姓名:张宇萌

职称: 青年研究员  硕士生导师  专业硕士生导师 

性别:男

毕业院校:兰州大学

学历:博士研究生

学位:博士

在职信息:在职

所在单位:

入职时间:

办公地点:

电子邮箱:zhangyumeng@lzu.edu.cn

学习经历

2015.09-2021.6,兰州大学,环境工程,博士(硕博连读)
2011.09–2015.06,大连工业大学,环境工程,本科

研究方向

1. 大气污染控制技术
2. 旋转流体动力学
3. 旋流强化过程、化工数值模拟

工作经历

2022.02–2024.06,兰州大学,大气科学流动站,萃英博士后

获得荣誉

[1] 甘肃省科技进步奖一等奖(8 /13),亚微米级超细粉尘高效捕集技术的研发及应用 甘肃省人民政府, 2020.11
[2] 甘肃省环境科学技术奖一等奖(8 /13),异质凝并超重力细颗粒高效收集技术,甘肃省生态环境厅,2020.7
[3] 第二届甘肃省博士后创新创业大赛优秀奖(2/2),微反应器中超临界多组分射流制备储能材料颗粒的调控方法,甘肃省人力资源和社会保障厅,2023.8

在研项目

[1] 国家自然科学基金青年基金项目,多胞涡旋流场-饱和水汽场协同强化颗粒核化长大机制研究,主持,在研。
[2] 中国博士后科学基金面上资助二等,不同结构旋流场内颗粒核化长大过程研究及模型构建,主持,已完成。
[3] 甘肃省青年科技基金计划,旋流场强化细颗粒核化长大机制研究,主持,已完成。
[4] 甘肃省科协青年科技人才托举工程,基于旋流场的颗粒核化长大强化方法研究,主持,在研。
[5] 甘肃省科技重大专项 2023 年甘肃省化工新材料创新联合体项目子课题,丁腈橡胶装置废气处理技术研究,主持,在研。
[6] 企事业单位委托项目,特征粒径催化剂的制备模拟优化研究,主持,在研。
[7] 企事业单位委托项目,新能源模拟建模仿真技术研究,主持,在研。
[8] 企事业单位委托项目,聚烯烃工艺旋风分离器结构优化设计,主持,在研。
[9] 甘肃省省级人才项目(青年团队),面相环保分离设备增效和工业设备优化的仿真模型开发团队建设,参与,在研。
[10] 甘肃省重点研发计划项目,基于相变凝聚与超重力场的烟气节水与污染物深度治理技术,参与,在研。
[11] 甘肃省重点研发计划项目,面向莫高窟环境保护的数字孪生体构建,参与,在研。
[12] 企事业单位委托项目,燃煤电厂脱硫废水喷雾干燥零排放系统开发及应用,参与,在研。
[13] 企事业单位委托项目,球形氯化镁载体工艺CFD过程模拟,参与,已完成。
[14] 企事业单位委托项目,稀土电解槽多物理场耦合模拟,参与,已完成。


