期刊文献+

高温气冷堆环境模拟装置动态传热特性建模分析

Modeling and Analysis of Dynamic Heat Transfer Characterization of Environment Simulating Facility for High Temperature Gas-cooled Reactor
下载PDF
导出
摘要 清华大学核能与新能源技术研究院研制了模拟高温气冷堆温度、环境氛围的材料测试装置,可进行1 600℃及以下高温碳还原环境下的各类实验。通过对该实验装置的结构进行适当简化,建立了模拟其高温、真空条件下辐射、导热动态传热特性的二维数学模型。仿真结果与实验装置各测点的实测温度变化趋势一致,可解释实验时观察到的多种动态传热现象。此外,该模型可对材料测试区径向温度分布、不同加热功率条件下发热体最高温度等难以直接测量的重要参数进行估计,给出进一步实验的指导性建议。 A material performance test facility simulating the temperature and environ‐ment was built by Institute of Nuclear and New Energy Technology (INET ) of Tsinghua University ,by which kinds of tests at high temperatures of 1 600 ℃ and below in carbon reducing environment could be conducted .T hrough rational simplifica‐tion of the facility ,the 2D mathematical model of the facility was introduced ,which could simulate the dynamic heat transfer characterization including radiation and conduc‐tion at high temperature and under vacuum conduction .T he simulating result is coinci‐dent with the measured temperature tendency and lots of dynamic heat transfer phenom‐enon observed in experiments could be explained .Furthermore ,some key parameters w hich are difficult to be measured directly can be evaluated by the model ,such as the radial temperature distribution of material test zone ,the maximum temperature of the heater with different heating powers ,which could give some instructive suggestions to further experiments .
出处 《原子能科学技术》 EI CAS CSCD 北大核心 2015年第6期1080-1087,共8页 Atomic Energy Science and Technology
基金 高等学校博士学科点专项科研基金资助项目(20130002120015) 清华大学自主科研计划资助项目(2014z21023) 国家自然科学基金资助项目(11072131)
关键词 高温气冷堆 环境模拟装置 高温 真空 辐射传热 high temperature gas-cooled reactor environment simulating facility high temperature vacuum radiation heat transfer
  • 相关文献

参考文献12

  • 1WU Z, LIN D, ZHONG D. The design {eatures of the HTR-10[J]. Nuclear Engineering and De- sign, 2002, 218(1-3): 25-32.
  • 2NIESSEN H, BALL S. Heat transport and afterheat removal for gas cooled reactors under accident conditions, IAEA-TECDOC-1163[R]. Vienna.. IAEA, 2001.
  • 3LI Congxin, REN Cheng, YANG Xingtuan, et al. Temperature measuring system in high tem- perature carbon reducing environment[C]// ICONE21. Chengdu.. [s. n.], 2013.
  • 4REN Cheng, YANG Xingtuan, LI Congxin, et al. Design of the essential material test equip- ment for the pebble bed effective thermal conduc- tivity measurement experiment [C]//ICONE21. Chengdu; [s. n], 2013.
  • 5van ANTWERPEN W, ROUSSEAU P G, du TOIT C G. Multi-sphere unit cell model to calcu- late the effective thermal conductivity in packed pebble beds of mono-sized spheres [J]. Nuclear Engineering and Design, 2012, 247: 183-201.
  • 6van ANTWERPEN W, du TOIT C G, ROUS- SEAU P G. A review of correlations to model the packing structure and effective thermal con- ductivity in packed beds of mono-sized spherical particles[J]. Nuclear Engineering and Design, 2010, 240(7): 1 803-1 818.
  • 7van ANTWERPEN W. Modelling the effective thermal conductivity in the near-wall region of a packed pebble bed[D]. South Africa: North- West University, 2009.
  • 8LOGTENBERG S A, DIXON A G. Computa- tional fluid dynamics studies of fixed bed heat transfer[J]. Chemical Engineering and Process- ing: Process Intensification, 1998, 37(1): 7-21.
  • 9DIXON A G, NIJEMEISLAND M. CFD as a de- sign tool for fixed-bed reactors[J]. Industrial Engineering Chemistry Research, 2001, 40(23) : 5 246-5 254.
  • 10BEHNAM M, DIXON A G, NIJEMEISLAND M, et al. A new approach to fixed bed radial heat transfer modeling using velocity fields from com- putational fluid dynamics simulations[J]. Indus- trial Engineering Chemistry Research, 2013, 52(44): 15 244-15 261.

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