1、主要论文 [1] Multi-factor numerical simulation study on spray dust suppression device in coal mining process[J], Energy, 2020, 182: 544-558. (一作) [2] Numerical simulation of the dynamic wetting of coal dust by spray droplets[J], Energy, 2023, 270: 126667. (一作) [3] Numerical simulation of the multi-index orthogonal experiments on the spray dust-settling devices[J]. Powder Technology, 2020, 371: 217-230. (一作) [4] Numerical simulation of the effect of a wind-assisted spraying device during continuous mining[J]. Powder Technology, 2023,428 :118803. (一作) [5] Analysis of the effect of geometric and flow parameters on the separation efficiency of virtual impact separators: Optimization based on response surface methodology[J].Process Safety and Environmental Protection, 2024,191:1600-1616(唯一通讯) [6] Numerical simulation analysis of a combined wind-fog dust removal device in return air roadways based on an orthogonal test[J]. Powder Technology, 2023,413 :117890. (唯一通讯) [7] Study on the optimal parameter range of droplet-wrapped respirable dust in spray dust fall by mesoscopic method[J]. Environmental Research, 2022,214 :114035. (唯一通讯) [8] Enhancing Dust Concentration Monitoring in High Particulate Matter Environments: A Dual-Light Source Particulate Matter Sensor Approach Based on Mie Scattering[J]. Sensors and Actuators A: Physical, 2025,,384:116348. (一作) [9] Improvement and optimization of coal dust concentration detection technology: Based on the 3σ composite algorithm[J]. Flow Measurement and Instrumentation, 2024, 97:102598. (一作) [10] 矿井新型增润促凝喷雾降尘剂的研制与抑尘性能研究[J]. 材料导报, 2023,15:1-18 2、授权发明专利 [1]一种矿井综采工作面粉尘监测及智能喷雾降尘系统. ZL 202111511814.8, 2023. [2]一种矿井呼吸性粉尘多级连续分离器. ZL 202310041273.X, 2024. |