Numerical simulation of boiling dynamics in liquid Lead-Bismuth injected with multi-rupture high-pressure water jets

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Abstract

Once a steam generator tube rupture (SGTR) accident occurs in a lead-based fast reactor, it can trigger a domino effect of heat transfer tube ruptures, leading to a loss-of-flow accident involving multiple ruptures. This paper employs numerical methods to investigate the jet boiling phenomenon associated with the injection of sub-cooled water into high-temperature lead‑bismuth eutectic (LBE) through multiple nozzles. It explores how nozzle spacing, number, and diameter impact jet characteristics. Additionally, it analyzes flow characteristics and heat transfer mechanisms from the perspective of jet interaction. The study identifies critical areas within the multi-nozzle jet, specifically the three-phase mixing region, LBE entrainment region, water core region, and steam plume region. In scenarios where nozzle spacing is narrow or nozzle diameters differ significantly, the jet's base may undergo fragmentation. The jet process is categorized into two stages: the transition stage and the stable stage. During the stable stage, the mass flow rate of sub-cooled water remains relatively constant, with nozzle spacing exerting minimal influence on it. When considering the cross-sectional area of a single nozzle, an increase in nozzle diameter elevates the normalized mass flow rate, whereas the number and diameter of nozzles have little effect on it. Jet penetration depth is inversely related to nozzle spacing. As the number and diameter of nozzles increase, penetration depth initially rises and then decreases. Nozzle spacing has a minor influence on the jet's steam volume, while the number and diameter of nozzles are positively correlated with steam volume. Conversely, the number and diameter of nozzles negatively correlate with normalized steam volume.
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用多喷口高压水射流喷射液态铅铋的沸腾动力学数值模拟
铅基快堆一旦发生蒸汽发生器管破裂(SGTR)事故,就会引发传热管破裂的多米诺骨牌效应,导致涉及多处破裂的失流事故。本文采用数值方法研究了通过多个喷嘴向高温铅铋共晶(LBE)注入过冷水时的喷射沸腾现象。研究探讨了喷嘴间距、数量和直径对射流特性的影响。此外,它还从射流相互作用的角度分析了流动特性和传热机制。研究确定了多喷嘴射流的关键区域,特别是三相混合区域、LBE 夹带区域、水芯区域和蒸汽羽流区域。在喷嘴间距较窄或喷嘴直径相差较大的情况下,射流的底部可能会发生碎裂。射流过程分为两个阶段:过渡阶段和稳定阶段。在稳定阶段,过冷水的质量流量保持相对恒定,喷嘴间距对其影响很小。考虑到单个喷嘴的横截面积,喷嘴直径的增加会提高归一化质量流量,而喷嘴的数量和直径对其影响很小。射流穿透深度与喷嘴间距成反比。随着喷嘴数量和直径的增加,穿透深度先上升后下降。喷嘴间距对喷射蒸汽量的影响较小,而喷嘴数量和直径与蒸汽量呈正相关。相反,喷嘴的数量和直径与归一化蒸汽量呈负相关。
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来源期刊
CiteScore
11.00
自引率
10.00%
发文量
648
审稿时长
32 days
期刊介绍: International Communications in Heat and Mass Transfer serves as a world forum for the rapid dissemination of new ideas, new measurement techniques, preliminary findings of ongoing investigations, discussions, and criticisms in the field of heat and mass transfer. Two types of manuscript will be considered for publication: communications (short reports of new work or discussions of work which has already been published) and summaries (abstracts of reports, theses or manuscripts which are too long for publication in full). Together with its companion publication, International Journal of Heat and Mass Transfer, with which it shares the same Board of Editors, this journal is read by research workers and engineers throughout the world.
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