期刊文献+

加热系统间歇泉流动机理与模型研究 被引量:2

Geysering Mechanism and Model Study for Heating System
在线阅读 下载PDF
导出
摘要 在实验基础上对间歇泉流动的机理进行了分析:间歇泉流动是浮力与阻力间相互耦合的结果;系统热量的分布不均匀是发生间歇泉流动的重要前提;汽-液交界面的振荡引起了管路内流动参数的振荡,汽-液交界面的破裂最终决定了蒸汽的喷涌时刻。在机理分析的基础上,建立了间歇泉流动中系统热量传输模型,模型计算结果与实验结果较为符合。 The geysering mechanism was analyzed based on experiments. The analysis results show that the geysering is a result of interaction between the buoyancy and resistance, for which the non-uniform of heat generation and distribution in the system is an important precondition. The fluctuation of flow parameters in the riser is caused by the interface oscillation of the vapor accumulated in the heating section and the liquid in the riser. The intermittent vapor venting would occur after the interface ruptures. Based on the above mechanism, the system heat transfer models of geysering were developed. The results calculated with these models show good agreement with the experimental data.
出处 《原子能科学技术》 EI CAS CSCD 北大核心 2013年第4期546-551,共6页 Atomic Energy Science and Technology
基金 国家自然科学基金资助项目(11075104) 高等学校博士学科点专项科研基金资助项目(20090073110034)
关键词 间歇泉 周期性沸腾 自然循环 geysering periodical boiling natural circulation
  • 相关文献

参考文献11

  • 1GRIFFITH P. Geysering in liquid-filled lines[C]// ASME-AIChE Heat Transfer Conference. Hous- ton, United States: [s. n. ], 1962.
  • 2DUFFEY R B R. Physical interpretation of geysering phenomena and periodic boiling instability at low flows[C]///ASME/JSME Fourth International Conference on Nuclear Engineering. New Orleans: [s. n.], 1996.
  • 3BRENNEN C E. Fundamentals of multiphase flow [M]. England: Cambridge University Press, 2005.
  • 4IAEA. Natural circulation data and methods for advanced water cooled nuclear power plant designs, IA EA-TECDOC-1281[R]. Vienna: IAEA, 2000.
  • 5D'AURIA F, FROGHERI M. Use of a natural circulation map for assessing PWR performance [J].Nuclear Engineering and Design, 2002, 215 (1) : 111-126.
  • 6Westinghouse Electric Company. AP1000 design control document (Rev. 15) [R]. USA:Westinghouse Electric Company, 2005.
  • 7BOURE J A, BERGLES A E, TONG L S. Review of two-phase flow instability[J]. Nuclear Engineering and Design, 1973, 25(2): 165-192.
  • 8ARITOMI M, CHIANG J H. Geysering in parallel boiling channels [J]. Nuclear Engineering and Design, 1993, 141(1):111-121.
  • 9吴莘馨,姜胜耀,吴少融,张佑杰.喷泉不稳定诱发间歇流量振荡实验研究[J].核动力工程,1997,18(2):124-128. 被引量:14
  • 10戚展飞,佟立丽,曹学武.加热系统间歇泉流动初步实验研究[C]//第十二届全国反应堆热工流体学术会议.丽江:2011.

二级参考文献1

  • 1姜胜耀,中国核科技报告,1988年

共引文献13

同被引文献15

  • 1戚展飞,佟立丽,曹学武.加热系统间歇泉流动现象初步实验研究[J].核动力工程,2012,33(S1):64-68. 被引量:3
  • 2张亮,林文胜,鲁雪生,顾安忠.低温输送系统间歇泉现象实验研究[J].上海交通大学学报,2005,39(2):238-241. 被引量:8
  • 3阎昌琪.气液两相流[M],哈尔滨:哈尔滨工程大学出版社,2007.
  • 4GUO Xueqing, SUN Zhongning, WANG Jianjun, et al. Steady-state performances and scaling analyses for an open flashing-driven natural circulation system [ J ]. Progress in nuclear energy, 2016, 87: 1-14.
  • 5SHI Shanbin, SCHLEGEL P J, BROOKS C S, et al. Exper-imental investigation of natural circulation instability in a BWR-type small modular reactor[ J ]. Progress in nuclear en- ergy, 2015, 85: 96-107.
  • 6YANG S K. Stability of flashing-driven natural circulation in a passive moderator cooling system for Canadian SCWR [ J ]. Nuclear engineering and design, 2014, 276: 259-276.
  • 7KURAN S, XU Y, SUN X, et al. Startup transient simula- tion for natural circulation boiling water reactors in PUMA facility [ J]. Nuclear engineering and design, 2006, 236 (22) : 2365-2375.
  • 8ARITOMI M, CHIANG J H, MORI M. Geysering in parallel boiling channels [ J ]. Nuclear engineering and design, 1993, 141(1/2) : 111-121.
  • 9KUNCORO H, RAO Y F, FUKUDA K. An experimental study on the mechanism of geysering in a closed two-phase thermosyphon [ J ]. International journal of muhiphase flow, 1995, 21(6) : 1243-1252.
  • 10TAITEL Y, BORNEA D, DUKLER A E. Modelling flow pattern transitions for steady upward gas-liquid flow in ver- tical tubes[ J]. AICbE journal, 1980, 26(3) : 345-354.

引证文献2

二级引证文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部