[1] Danlong Li , Xiaokang Yan#, Wenjian Wang, Hainan Wang, Ruoqian Zhou, Hanxi Yang,Haijun Zhang *[J], New insights into the intensification of collector adsorption on fine particles induced by flow field,Journal of Molecular Liquids,2022,120119
[2] Zhixin Sun, Xiaokang Yan*, Lijun Wang;Xiaoheng Li, Ai Wang, Haijun Zhang.Numerical prediction of particle slip velocity in turbulence by CFD-DEM simulation[J].Particuology, 2023(80):170-179.
[3] Xiaokang Yan, Wenjian Wang, Haijun Zhang, Danlong Li, Zhixin Sun, Hanxi Yang,Enhancement of liquid-solid mixing and particle hydrophobization by an impeller-less flotation pulp conditioning device,Minerals Engineering,Volume 190,2022,107933
[4] 闫小康, 苏子旭, 王利军, 张海军, 曹亦俊,刘炯天. 基于湍流涡调控的煤气化渣炭-灰浮选分离过程强化. 煤炭学报, 2022,47(3):1318-1328.
[5] Xiaokang Yan*, Yanping Yao, Shiqi Meng, Shouying Zhao, Lijun Wang, Haijun Zhang, Yijun Cao,Comprehensive particle image velocimetry measurement and numerical model validations on the gas–liquid flow field in a lab-scale cyclonic flotation column[J], Chemical Engineering Research and Design,2021(174):1-10.
[6] Xiaoheng Li, Xiaokang Yan*, Juan Li, Lijun Wang, Haijun Zhang, Yijun Cao, Effect of sieve plate packing on bubble size distribution in a cyclonic flotation column[J].Chemical Engineering and Processing - Process Intensification,2021(168): 108554.
[7] Zheng Kaixin , Yan Xiaokang* , Wang Lijun , Zhang Haijun, Cao Jiyun, Guo Chuwen. Turbulent effects of vortex generators on the separation of fine particles[J]. Chemical Engineering Journal, 2021(11-13):129373.
[8] Wang Hainan, Li Danlong, Yang Wenqing, Wang Lijun, Zhang Haijun*, Yan Xiaokang*. Optimizing oxidized coal flotation using impact flow conditioning pulp. International Journal of Coal Preparation and Utilization, 2020(10):1-15
[9] Meng Shiqi, Li Xiaoheng, Yan Xiaokang*, Wang Lijun, Zhang Haijun, Cao Yijun*. Turbulence Models for Single Phase Flow Simulation of Cyclonic Flotation Columns. Minerals, 2019, 9(8), 464.
[10] Zhang Fanfan, Cao Yijun*, Yan Xiaokang*, Wang Lijun, Xu Yajun. A Study of Bubble Mineralization by Modified Glass Microspheres Based on a High-Speed Dynamic Microscopic Test System. Minerals, 2019, 9(6), 350.
[11] Yan Xiaokang, Zheng Kaixin, Jia Yan, Miao Zhenyong, Wang Lijun*, Cao Yijun, Liu Jiongtian. Drag Coefficient Prediction of a Single Bubble Rising in Liquids. Industrial & Engineering Chemistry Research, 2018, 57: 5385-5393.
[12] Yan Xiaokang, Jia Yan, Wang Lijun*, Cao Yijun. Drag coefficient fluctuation prediction of a single bubble rising in water. Chemical Engineering Journal, 2017, 316: 553-562.
[13] Yan Xiaokang , Chen Zhuying , Wang L . Computational fluid dynamics (CFD) numerical simulation and particle image velocimetry (PIV) measurement of a packed flotation column[J]. Physicochemical Problems of Mineral Processing, 2018, 54(2):395-405.
[14] Yan Xiaokang , Meng Shiqi , Wang Ai , Wang Lijun,Cao Jiyun*. Hydrodynamics and separation regimes in a cyclonic–static microbubble flotation column[J]. Asia‐Pacific Journal of Chemical Engineering, 2018: e2185.
[15] Zhang Fan , Cao Yijun* , Yan Xiaokang* , Wang Lijun,Xu Yajun. A Study of Bubble Mineralization by Modified Glass Microspheres Based on a High-Speed Dynamic Microscopic Test System[J]. Minerals, 2019, 9(6):350.
[16] Xiaokang Yan,Kaixin Zheng, Wenbing Su, Lijun Wang, Haijun Zhang, Yijun Cao, Chuwen Guo. Predictions of terminal rising velocity, shape and drag coefficient for particle-laden bubbles[J].Minerals Engineering,2021(173): 107188.
[17] 李娟, 闫小康*, 李晓恒, 粟文兵, 张玉胜. 旋流器内部流场的数值模拟方法研究[J]. 煤炭学报. 2019, 44(10): 3250-3257.
[18] 闫小康,刘煜,张秀宝.旋流-静态微泡浮选柱旋流流场的数值模拟与试验测量[J].煤炭学报,2016,41(06):1560-1567.
[19] 张凡凡, 许亚军, 闫小康*,曹亦俊,刘刚. 基于高速动态显微测试的气泡矿化研究[J]. 中国矿业大学学报, 2016, 45(006):1238-1244.
[20] 闫小康, 周长春. 旋流-静态微泡浮选柱管流段结构型式对分选效果的影响[J]. 煤炭学报, 2016, 41(0z1):199-205.
[21] 杨涵曦,苏子旭,李娟,李晓恒,闫小康*. 浮选多相流体系中的流场测量方法[J]. 矿业研究与开发, 2020, 244(11):150-157.
[22] 许亚军, 王爱, 闫小康*,曹亦俊. 小型浮选柱中气泡运动的PIV测量方法[J]. 煤炭技术,2016(8),275-277.
[23] 刘煜, 闫小康*, 王利军,曹亦俊等. 现代光学测量技术在矿物浮选中的应用及展望[J]. 洁净煤技术, 2017(1).
[24] 曹亦俊, 闫小康, 王利军,王爱. 微细粒浮选的微观湍流强化[J]. 矿产保护与利用, 2017(2):113-118.