个人资料
焦伟轩

   


焦伟轩,男,江苏新沂人,工学博士,讲师,硕士生导师。

教育及工作经历:

(1) 2011-09 至 2015-06, 扬州大学, 水利水电工程, 学士

(2) 2015-09 至 2021-09, 扬州大学, 水利工程, 博士

(3) 2021-11 至 今, 扬州大学, 水利科学与工程学院, 讲师

承担课程:

本科《材料力学》、《专业英语》

研究方向:

[1]高性能喷水推进泵装置水力稳定性

[2]轴流及混流泵装置水力优化设计

[3]泵站现场检测技术应用

近五年主持或参加的项目/课题:

(1) 扬州大学高层次人才科研启动基金,137012563,2021 ~ 至今,在研,主持

(2) 国家自然科学基金委员会, 面上项目, 52279091, 2023 ~ 2026, 在研, 参与

代表性研究成果和学术奖励情况

一、代表性论文

[1]Jiao W, Chen H J, Cheng L, et al. Experimental study on flow evolution and pressure fluctuation characteristics of the underwater suction vortex of water jet propulsion pump unit in shallow water[J]. Ocean Engineering, 2022, 266: 112569. (SCI期刊,Top期刊)

[2]Jiao W, Zhao H, Cheng L, et al. Nonlinear dynamic characteristics of suction-vortex-induced pressure fluctuations based on chaos theory for a water jet pump unit[J]. Ocean Engineering,2023, 268,113429. (SCI期刊,Top期刊)

[3]Jiao W, Li Z, Cheng L, et al. Study on the Hydraulic and Energy Loss Characteristics of the Agricultural Pumping Station Caused by Hydraulic Structures[J]. Agriculture 2022, 12, 1770. (SCI期刊)

[4]Jiao W, Zhang D, Wang C*, et al. Unsteady numerical calculation of oblique submerged jet [J]. Energies, 2020, 13(18): 4728. (SCI期刊)

[5]Jiao W, Cheng L*, Zhang D, et al. Investigation of key parameters for the hydraulic optimization of the inlet duct based on a whole waterjet propulsion pump system. Transactions of Famena[J], 2021, 45(1): 1-18. (SCI期刊)

[6]Jiao W, Cheng L*, Zhang D, et al. Optimal Design of Inlet Passage for Waterjet Propulsion System Based on Flow and Geometric Parameters [J]. Advances in Materials Science and Engineering, 2019, 2019(10):1-21. (SCI期刊)

[7]Jiao W, Cheng L*, Xu J, et al. Numerical Analysis of Two-Phase Flow in the Cavitation Process of a Waterjet Propulsion Pump System [J]. Processes,2019, 7(10): 690. (SCI期刊)

[8]Jiao W, Cheng L*, Luo C, et al. Study on flow and pressure fluctuation characteristics of two-way pumping system with super low head and large flow rate [J]. IOP Conference Series Earth and Environmental Science, 2019, 240(3):032011. (EI期刊)

[9]焦伟轩,成立*,颜红勤,蒋红樱.超低扬程双向流道泵装置压力脉动特性研究[J].水力发电学报,2019,38(06):101-112. (CSCD核心期刊)

[10]Jiao W, Cheng L*, Zhang B, et al. Study on hydraulic performance of open sump structure of pumping station, 14th Asian International Conference on Fluid Machinery, Zhenjiang, China, 2017. (第14届亚洲流体机械会议优秀论文)

[11]Wang C#, He X, Cheng L, Luo C, Xu J, Chen K and Jiao W*. Numerical simulation on hydraulic characteristics of nozzle in waterjet propulsion system [J]. Processes, 2019, 7, 915. (SCI期刊,通讯作者)

[12]Liu X, Xu F, Cheng L, Pan W, Jiao, W*. Stress Characteristics Analysis of Vertical Bi-Directional Flow Channel Axial Pump Blades Based on Fluid–Structure Coupling[J]. Machines 2022, 10, 368. (SCI期刊,通讯作者)

[13]Cheng K, Li S, Cheng L, Sun T, Zhang B, Jiao, W*. Experiment on Influence of Blade Angle on Hydraulic Characteristics of the Shaft Tubular Pumping Device[J]. Processes 2022, 10, 590. (SCI期刊,通讯作者)

[14]Zhang D, Jiao W, Cheng L*, et al. Experimental study on the evolution process of the roof-attached vortex of the closed sump[J]. Renewable Energy, 2021, 164:1029-1038. (SCI期刊,Top期刊)

二、论著之外的代表性研究成果和学术奖励:

[1]焦伟轩,成立,夏臣智,等.一种基于水动力噪声混沌特性分析的喷水推进进水口吸入涡识别方法, 2022-07-13, 中国, CN202210820545.1 (发明专利申请)

[2]焦伟轩,陈虹君,成立,等.一种基于VOF模型结合LBM-LES大涡模拟的喷水推进舰船喷口尾迹数值模拟方法, 2022-07-29, 中国, CN202210904821.2 (发明专利申请)

[3]焦伟轩,贾轩闻,成立,等.一种具有反向冲淤和防涡功能的喷水推进装置进水流道, 2022-08-05, 中国, CN202210937208.0 (发明专利申请)

[4]焦伟轩,成立,卢光田,等.一种立式轴流泵站进水池漩涡检测及定位方法, 2022-07-25, 中国, CN 202210874697.X (发明专利申请)

[5]焦伟轩,陈虹君,成立,等. 一种立式轴流泵站肘形进水流道冲淤装置, 2022-08-16, 中国, CN 202210980145.7(发明专利申请)

[6]成立, 焦伟轩,夏臣智,等. 一种泵站水泵梁防涡装置及方法, 2017-10-27, 中国, ZL201610060303.1  (发明专利授权)

[7]成立,焦伟轩,夏臣智,等. 一种泵站检修平台整流防涡装置及方法, 2017-10-10, 中国, ZL201610059109.1  (发明专利授权)

[8]成立,焦伟轩,夏臣智,等. 一种新型装配式泵站检修平台消涡装置及方法, 2018-1-19, 中国, ZL201610059107.2  (发明专利授权)

[9]成立,焦伟轩,车晓红,等. 一种基于计算流体力学瞬时计算的泵站机组压力脉动预测方法, 2019-11-22, 中国, ZL201811283877.0  (发明专利授权)

[10]成立,焦伟轩,周艳霞,等. 一种内置有异型薄板式消除回流装置的箱式双向流道, 2021-5-18, 中国, ZL201811283866.2  (发明专利授权)

[11]教育部高等学校科学研究优秀成果奖(科学技术),高性能喷水推进泵装置关键技术及应用,二等奖,排名8/12.


联系方式:

地址:江苏省扬州市江阳中路131号扬州大学工程馆415

手机:18252712886

E-mail: jiaowx@yzu.edu.cn

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