期刊文献+

Main coolant pump resistance influence on single phase water reverse flow in the inverted U-tubes under natural circulation

Main coolant pump resistance influence on single phase water reverse flow in the inverted U-tubes under natural circulation
在线阅读 下载PDF
导出
摘要 Based on nuclear power plant(NPP) best-estimate transient analysis with RELAP5 / MOD3 code,the reactor point kinetics model in RELAP5 / MOD3 code is replaced by the two-group,3-D space and time dependent neutron kinetic model,and two-fluid model is replaced by drift flux model.A coupled three-dimensional physics and thermal-hydrodynamics model is used to develop its corresponding computing code,thus simulating natural circulation of single-phase flow for the PWR.In this paper,we report the forward and reverse flow distribution in the inverted U-tubes of the steam generator(SG) under some typical operating conditions in the natural circulation case, and analyze the influence of main coolant pump resistance on the forward and reverse flow distribution.The calculation results show that,the pressure drop between SG inlet and outlet plenum decreases,and the SG inlet and outlet mass flow decrease with an increased main coolant pump resistance,but net mass flux of reverse flow in inverted U-tubes,and the ratio of mass flow in all reverse flow tubes to that of main coolant pipeline increase, meanwhile,the secondary steam load is invariable in this process. Based on nuclear power plant(NPP) best-estimate transient analysis with RELAP5 / MOD3 code,the reactor point kinetics model in RELAP5 / MOD3 code is replaced by the two-group,3-D space and time dependent neutron kinetic model,and two-fluid model is replaced by drift flux model.A coupled three-dimensional physics and thermal-hydrodynamics model is used to develop its corresponding computing code,thus simulating natural circulation of single-phase flow for the PWR.In this paper,we report the forward and reverse flow distribution in the inverted U-tubes of the steam generator(SG) under some typical operating conditions in the natural circulation case, and analyze the influence of main coolant pump resistance on the forward and reverse flow distribution.The calculation results show that,the pressure drop between SG inlet and outlet plenum decreases,and the SG inlet and outlet mass flow decrease with an increased main coolant pump resistance,but net mass flux of reverse flow in inverted U-tubes,and the ratio of mass flow in all reverse flow tubes to that of main coolant pipeline increase, meanwhile,the secondary steam load is invariable in this process.
出处 《Nuclear Science and Techniques》 SCIE CAS CSCD 2012年第6期374-379,共6页 核技术(英文)
关键词 主冷却剂泵 自然循环 单相流 压水堆 逆向流动 阻力 U型管 RELAP5 Steam generator Natural circulation Reverse flow Main coolant pump resistance
作者简介 Corresponding author. E-mail address: hg04381 @163.com
  • 相关文献

参考文献11

  • 1Natural circulation data and methods for advanced water cooled nuclear power plant designs. International Atomic Energy Agency. IAEA-TECDOC- 1281, 2002, 4-12.
  • 2Zhang Y, Song X M, Huang W. Nation key lab reactor sys design technol Ann, 2008, 270-278.
  • 3Lu C, Quan B, Liu D M, et al. Design and demonstration of increasing coolant flow flux in nuclear power plant under all natural circulation. National key laboratory of reactor system design technology annals, 2008, 241-246.
  • 4Yang R C, Qin S w, Liu R L, et al. J Eng Thermophy 2006, 27: 130-132.
  • 5Yang R C, Liu J G, Huang Y P, et al. J Eng Thermophy, 2008, 29: 807-810.
  • 6Yang R C, Liu J G, Liu R L, et al. Nucl Power Eng, 2010, 31: 57-60.
  • 7Zhang D, Chen W Z, Wang S M, et al. Atom Energy Sci Technol, 2010, 44(sl): 181-186.
  • 8Zhang D, Chen W Z, Wang S M. Atom Energy Sci Technol, 2011, 45:667-671.
  • 9Zhang D, Chen W Z, Wang S M. Chin J Nucl Sci Eng, 2011, 45" 154-161.
  • 10Hao Y L, Yu L, Cai Z S, et al. Chin J Nucl Sci Eng, 2007, 27: 20-26.

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