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BWR core-wide stability analysis with respect to dominant feedback mechanisms and characteristic poles

机译:关于主要反馈机制和特征极点的BWR核心范围稳定性分析

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摘要

BWR core-wide stability is studied from the viewpoint of linear dynamic stability treated via poles of a closed-loop transfer function. The quantitative study is performed using a BWR noise model describing neutronic and thermal-hydraulic core dynamics. Transfer functions of neutron power to reactivity and core inlet flow are derived in explicit forms and their poles are evaluated both numerically and analytically. It is shown that the characteristic poles may be classed into three groups relating to neutronic process, fuel heat transfer and core void dynamics. In particular, the poles for the void dynamics take complex values and hence give rise to core-wide damped oscillation of neutron power. Furthermore, the study of characteristic poles serves for the stability analysis of the Ringhals-1 benchmark test data. It is shown and clarified that two stability indexes, decay ratio and resonance frequency, have clear dependence on reactor power and core inlet flow.
机译:从通过闭环传递函数的极点处理的线性动态稳定性的观点出发,研究了BWR堆芯的整体稳定性。使用描述中子学和热工液压堆芯动力学的BWR噪声模型进行定量研究。中子功率对反应性和堆芯入口流量的传递函数以显式形式导出,并且对它们的极点进行数值和分析评估。结果表明,特征极点可以分为与中子过程,燃料传热和堆芯空隙动力学有关的三类。尤其是,用于空隙动力学的极点具有复杂的值,因此会引起中子功率的全芯阻尼振荡。此外,对特征极点的研究还有助于对Ringhals-1基准测试数据进行稳定性分析。结果表明并明确了两个稳定指标,衰减率和共振频率,对反应堆功率和堆芯入口流量有明显的依赖性。

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