Neutronic effect of utilizing TRIZO particles on core characteristics of experimental power reactor

Zuhair, R. A. P. Dwijayanto, H. Adrial, Suwoto, T. Setiadipura
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引用次数: 1

Abstract

Based on its superior characteristics and to provide core outlet temperature no less than 1000 °C for thermochemical hydrogen production, ZrC becomes a promising candidate to replace SiC coating layer of TRISO coated fuel particles. This paper aimed to study the neutronic effect of utilizing TRIZO coated fuel particles on core characteristics of experimental power reactor. A series of calculations were performed with MCNP6 code and ENDF/B-VII library. The calculation results show that replacement of SiC with ZrC will result in slightly decreased value in effective multiplication reactor (keff), slightly increased value in control rod worth and shutdown margin reactivity, and somewhat more negative value in temperature coefficient of reactivity. The effective delayed neutron fraction (βeff) in ZrC core presents lower values than in SiC core which cause a reduction in the ability to control the reactor. However, the reduced controllability via the lower βeff of ZrC core can be compensated by its favourable temperature coefficient and shutdown margin reactivity. These results conclude that replacing SiC with ZrC particles into experimental power reactor would have considerable impact and benefit from the viewpoint of reactor operational safety.Based on its superior characteristics and to provide core outlet temperature no less than 1000 °C for thermochemical hydrogen production, ZrC becomes a promising candidate to replace SiC coating layer of TRISO coated fuel particles. This paper aimed to study the neutronic effect of utilizing TRIZO coated fuel particles on core characteristics of experimental power reactor. A series of calculations were performed with MCNP6 code and ENDF/B-VII library. The calculation results show that replacement of SiC with ZrC will result in slightly decreased value in effective multiplication reactor (keff), slightly increased value in control rod worth and shutdown margin reactivity, and somewhat more negative value in temperature coefficient of reactivity. The effective delayed neutron fraction (βeff) in ZrC core presents lower values than in SiC core which cause a reduction in the ability to control the reactor. However, the reduced controllability via the lower βeff of ZrC core can be compensated by its favourable ...
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利用TRIZO粒子对实验堆堆芯特性的中子效应
基于其优越的特性和为热化学制氢提供不低于1000℃的堆芯出口温度,ZrC成为替代TRISO包覆燃料颗粒SiC涂层的有希望的候选材料。本文旨在研究利用TRIZO包覆燃料颗粒对实验动力堆堆芯特性的中子效应。利用MCNP6代码和ENDF/B-VII库进行了一系列的计算。计算结果表明,用ZrC替代SiC后,有效增殖反应器的keff值略有降低,控制棒值和停机裕度反应性略有升高,反应性温度系数略有负值。ZrC堆芯的有效延迟中子分数(βeff)比SiC堆芯的低,导致控制反应堆的能力降低。然而,由于ZrC芯的βeff较低而降低的可控性可以通过其良好的温度系数和停机裕度反应性来补偿。这些结果表明,从反应堆运行安全的角度来看,用ZrC颗粒代替SiC颗粒将对实验动力反应堆产生相当大的影响和好处。基于其优越的特性和为热化学制氢提供不低于1000℃的堆芯出口温度,ZrC成为替代TRISO包覆燃料颗粒SiC涂层的有希望的候选材料。本文旨在研究利用TRIZO包覆燃料颗粒对实验动力堆堆芯特性的中子效应。利用MCNP6代码和ENDF/B-VII库进行了一系列的计算。计算结果表明,用ZrC替代SiC后,有效增殖反应器的keff值略有降低,控制棒值和停机裕度反应性略有升高,反应性温度系数略有负值。ZrC堆芯的有效延迟中子分数(βeff)比SiC堆芯的低,导致控制反应堆的能力降低。然而,由于ZrC芯的βeff较低而降低的可控性可以通过其良好的稳定性来补偿。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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