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    徐伟

    个人简历

    出生年月:1987.09

    任职年月:2023.02

    职称:讲师

    导师:硕导

    所在学科:动力工程及工程热物理

    最高学位:工学博士

    学术任职:江苏省能源研究会会员

    政治面貌:中共党员

    联系方式:xuwei7918@ujs.edu.cn

    研究领域

    1.水动力空化机理及空泡溃灭特性;

    2.多相流与多尺度数值模拟;

    3.流体装备状态监测与故障诊断;

    4.有机废水绿色降解技术.

    科研项目

    1.中国博士后第78批科学基金面上项目(2025M780568)、主持、2026-2027

    2.中国博士后第75批科学基金面上项目(2024M752697)、主持、2024-2025

    3.旱区水工程生态环境全国重点实验室开放课题、主持、2025-2026

    4.教育部协同育人项目、主持、2024-2025

    5.泰州市科技支撑计划项目(产业关键技术研发)、校内主持、2023-2024;

    6.流体及动力机械教育部重点实验室开放课题、主持、2023-2024;

    7.一种对旋式水动力空化装置(优化设计)、企业委托项目、主持、2024-2026;

    8.一种离心式空化发生器(优化设计)、企业委托项目、主持、2025-2026

    9.高效低比转速液体泵优化设计、企业委托项目、主持、2025-2027

    10.核岛工艺系统空化状态的可视化实验、企业委托项目、主持、2026-2028.

    主要论文

    1.Xu W., Zhu R.S., Wang J., et al. Molecular dynamics simulations of the distance between the cavitation bubble and benzamide wall impacting collapse characteristics. Journal of Cleaner Production, 2022, 352: 131633.

    2.Xu W., Zhu R.S., Fu Q., et al. Analysis of the influence of factor parameters on bubble collapse in a heavy metal complex system. Journal of Molecular Liquids, 2022, 347: 118377.

    3.Xu W., Zhu R.S., et al. Effect of hydrodynamic cavitation combined with oxidants on the benzamide based on molecular dynamics simulation. Industrial & Engineering Chemistry Research, 2022, 61(17): 5984-5993.

    4.Xu W., Wang C., Zhang L., et al. Numerical study of continuous jet impinging on a rotating wall based on Wray-Agarwal turbulence model. Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2022, 44: 433.

    5.Xu W., Zhu R.S., Fu Q., et al. Analysis of the Force on the Benzamide by Bubble Collapse Based on Molecular Dynamics Simulation. Mechanika, 2022, 28(4).

    6.Xu W., Zhao Y.Y., Wang X.L., et al. Effect of shock-wave-mediated collapse on nanobubble characteristics. Langmuir, 2023, 40 (1): 426-438.

    7.Xu W., Jiang X.S., Zhao Y.Y., et al. Analysis of the influence of ions on degradation of benzamide with hydrodynamic cavitation technology. Journal of Molecular Liquids, 2024, 399: 124356.

    8.Xu W., Zhao Y.Y., Zhao G.H., et al. Experiments on the effect of wall distances for bubble collapse characteristics. Applied Ocean Research, 2024, 153: 104277.

    9.Xu W., Zhou Z.C., Zhao Y.Y., et al. Multifactorial analysis of the collapse process of double bubbles based on the coarse-grained force field in free domain, Langmuir, 2025, 41, 3706-3715.

    10.Wang X.L., Guo W.Z., Zhao G.H., Wang J., Zhao Y.Y*., Xu W*. Analysis of factors influencing micro-scale double-bubbles collapse based on molecular dynamic simulation. Computational Particle Mechanics, 2024, 11(6): 2777-2790.

    11.Wang X.L., Xia Q.C., Zhao Y.Y., Zhu R.S., Xu W*. Research on gas-liquid two-phase transient process of reactor coolant pump under stuck shaft accident. Annals of Nuclear Energy, 2024, 206:110649.

    12.Zhao Y.Y., Zhao F.J., Li G.H., Xu W*, Wang X.L*. Experimental and Numerical Evaluation of the Cavitation Performances of Self-excited Oscillating Jets. Fluid Dynamics & Materials Processing, 2024. DOI: 10.32604/fdmp.2024.047298.

    13.Wang X.L., Yang S.P., Zhi Y.F., Xu W*. Research on Impeller Cutting of Nuclear Pump Based on MCSA. Progress in Nuclear Energy, 2025, 178: 105522.

