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基于活化法及MCNP程序的临界装置功率刻度
引用本文:杨永木,穆克亮,黄礼渊,牛江.基于活化法及MCNP程序的临界装置功率刻度[J].原子能科学技术,2013,47(Z1):111-114.
作者姓名:杨永木  穆克亮  黄礼渊  牛江
作者单位:中国核动力研究设计院 反应堆工程研究所,四川 成都610041
摘    要:介绍了临界装置功率刻度的方法,在不同功率台阶下利用活化法测量临界装置的中子注量率分布及归一点的绝对中子注量率,并利用经修改编译的MCNP程序对临界装置的中子注量率分布进行校核计算。基于中子注量率测量及计算结果通过裂变率法计算不同功率台阶下临界装置的功率,同时外推到堆芯最大热中子注量率为1×108cm-2?s-1时的功率,实现了临界装置的功率刻度。

关 键 词:中子注量率    MCNP程序    裂变率法    功率刻度

Power Confirming for Critical Facility Based on Activation Method and MCNP Code
YANG Yong-mu,MU Ke-liang,HUANG Li-yuan,NIU Jiang.Power Confirming for Critical Facility Based on Activation Method and MCNP Code[J].Atomic Energy Science and Technology,2013,47(Z1):111-114.
Authors:YANG Yong-mu  MU Ke-liang  HUANG Li-yuan  NIU Jiang
Affiliation:Reactor Engineering Research Sub-institute, Nuclear Power Institute of China, Chengdu 610041, China
Abstract:The method for power confirming was introduced. Neutron fluence rate distribution and absolute neutron fluence rate of one point for critical facility under different powers were measured by activation method. Neutron fluence rate distribution was calculated with compiled MCNP code. The power of critical facility was calculated with fission rate method based on neutron fluence rate. The power was extrapolated while the max thermal neutron fluence rate was 1×108cm-2?s-1. The power confirming for critical facility was completed.
Keywords:neutron fluence rate  MCNP code  fission rate method  power confirming
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