Current position: Home > Scientific Research > Paper Publications
Paper Publications
Fan Fan, Cong Qi*, Qi Liu, Mohsen Sheikholeslami, Effect of twisted turbulator perforated ratio on thermal and hydraulic performance of magnetic nanofluids in a novel thermal exchanger system.Case Studies in Thermal Engineering, 2020, 22: 100761.(SCI)
Cong Qi*, Xin Cui*, Yimin Li, Yurong He. Lattice Boltzmann simulation of boiling bubbles coalescence in Al2O3-water nanofluid.Journal of Computational and Theoretical Nanoscience, 2015, 12(10): 3556-3565.(SCI)
Xinfeng Zhai, Cong Qi*, Yuqi Yang, Jiangyun Wang, Thermo-hydraulic performance of nanofluids under adjustable magnetic field.Applied Thermal Engineering, 2021, 186: 116491. (SCI)
Yongliang Wan, Runhan Wu, Cong Qi*, Gang Duan, Ruizhao Yang. Experimental study on thermo-hydraulic performances of nanofluids flowing through a corrugated tube filled with copper foam in heat exchange systems.Chinese Journal of Chemical Engineering, 2018, 26: 2431-2440.(SCI)
齐聪,何玉荣*,闫盛楠,田枫林. 矩形腔内纳米流体自然对流的两相格子Boltzmann模拟.工程热物理学报, 2014, 35(2): 282-286. (EI)
Cong Qi*, Yuxing Wang, Zi Ding, Jianglin Tu, Mengxin Zhu, Application of superhydrophobic surface on boiling heat transfer characteristics of nanofluids.Energy Engineering, 2021, Accepted. (EI)
Cong Qi*, Chengchao Wang, Jinghua Tang, Dongtai Han. Experimental study on flow and heat transfer characteristics of nanofluids in a triangular tube at different rotation angles.Energy Engineering, 2020, 117(2): 63-78. (EI)
Cong Qi*, Chunyang Li, Gongbin Zhao, Maoni Liu, Dongtai Han*. Influence of rotation angle of a triangular tube with built-in twisted tape on the thermal-exergy efficiency and entropy generation of nanofluids in the heat exchange system.Asia-Pacific Journal of Chemical Engineering, 2020, 15(1): e2401. (SCI)
Guiqing Wang, Cong Qi*, Yuhang Pan, Chunyang Li. Experimental study on heat transfer and flow characteristics of two kinds of porous metal foam tubes filled with water.Thermal Science, 2018, 22(2): S497-S505. (SCI)
万永亮,齐聪*,李春阳,韩东太. 基于热舒适性纳米喷泉的流动与传热特性研究.化工进展,2016, 35(12): 3807-3817. (EI)