[1] Zhang L. Z., Pan A. J., Cai R. R., et al. 2019. Indoor experiments of dust deposition reduction on solar cell covering glass by transparent super-hydrophobic coating with different tilt angles. Solar Energy, 188, 1146-1155.(SCI收录,IF:6.7. 导师一作,本人二作)
[2] Pan A. J., Lu H., Zhang L. Z., 2019. Experimental investigation of dust deposition reduction on solar cell covering glass by different self-cleaning coatings. Energy, 181, 645-653. (SCI收录,IF: 9.)
[3] Pan A. J., Zhang L. Z., Cai R. R., 2021. Numerical methodology for simulating particle deposition on superhydrophobic surfaces with randomly distributed rough structures. Applied Surface Science, 568, 150872. (SCI收录,IF:6.7.)
[4] Pan A. J., Zhang L. Z., Cai R. R., Dong C. S., Fluid flow and heat transfer of a gas stream containing dust particles in a parallel-plates duct. ASME Journal of Heat Transfer, 144, 111108.(SCI收录,IF:2.1)
[5] Wang Z. X., Zhao L. Z., Pan A. J., et al. Pre-orientation sintering: an alternative process to prepare high-performance anisotropic Nd–Fe–B HDDR magnets. Journal of Physics D: Applied Physics, 57, 115001. (SCI收录,IF:3.4)
[6] 潘安健, 张立志, 卢浩. 单颗粒在规则超疏水表面上的沉积特性研究[J]. 工程热物理学报, 2020, 41, 2394-2399.(EI收录)
[7] Pan A. J., Lu H. Zhang L. Z. 2020. Experimental investigation of dust particle deposition reduction on solar cell covering glass by super-hydrophobic coatings. Environmental Science and Engineering, 827-834. (EI收录)
[8] Lu H., Zhang L. Z., Lu L., Pan A. J. 2019. Numerical investigation on monodispersed particle deposition in turbulent duct flow with thermophoresis. Energy Procedia, 158, 5711-5716. (EI收录)
[9] Lu H., Zhang L. Z., Lu L., Pan A. J. 2019. Numerical study on polydispersed dust pollution process on solar photovoltaic panels mounted on a building roof. Energy Procedia, 158, 879-884. (EI收录)
[10] Pan A. J., Zhang L. Z., Lu H. 2019. Experimental measurement and numerical simulation of dust particle deposition on super-hydrophobic surface. 12th International Conference on Computational Heat, Mass and Momentum Transfer. (国际会议论文)