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Theoretical Study on the Characteristics of Critical Heat Flux in Rectangular Channel of Natural Circulation under Motion Conditions

机译:运动条件下自然循环矩形通道临界热通量特征的理论研究

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With the wide application of sea-based reactors, the impact of ocean conditions on the safety performance of reactors has gradually attracted attention. In this paper, by establishing the thermal hydraulic transient analysis model and the critical heat flux (CHF) model of natural circulation system, the CHF characteristics in the rectangular channel of natural self-feedback conditions under ocean conditions are studied. The results show that the additional acceleration field generated by ocean conditions will affect the thermal hydraulic parameters of the natural circulation system, that is, the external macroscopic thermal hydraulic field. On the other hand, the boiling crisis mechanism will be affected, that is, the force on the bubble and the thickness of the liquid film. Within the parameters of the study, ocean conditions have a great impact on CHF of natural circulation, and the maximum degradation of CHF is about 45%. The obtained analysis results are significant to the improvement of design and safety operation of the reactor system.
机译:随着海线反应堆的广泛应用,海洋状况对反应器安全性能的影响逐渐引起了关注。本文通过建立热液压瞬态分析模型和天然循环系统的临界热通量(CHF)模型,研究了海洋状况下自然自助反馈条件的矩形通道中的CHF特性。结果表明,海洋状况产生的额外加速场将影响自然循环系统的热液压参数,即外部宏观热液压场。另一方面,沸腾的危机机制将受到影响,即气泡的力和液体膜的厚度。在研究的参数内,海洋病症对自然循环的螯合物产生很大影响,并且CHF的最大降解约为45%。所获得的分析结果对于改善反应器系统的设计和安全操作是显着的。

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