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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental and numerical investigations on flashing-induced instabilities in a single channel
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Experimental and numerical investigations on flashing-induced instabilities in a single channel

机译:单通道闪烁诱发的不稳定性的实验和数值研究

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摘要

During the start-up phase, natural circulation BWRs (NC-BWRs) need to be operated at low pressure conditions. Such conditions favor flashing-induced instabilities due to the large hydrostatic pressure drop induced by the tall chimney. Moreover, in novel NC-BWR designs the steam separation is performed in the steam separators which create large pressure drops at the chimney outlet, which effect on stability has not been investigated yet. In this work, flashing-induced oscillations occurring in a tall, bottom heated channel are numerically investigated by using a simple linear model with three regions and an accurate implementation for estimating the water properties. The model is used to investigate flashing-induced instabilities in a channel for different values of the core inlet friction value. The results are compared with experiments obtained by using the CIRCUS facility at the same conditions, showing a good agreement. In addition, the experiments on flashing-induced instabilities are presented in a novel manner allowing visualizing new details of the phenomenon numerical stability investigations on the effect of the friction distribution are also done. It is found that by increasing the total restriction in the channel the system is destabilized. In addition, the chimney outlet restriction has a stronger destabilizing effect than the core inlet restriction. A stable two-phase region is observed prior to the instabilities in the experiments and the numerical simulations which may help to pressurize the vessel of NC-BWRs and thus reducing the effects of flashing instabilities during start-up.
机译:在启动阶段,自然循环BWR(NC-BWR)需要在低压条件下运行。由于由高烟囱引起的大的静水压力降,这种情况有利于闪光引起的不稳定性。而且,在新颖的NC-BWR设计中,蒸汽分离是在蒸汽分离器中进行的,蒸汽分离器在烟囱出口处产生大的压降,尚未研究其对稳定性的影响。在这项工作中,通过使用具有三个区域的简单线性模型和用于估计水性质的精确实现,对在高处,底部受热通道中发生的闪蒸引起的振荡进行了数值研究。该模型用于针对芯入口摩擦值的不同值研究通道中的闪烁引起的不稳定性。将结果与在相同条件下使用CIRCUS设施获得的实验进行比较,显示出很好的一致性。此外,还以新颖的方式介绍了由闪光引起的不稳定性的实验,从而可以可视化现象的新细节,并且可以对摩擦分布的影响进行数值稳定性研究。已经发现,通过增加信道中的总限制,系统变得不稳定。另外,烟囱出口限制比芯入口限制具有更强的去稳定作用。在实验和数值模拟之前,观察到稳定的两相区域,这可能有助于对NC-BWR的容器加压,从而减少启动过程中闪烁不稳定性的影响。

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