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Applicability research of round tube CHF mechanistic model in rod bundle channel

机译:杆束通道圆管CHF机理模型的适用性研究

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摘要

In view of the complex geometric structure of the rod bundle channel and the limitation of the current CHF visualization experiment technology, it is very difficult to obtain the rod bundle CHF mechanism directly through the phenomenon of the rod bundle CHF visualization experiment. In order to obtain the applicable CHF mechanism assumption for rod bundle channel, firstly, five most representative DNB type round tube CHF mechanistic models are obtained with evaluation and screening. Then these original round tube CHF mechanistic models based on inlet conditions are converted to local conditions and coupled with subchannel analysis code ATHAS. Based on 5?×?5 full-length rod bundle CHF experimental data independently developed by Nuclear Power Institute of China (NPIC), the applicability research of each model for CHF prediction performance in rod bundle channel is carried out, and the commonness and difference of each model are comparatively studied. The CHF mechanism assumption of superheated liquid layer depletion that is most likely to be applicable for the rod bundle channel is selected and two directions that need to be improved are given. This study provides a reference for the development of CHF mechanistic model in rod bundle channel.
机译:鉴于杆束通道的复杂几何结构和电流CHF可视化实验技术的限制,很难通过杆束CHF可视化实验的现象直接获得杆束CHF机制。为了获得杆束通道的适用CHF机制假设,首先,使用评估和筛选获得五种最具代表性DNB型圆管CHF机械模型。然后,基于入口条件的这些原始圆管CHF机制模型转换为局部条件,并与子信道分析代码ATHAS相结合。基于5?×5×5全长杆捆绑CHF实验数据,由中国核电学院(NPIC)独立开发,进行了每个模型在杆束通道中进行CHF预测性能的适用性研究,以及共同性和差异每个模型都比较研究。选择最有可能适用于杆束通道的过热液体层耗尽的CHF机制是选择的,并且给出了需要改进的两个方向。本研究为杆束通道的CHF机械模型提供了参考。

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