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热管堆用弯折钠热管间歇沸腾现象研究

Study on geyser boiling effect of bent heat pipe in heat pipe cooled reactor

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【作者】 刘健; 余大利; 沈爱丽; 李桃生; 陈熹挺;

【Author】 LIU Jian;YU Dali;SHEN Aili;LI Taosheng;CHEN Xiting;Institute of Nuclear Energy Safety Technology, Hefei Institutes of Physical Science, Chinese Academy of Sciences;University of Science and Technology of China;Huaibei Normal University;China Nuclear Power Technology Research Institute Co., Ltd.;

【通讯作者】 余大利;

【机构】 中国科学院合肥物质科学研究院核能安全技术研究所; 中国科学技术大学; 淮北师范大学; 中广核研究院有限公司;

【摘要】 热管冷却反应堆所用热管为了影锥屏蔽的装配以及减弱中子泄漏,不可避免地会出现热管弯折现象。间歇沸腾是指热管所呈现的壁面温度周期性波动现象,这在传统直热管中普遍存在并对热管的传热和稳定运行造成不利影响。本文采用实验和数值仿真的方法分析高温钠热管弯折效应对于热管传热性能的影响,通过搭建高温钠热管实验平台,开展相同尺寸的直热管和弯折热管实验,实验结果显示:弯折热管在相同工况下发生间歇沸腾时温度波动的周期和振幅都远低于直热管。利用多相流模型,模拟直热管和弯折热管的内部流动相变过程,模拟结果表明,弯折的存在使热管内部形成稳定的分层流动替代直管内的弹状流动,从而减弱间歇沸腾的影响。

【Abstract】 [Background] Bending of heat pipes is an inevitable occurrence in heat pipe cooled reactors designed for shadow cone shielding and the reduction of neutron leakage. Geyser boiling, characterized by periodic fluctuations in wall temperature during heat pipe operation, is common in conventional straight heat pipes. Temperature fluctuations in straight heat pipes can reach up to hundreds of degrees Celsius, which has an adverse impact on the heat transfer performance and stable operation of heat pipes. [Purpose] This study aims to analyze the impact of high-temperature sodium heat pipe bending on heat transfer performance. [Methods] Both experimental and numerical methods were applied to the analysis of geyser boiling effect of bent heat pipe in heat pipe cooled reactor. Firstly, an experimental platform was established to conduct comparative tests on straight and bent heat pipes under vertical conditions. The heat pipes were heated by electromagnetic induction heating and cooled by natural convection and radiation. The wall temperatures of the straight heat pipe and bent heat pipe were compared to analyze the effect of bending on geyser boiling phenomena. Meanwhile, a multiphase flow model was established using Fluent to simulate the internal flow within both straight and bent heat pipes. [Results] The experimental results indicate that, under identical operating conditions, the bent heat pipe exhibits significantly lower temperature fluctuation amplitude and period during geyser boiling compared to the straight heat pipe. The simulation results reveal that the presence of the bend induces a stable stratified flow regime, replacing the slug flow typically observed in straight pipes, thus mitigating the effects of geyser boiling. The maximum wall temperature decreases by 15 ℃ in bending heat pipe. [Conclusions] The findings of this study demonstrate that bending the high temperature sodium heat pipe can effectively suppress geyser boiling, which is beneficial for enhancing the heat transfer performance and operational stability of heat pipe cooled reactors.

【基金】 国家自然科学基金(No.52306291);中国科学院国际伙伴计划项目(No.145GJHZ2024054MI)资助~~
  • 【分类号】TL331;V439.5
  • 【下载频次】7
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