
张文超,副教授,1984.10,哈尔滨工程大学核能科学与工程博士,美国俄勒冈州立大学访问学者。近5年,主持或作为主要完成人参与横、纵向课题7项,以第一作者/通讯作者发表学术论文20余篇,其中SCI检索8篇,EI检索5篇。
邮箱:wenchaozhang@neepu.edu.cn
办公室:东北电力大学科技楼820
1、气液两相流,包括气泡发生器、气液分离器的设计与开发
2、反应堆热工水力,包括欠热沸腾流动传热,气泡动力学,自然循环流动不稳定性等
3、新型燃料棒设计与开发,包括燃料棒单相与沸腾两相传热性能,CHF等
每年招收4-5名硕士研究生,欢迎动力工程及工程热物理、核科学与技术、动力工程等具有能动专业背景的学生报考!
自然循环回路设计及改造
锂冷堆堆芯两相流计算服务
导叶筛网式气液分离器理论研究及试验验证
不锈钢分离器分离效果试验
花瓣形燃料元件通道内汽泡动力学行为及机理研究
花瓣形燃料元件通道内过冷流动沸腾汽泡生长
花瓣形燃料元件通道内气泡生长特性实验研究及模型构建
[1]蔡伟华,王玉航,张文超*,等. 多孔介质-文丘里气泡发生器产气特性 [J]. 化工学报, 2024, 75 (10): 3488-3497.
[2]蔡伟华,黄泽全,张文超*,等. 5×5花瓣形燃料棒组件内过冷沸腾流动与换热特性数值研究 [J]. 核动力工程, 2023, 44 (06): 71-79.
[3]张文超,李嘉元,杨光,等. 花瓣形棒束通道内单气泡上升行为数值模拟研究 [J]. 原子能科学技术, 2023, 57 (10): 1899-1909.
[4]张文超,温雅钦,周云龙,等. 三面加热窄矩形通道内单汽泡生长过程可视化研究 [J]. 工程热物理学报, 2019, 40 (02): 335-341.
[5]张文超,焦琦,周云龙,等. 矩形通道内低压自然循环压降型脉动及其复合型脉动可视化研究 [J]. 化工学报, 2018, 69 (06): 2455-2462.
[6]Huang Z, Zhang W*, Sun J, et al. Numerical study on thermal-hydraulic characteristics of petal-shaped fuel rod assembly under cosine heating conditions[J]. Experimental and Computational Multiphase Flow, 2025, 7(1): 97-108.
[7]Zhang W, Du Q, Wang Y, et al. Numerical simulation of flow and heat transfer characteristics of liquid lithium metal inside trapezoid shaped wire rod bundle channels[J]. Annals of Nuclear Energy, 2025, 223: 111667.
[8]He B, Hou Y, Zhang W*, et al. Thermal-Mechanical performance analysis of a petal-shaped fuel rod under RIA condition[J]. Nuclear Engineering and Design, 2024, 418: 112888.
[9]Zhang W, Han A, Cai B, et al. Numerical simulation of single-phase flow and heat transfer characteristics of three-petal shaped fuel assembly[J]. Annals of Nuclear Energy, 2024, 207: 110693.
[10]Cai W, Huang Z, Zhang W*, et al. Numerical investigation on subcooled boiling and CHF characteristics in 3× 3 petal-shaped fuel rod bundle channel under cosine heating condition[J]. Annals of Nuclear Energy, 2024, 206: 110660.
[11]Wang Y, Du Q, Zhang W*, et al. Numerical study on flow and heat transfer characteristics of liquid lithium in hexagonal rod bundle channels[J]. Annals of Nuclear Energy, 2024, 208: 110812.
[12]Yang G, Zhang W*, Binama M, et al. Review on bubble dynamic of subcooled flow boiling-part a: Research methodologies[J]. International Journal of Thermal Sciences, 2023, 184: 108019.
[13]Yang G, Zhang W*, Binama M, et al. Review on bubble dynamic of subcooled flow boiling-part b: Behavior and models[J]. International Journal of Thermal Sciences, 2023, 184: 108026.