    14.Xia Q.C., Wang X.L., Zhao Y.Y., Zhu R.S., Wang Z.C., Yang S.P., Xu W*. Research on transient hydraulic characteristics of the whole process of nuclear main pump under shaft stuck accident. Nuclear Engineering and Technology, 2025, 57: 103218.

    15.Wang X.L., Zhao F.J., An M.D., Jiang X.F., Jiang S.J., Xu W*. Stator current-based soft sensing for blade damage diagnosis in centrifugal pumps using ensemble learning, Progress in Nuclear Energy, 2025, 178: 106038.

    16.Ding Z.L., Wang X.L., Zhang Y.C., Zhao Y.Y*, Xu W*. Research on the soft measurement of the flow by reactor coolant pumps based on the motor current signature analysis, Nuclear Engineering and Design, 2025, 432: 113797.

    17.Wang X.L., Mi Q.Q., Yang Z.H., Li Y.Z., Zhao Y.Y., Xu W*. Effect of Multiple Cavitation Bubble Configurations on the Collapse Behavior and the Wall Damage, Langmuir, 2026, 42(9), 6773-6784.

    18.Wang X.L., Zhang Y.K., Zhao Y.Y., Zhi Y.F., Gao Y.H., Xu W*. Fault Diagnosis of Nuclear Power Pump Impeller Blockage Based on Multi-Source Information Fusion. Progress in Nuclear Energy, 2026, 106399.

    19.Zhao G.H., Xu W., Zhao Y.Y., et al. Temperature-driven cavitation lead-bismuth eutectic coolants: Linking shock-wave-induced collapse dynamics to macroscopic damage. Physics of fluids, 2026, 38: 042006.

    20.Zhao G.H., Xu W., Wang J., et al. The effect of temperature on the pressure energy distribution in the process of near-wall single bubble collapse. Physics of fluids, 2024, 36: 032019.

    编著及参编主要教材专著

    1.新型环保设备与集成装备技术》. 江苏大学出版社, 2024,参编.

    科研成果鉴定

    1.2022年机械工业联合会成果鉴定, 国际先进水平, 排名第十二;

    2.2023年机械工业联合会成果鉴定, 国际先进水平,排名第一;

    3.2023年机械工业联合会成果鉴定, 整体国际先进水平-部分领先水平, 排名第二.

    获奖情况

    1.2024年中国商业联合会科技进步二等奖,第一完成人;

    2.2024年江苏省研究生“先进生态环保与安全技术”科研创新实践大赛优秀奖,指导教师;

    3.2025年第十二届中国研究生能源装备创新设计大赛三等奖,指导教师;

    4.2025年江苏大学能源与动力工程学院青年教师讲课比赛三等奖;

    5.2025年中国产学研合作促进会科技创新奖-创新成果奖三等奖,第一完成人.

    授权专利

    1.一种污水绿色处理装置. 发明专利: ZL201911159210.4, 授权时间: 2021-11-23.

    2.一种多组合水动力空化装置. 发明专利: ZL201911074002.4, 授权时间: 2022-03-22.

    3.一种对旋式水动力空化装置. 发明专利: ZL202010566349.7. 授权时间: 2022-06-21.

    4.一种搅拌式多级污水处理器. 发明专利: ZL202310577501.5, 授权时间: 2025-08-29.

    5.一种离心式空化发生器. 发明专利: ZL202310556856.6, 授权时间: 2025-09-02.

    6.一种脉冲射流泵用喷嘴. 发明专利: ZL202411184164.4, 授权时间: 2024-11-26.

    7.一种混流式离心泵及设计方法. 发明专利: ZL202511260983.7, 授权时间: 2025-12-26.

    8.一种高温熔液泵. 发明专利: ZL202010041286.3, 授权时间: 2020-12-02.

    9.一种组合式射流空化发生喷头. 发明专利: ZL202010540929.9, 授权时间: 2021-09-10.

    10.一种射流空化搅拌器. 发明专利: ZL201911157591.2, 授权时间: 2022-06-21.

    其他

    1.本课题组每年诚邀1-2名硕士研究生加入,欢迎动力工程及工程热物理、流体机械及工程、机械工程等相关专业的同学咨询报考!

    2.欢迎各类企业开展产学研合作!

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