首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.2: Thermal Hydraulics >STABILITY ANALYSIS OF A UNIFORMLY HEATED CHANNEL WITH SUPERCRITICAL WATER
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STABILITY ANALYSIS OF A UNIFORMLY HEATED CHANNEL WITH SUPERCRITICAL WATER

机译:超临界水均匀加热通道的稳定性分析

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摘要

The thermal-hydraulic stability of a uniformly heated channel at supercritical water pressure has been investigated to help understand the system instability phenomena which may occur in Supercritical Water Nuclear Reactors (SCWR). We have extended the modeling approach often used for Boiling Water Nuclear Reactor (BWR) stability analysis to supercritical pressure operation conditions. We have shown that Ledinegg excursive instabilities and pressure-drop oscillations (PDO) will not occur in supercritical water systems. The linear stability characteristics of a typical uniformly heated channel were computed by evaluating the eigenvalues of the model. An analysis of non-linear instability phenomena was also performed in the time domain and the dynamic bifurcations were evaluated.
机译:已经研究了在超临界水压下均匀加热的通道的热工水力稳定性,以帮助理解超临界水核反应堆(SCWR)中可能发生的系统不稳定现象。我们将通常用于沸水核反应堆(BWR)稳定性分析的建模方法扩展到超临界压力运行条件。我们已经表明,在超临界水系统中不会发生Ledinegg偏移不稳定性和压降振荡(PDO)。通过评估模型的特征值,可以计算出典型的均匀加热通道的线性稳定性特征。还在时域中对非线性不稳定性现象进行了分析,并对动态分支进行了评估。

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