热中子反应堆中氙振荡的建模与控制

IF 0.9 Q3 NUCLEAR SCIENCE & TECHNOLOGY
B. Mercier, Zeng Ziliang, C. Liyi, Shao Nuoya
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引用次数: 5

摘要

我们用简单的一维模型研究了热中子核反应堆氙中毒引起的轴向堆芯振荡:线性一群模型、线性两群模型和考虑多普勒效应的非线性模型。尽管核反应堆操作员有一些三维计算机代码来模拟这种现象,但我们认为简单的模型对于识别敏感参数和研究基本控制律的效率是有用的。结果表明,对于单群模型,如果用M2表示迁移面积,用H表示岩心高度,则敏感参数为H/M。H固定,对于2群模型,仍然有2个敏感参数,第一个敏感参数由M12+M22代替,其中M12表示快中子迁移区,M22表示热中子迁移区。我们证明了多普勒效应在很大程度上降低了氙振荡的不稳定性。最后,我们证明了一些比例/积分/导数(PID)反馈控制律可以以类似于著名的Shimazu控制律的方式抑制氙振荡。秦志刚,氙振荡控制的连续制导方法,核。科学。技术,32,1159(1995)]。本文所建立的数值模型已在压水堆中得到应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and control of xenon oscillations in thermal neutron reactors
We study axial core oscillations due to xenon poisoning in thermal neutron nuclear reactors with simple 1D models: a linear one-group model, a linear two-group model, and a non-linear model taking the Doppler effect into account. Even though nuclear reactor operators have some 3D computer codes to simulate such phenomena, we think that simple models are useful to identify the sensitive parameters, and study the efficiency of basic control laws. Our results are that, for the one-group model, if we denote the migration area by M 2 and by H the height of the core, the sensitive parameter is H/M. H being fixed, for the 2 groups model, there are still 2 sensitive parameters, the first one being replaced by M12+M22 where M12 denotes the migration area for fast neutrons and M22 the migration area for thermal neutrons. We show that the Doppler effect reduces the instability of xenon oscillations in a significant way. Finally, we show that some proportional/integral/derivative (PID) feedback control law can damp out xenon oscillations in a similar way to the well-known Shimazu control law [Y. Shimazu, Continuous guidance procedure for xenon oscillation control, J. Nucl. Sci. Technol. 32, 1159 (1995)]. The numerical models described in our paper have been applied to PWR.
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来源期刊
EPJ Nuclear Sciences & Technologies
EPJ Nuclear Sciences & Technologies NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
1.00
自引率
20.00%
发文量
18
审稿时长
10 weeks
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