by reflecting the in-situ neutron leakage information of the nodal analysis. The feasibility of the APEC-corrected two-step method was investigated by solving 5-group diffusion equations for a two-dimensional sodium-cooled fast reactor with a 6-triangle finite difference method. The 5-group HGCs for fuel assemblies were determined by using a continuous-energy Monte Carl code, and the conventional assembly discontinuity factors are also introduced for each hexagonal fuel assembly. First of all, it was demonstrated that the simple FDM scheme could reproduce the reference nodal quantities with the GET. And the APEC functions are formulated using the reference solutions to evaluate the feasibility of simple APEC functional for both XSs and DFs. Then, a smaller color-set problem was defined to determine practical APEC functions for the original benchmark, and various numerical evaluations are performed in terms of the k-eff value and nodal power distribution.
机译:基于广义等效理论(GET)的传统两步方法不能直接应用于快速反应器分析,因为空间能量可分离性的假设由于相对长的中子均值的自由路径而不是非常有效。本研究旨在利用Albedo校正的参数化等效常数(APEC)方法,开发一种漏腐蚀的两步方法,用于快速反应器分析。 APEC方法的关键思想是通过预定的APEC函数校正在节点计算期间包括不连续因子(DFS)的均质组常数(HGC)。 APEC函数以归一化泄漏参数(例如电流到通量(CFR)的比率而异),使得它们可以通过反射原位中子泄漏信息来校正横截面(XSS)和不连续因素。节点分析。通过用6三角形有限差分方法求解5组扩散方程,研究了APEC校正的两步法的可行性。通过使用连续能量蒙特卡尔码测定用于燃料组件的5组HGC,并且还为每个六边形燃料组件引入传统的组装不连续因子。首先,证明简单的FDM方案可以通过GET再现参考节点数量。使用参考解决方案配制APEC功能,以评估XSS和DFS的简单APEC功能的可行性。然后,定义了较小的颜色集问题以确定原始基准测试的实用APEC功能,并且在K-EFF值和节点配电方面执行各种数值评估。

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