1. 柏文文,魏加华,倪三川,等.低频声波作用下微液滴沉降实验研究[J].应用基础与工程科学学报,2020,28(02):247-258. 2. 柏文文,魏加华,李琼,等.声波作用下液滴碰并沉降及其氢氧同位素特征[J].应用声学,2021,40(01):103-112. 3. 柏文文,魏加华,杨海娇,等.低频声波作用下液滴群氢氧同位素效应实验与理论分析[J].应用基础与工程科学学报,2022,30(06):1357-1365. 4. 李岩,柏文文*.声波干预下微液滴群微物理变化及其与雷达反射率因子关系研究[J].干旱区地理,2024,47(08):1388-1398. 5. 刘伊丰,柏文文,吴淼,等.电絮凝流场及泥沙沉降效果特性与控制因素[J].水力发电学报,2024,43(12):77-88. 6. 柏文文,王尚涛,倪三川,等.黄河源区典型日近地表土壤-植被-水体蒸散发及水汽同位素特征[J].干旱区研究,2025,42(01):72-83. 7. 吴淼,柏文文*,刘伊丰.电场作用下悬移质泥沙沉降特性及其絮凝效果优化[J].环境工程,2025,43(06):154-165. 8. Wenwen Bai, Jiahua Wei, Yang Shi, Zhifeng Zhao, Qiong Li. Microphysical Characteristics and Environmental Isotope Effects of the Micro-Droplet Groups under the Action of Acoustic Waves[J]. Atmosphere, 2021, 12(11),1488. 9. Wenwen Bai, Yang Shi, Zhifeng Zhao, Jiahua Wei. Investigation of critical response characteristics of micro-droplets under the action of low-frequency acoustic waves[J]. Front. Environ. Sci., 2022, 10, 972648. 10. Yifeng Liu, Wenwen Bai*, Jiahua Wei, Zhen Qiao, Shangyao Du. Flow field regulation and sediment particle flocculation mechanisms in ultrasound-assisted electrocoagulation intervention[J]. Ultrasonics Sonochemistry, 2025, 121, 107558. 11. Yifeng Liu, Wenwen Bai*, Jiahua Wei, Zhen Qiao, Shangyao Du. Study on kinetic modeling for electrocoagulation removal of suspended sediment particles based on response surface methodology optimization and ζ potential correction[J]. J. Environ. Chem. Eng., 2025, 13,119682. 12. Wenwen Bai, Miao Wu, Jiahua Wei*, Yifeng Liu, Zhen Qiao, Yang Shi, Shangyao Du, Shengchun Wang. Flocculation characteristics and mechanisms of suspended sediment under ultrasonic—electric coupling intervention[J], International Journal of Sediment Research, proof, https://doi.org/10.1016/j.ijsrc.2026.01.001. 13. Yang Shi, Jiahua Wei*, Wenwen Bai, Guangqian Wang, Numerical investigations of acoustic agglomeration of liquid droplet using a coupled CFD-DEM model[J]. Advanced Powder Technology,2020, 31,2394–2411. 14. Yang Shi, Jiahua Wei*, Minglei Hou, Wenwen Bai. A numerical study of the acoustic and turbulent agglomeration processes by a coupled computational fluid dynamics–population balance model[J]. Phys. Fluids, 2025, 37, 113324. 15. Yang Shi, Jiahua Wei*, Wenwen Bai1, Zhifeng Zhao, Olusola O. Ayantobo, Guangqian Wang, Theoretical analysis of acoustic and turbulent agglomeration of droplet aerosols[J]. Advanced Powder Technology, 2023,34,104145. |