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Analysis of sub- and supercritical Hopf bifurcation with a reduced order model in natural circulation loop

机译:自然循环中亚临界和超临界霍夫夫分叉的降阶模型分析

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The prime objective of the work is to carry out bifurcation analysis of a single channel natural circulation loop having high system pressure. The objective is achieved in two steps. First step is to perform linear stability analysis of the system with the state space approach. The analysis is used to obtain stability maps in N_(pch) and N_(sub) plane. In the second step, limited time series analysis is carried out numerically in the vicinity of the obtained stability boundaries. This analysis leads to delineation of bifurcation characteristics of the system namely subcritical and supercritical bifurcations. The existence of limit cycles and their behavior are also presented. The effects of different design parameters on the aforementioned bifurcation phenomena are shown. It is observed that, these bifurcation phenomena are quite sensitive to the design parameters. The reduced order model used in the present work has been developed by keeping a new insight to include the density variation in single phase and the drift flux correlations in the two-phase.
机译:这项工作的主要目的是对具有高系统压力的单通道自然循环回路进行分叉分析。该目标分两个步骤实现。第一步是使用状态空间方法对系统进行线性稳定性分析。该分析用于获得N_(pch)和N_(sub)平面中的稳定性图。在第二步中,在获得的稳定性边界附近进行有限时间序列分析。该分析导致描绘了系统的分叉特征,即亚临界和超临界分叉。还介绍了极限环的存在及其行为。显示了不同设计参数对上述分叉现象的影响。可以看出,这些分叉现象对设计参数非常敏感。通过保持新的见识,包括单相中的密度变化和两相中的漂移通量相关性,已经开发出了本工作中使用的降阶模型。

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