控制棒对triga 2000反应堆运行安全影响的热中子水力学分析

S. Pinem, T. Surbakti, Iman Kuntoro
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引用次数: 3

摘要

控制棒对triga 2000反应堆运行安全影响的热中子水力学分析。整个运行周期的中子和热工参数分析对反应堆的安全运行具有重要意义。在反应堆运行周期中,由于反应性的变化,控制棒的位置也会发生变化。本研究的目的是确定控制棒位置对与使用MTR板型硅化燃料的TRIGA 2000反应堆运行安全相关的中子和热工参数的影响。这些参数是功率峰值因子、反应性系数和稳态热水力参数。中子计算使用WIMSD/5和Batan-3DIFF代码组合进行,热压力学计算使用WIMSD/5和MTRDYN代码进行。计算结果表明,在CZP和HFP条件下,所有控制棒位置的反应性系数值均为负值。当控制棒插入有源铁芯时,MTC值降低,而FTC值增加。当控制棒插入活动堆芯时,总ppf结果和稳态温度升高,其中最大值出现在距离活动堆芯底部20cm的控制棒位置。ppf、反应性系数和热工参数的计算结果均低于安全限值,表明TRIGA 2000反应堆可以安全地使用U3Si2-Al硅化物燃料替代圆柱形燃料。关键词:中子,热液参数,控制棒效应,TRIGA 2000,硅化燃料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NEUTRONIC AND THERMAL HYDRAULICS ANALYSIS OF CONTROL ROD EFFECT ON THE OPERATION SAFETY OF TRIGA 2000 REACTOR
NEUTRONIC AND THERMAL HYDRAULICS ANALYSIS OF CONTROL ROD EFFECT ON THE OPERATION SAFETY OF TRIGA 2000 REACTOR. Analysis of neutronic and thermal-hydraulics parameters of whole operation cycle is very important for the safety of reactor operation. During the reactor operation cycle, the position of the control rods will change due to reactivity changes. The purpose of this study is to determine the effect of control rods position on neutronic and thermal-hydraulics parameters in relation to the safety of reactor operation of the TRIGA 2000 reactor using silicide fuel of MTR plate type. Those parameters are power peaking factor, reactivity coefficients, and steady-state thermohydraulic parameters. Neutronic calculations are performed using a combination of WIMSD/5 and Batan-3DIFF codes and for thermal-hydraulics the calculations are done using WIMSD/5 and MTRDYN codes. The calculation results show that the reactivity coefficient values are negative for all control rod positions both at CZP and HFP conditions. The MTC value decreases when the control rod is inserted into the active core while the FTC value increases. The total ppf results and temperature in steady-state rise when the control rods are inserted of into the active core whereby the maximum value occurs at the position of the control rods of 20 cm from the bottom of the active core. The calculation results of ppf, reactivity coefficient, and thermal-hydraulics parameters lay below safety limits, indicating that the TRIGA 2000 reactor can safely use U3Si2-Al silicide fuel as a substitute fuel for cylindrical type fuel.Keywords: neutronic, thermal-hydraulic parameter, control rod effect, TRIGA 2000, silicide fuel.
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