发表论文

[1] Yuxiang Liu, Qinyu Cai, Sijie Dong, Yumeng Zhang*, Bo Wang*. Periodic fluctuation analysis of air core in hydrocyclone using dynamic mode decomposition. AIChE Journal, 2026: e70310.
[2] Hainuo Wang, Anguo Bu, Ruizhi Jin, Jinming Liang, Yumeng Zhang*, Kejun Dong, Bo Wang*. Numerical investigation of condensation-enhanced agglomeration of fine particles using a coupled CFD-DEM approach. Fuel, 2026, 408: 137766. 
[3] Zihui Zhang, Shijun Yan, Meiying Huang, Yuxiang Liu, Yumeng Zhang*. Numerical investigation of co-firing of RDF and pulverized coal in precalciners: Impacts on combustion characteristics and pollutant emissions. Fuel, 2026, 417: 138647.
[4] Zihui Zhang, Ruizhi Jin, Qinyu Cai, Yuxiang Liu, Kejun Dong, Yumeng Zhang*, Bo Wang*. Three-dimensional velocity field modeling of bounded vortex flows based on a three-cell structure. Physics of Fluids, 2026, 38(1): 015118.
[5] Qinyu Cai, Yumeng Zhang*, Qing Lv, Sijie Dong, Binbin Pei, Bo Wang*. Strain-resolved analysis of energy dissipation mechanisms in single-cell tornado-like vortices. International Journal of Heat and Fluid Flow, 2026, 117: 110018.
[6] Yumeng Zhang*, Pengfei Lv, Sijie Dong, Yuxiang Liu, Bo Wang*. Experimental investigation of vortex wandering dynamics in single-cell tornado-like vortices. Journal of Fluid Mechanics, 2025, 1024: A4.
[7] Jinming Liang, Qing lv, Zijia Wang, Yuyang Hu, Haoyuan Xue, Bo Wang, Yi Wei*, Yumeng Zhang*. A Novel hybrid Multi-Objective optimization framework based on ELM-NSGA-II-TOPSIS: Case study of rare earth electrolytic cell. Chemical Engineering Science, 2025, 312: 121669. 
[8] Haoyuan Xue, Qing Lv, Yuxiang Liu, Kunyan Fu, Yi Wei, Yumeng Zhang*, Bo Wang*. Investigation of water-soluble ions removal through enhanced heat exchange based on cloud-air-purifying technology. Powder Technology, 2025, 458: 120950.
[9] Zihui Zhang, Shijun Yan, Sijie Dong, Kejun Dong, Yumeng Zhang*, Bo Wang*. Study of the short-circuit flow and circulation flow’s impact on separation performance of cyclone separator with volute-helical inlet. Advanced Powder Technology, 2024, 35(1): 104281.
[10] Qinyu Cai, Yuyang Hu, Zihui Zhang, Mingqing Tao, Huanhuan Huo, Kejun Dong, Yumeng Zhang*, Bo Wang*. Influence of nose angle on performance of dense medium cyclones with volute inlet. Powder Technology, 2024, 435: 119390. 
[11] Hainuo Wang, Yumeng Zhang*, Shijun Yan, Wenhao Ding, Pengfei Lv, Bo Wang*, Promotion of particle agglomeration by different vortex generator angles based on PIV-PDPA experiment, Chemical Engineering Journal, 2024, 150308.
[12] Shijun Yan, Guiyuan Zhao, Qinyu Cai, Jinming Liang, Yumeng Zhang*, Bo Wang*, Li’an Hou, Exploration of energy conversion and loss on Savonius turbines in vortex flow fields, Energy Conversion and Management, 2024, 118789. 
[13] Yumeng Zhang*, Di Wei, Bo Wang*,Fine particles removal of pyrolysis gasification flue gas from rural domestic waste: Laboratory research, molecular dynamics simulation, and applications, Environmental Research, 2023, 236, 116732. 
[14] Sijie Dong, Di Wei, Yuchao Cai, Bo Wang, Teng Cheng*, Yumeng Zhang*, Experimental and Numerical Study on the Performance and Mechanism of a Vortex-broken Electrocyclone, Chemical Engineering Journal, 2023, 140758. 
[15] ShijunYan, Chang Liu, Li-an Hou, BoWang, Yumeng Zhang*, A new filterless indoor air purifier for particulate matter and bioaerosol based on heterogeneous condensation, Environmental Research, 2023, 218, 115034. 
[16] Jingyi Tan, Qingdan Luo, Yuchao Cai, Yumeng Zhang*, Teng Cheng, Bo Wang*, Study on the promotion of particle heterogeneous condensation by different charging approaches, Powder Technology, 2023, 118144. 
[17] Sijie Dong, Yuxin Zhang, Zihui Zhang, Kejun Dong, Yi Wei, Yumeng Zhang*, Bo Wang*, Numerical study of mean mechanical energy loss in a gas cyclone, Powder Technology, 2022, 406: 117584. 
[18] Yumeng Zhang, Xianying Chen, Di Wei, Kejun Dong, Bo Wang*, Investigation on fine particle agglomeration and separation promoted by different bluff bodies, Journal of Cleaner Production, 2022, 374: 134039. 
[19] Yumeng Zhang, Guoyin Yu, Ruizhi Jin, Yang Zhang, Kejun Dong, Teng Cheng, Bo Wang*, Water vapor distribution and particle condensation growth in turbulent pipe flow, Powder Technology, 2022, 403: 117401. 
[20] Yumeng Zhang, Ruizhi Jin, Sijie Dong, Yanlei Wang, Kejun Dong, Yi Wei, Bo Wang*, Heterogeneous condensation combined with inner vortex broken cyclone to achieve high collection efficiency of fine particles and low energy consumption. Powder Technology, 2021, 382: 420-430. 
[21] Yumeng Zhang, Yunchao Jiang, Rubin Xin, Guoyin Yu, Ruizhi Jin, Kejun Dong, Bo Wang*, Effect of particle hydrophilicity on the separation performance of a novel cyclone, Separation and Purification Technology, 2020, 237: 116315. 
[22] Yumeng Zhang, Guoyin Yu, Ruizhi Jin, Xianying Chen, Kejun Dong, Yunchao Jiang, Bo Wang*, Investigation into water vapor and flue gas temperatures on the separation capability of a novel cyclone separator, Powder Technology, 2020, 361: 171-178.

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