首页标题    张玉东
张玉东

一、基本信息

张玉东,男,中共党员,河南项城人,工学博士,郑州大学副教授,硕士研究生导师。目前主持国家自然科学基金1项,中国博士后面上项目1项以及科工局项目1项,参与国家自然科学基金项目和国防军工项目多项,发表SCI论文30余篇,出版学术专著1部,参编英文专著1部,申请专利多项。目前主要从事微纳米尺度流动和导热的实验研究,非平衡流与多相流的介观建模与模拟,微机电系统开发,联系方式:ydzhang@zzu.edu.cn

二、教育背景

2016/09-2019/6,南京理工大学,力学专业,博士

2016/09-2019/6,中国工程物理研究院(联合培养),流体力学专业,博士

2013/09-2016.01,北京航空航天大学,航天工程专业,硕士

2009/09-2013/06, 郑州大学,测控技术与仪器专业,本科

三、工作经历

2024.01-至今,郑州大学,力学与安全工程学院,副教授

2019.07-2023.12,郑州大学,力学与安工工程学院,讲师/直聘副教授

四、主讲课程

理论力学,材料力学实验,流体力学,工程热力学,文献检索与科技论文写作,力学科技前沿,微纳机电制作与测量

五、主要研究方向

(1)微纳米尺度非平衡流与多相流

(2)纳米结构导热新特性及热电器件开发

(3)微机电系统制作与性能优化

(4)介观尺度建模与模拟

六、获得荣誉奖励

(1)郑州大学“三育人”先进个人,2023

(2)郑州大学2022-2023年度优秀班主任,2023

(3)中国物理学会秋季会议“Best Poster Presentations”,2023

(4)郑州大学2022届普通本科生优秀毕业论文指导教师,2022

(5)中国物理学会秋季会议优秀墙报奖,2019

(6)南京理工大学优秀博士论文,2019

(7)中国工程物理研究院优秀毕业生,2019

(8)第 15 届全国物理力学学术会议优秀青年报告奖,2018

(9)第四届全国统计物理会议优秀张贴报告奖,2017

七、已完成或正在承担主要课题

[1] 国家自然科学基金青年项目:锥形微纳米通道内热蠕动流的二极管特性及其机理研究(项目号:12102397),2022.01-2024.12,主持,在研

[2]科工局稳定支持项目:非平衡复杂流动的动理学建模与机理研究,(项目号:6142A05QN23001),2023.9-2025.8,主持,在研

[3] 中国博士后科学基金面上项目:微纳尺度流动和传热的动理学建模与模拟(批准号:2019M662521),2019.11–2022.10,主持,已结题

[4] 国家自然科学基金面上项目:铁磁微纳结构中磁畴壁形态对热传导特性的影响研究(项目号:52171193),2022.12025.12,主要参与,在研

[5] 国家自然科学基金面上项目:微纳、悬浮、多相流动过程的跨尺度建模与模拟(项目号:11772064),2018.1-2021.12,主要参与,已结题

[6] 中国工程物理研究院创新发展基金创新项目:流体不稳定性与界面物质混合的动理学研究(项目号:CX2019033),2019.1-2021.12主要参与,已结题

[7] 爆炸科学与技术国家重点实验室(北京理工大学)开放基金面上项目:冲击与爆轰相关的复杂流动非平衡行为研究(批准号: KFJJ19-01M),2019.1-2020.12,主要参与,已结题

八、已发表的学术论文

  1. Yudong Zhang, Xiao Wu, Bangbang Nie, Aiguo Xu, Feng Chen, Ronghan Wei. Lagrangian steady-state discrete Boltzmann model for nonequilibrium flows at micro–nanoscale. Physics of Fluids, 2023, 35: 092008.
  2. Yudong Zhang, Xiarong Du, Xin Jia, Kuangbing Wang, Xinyi Xiong, Xin Gao, Jingjiang Qiu, Zilin Li, Guochen Qi, Bangbang Nie, Wen Wang, Sufeng Fan, Ronghan Wei. Size and kink effects on thermal conductivity in nickel nanowires. Applied Physics Letter, 2023, 123:082201.
  3. Yudong Zhang, Shuaiwei Dou, Junxia Qi, Xianzhong Xu, Jingjiang Qiu, Zon-Han Wei. Experimental study on slip flow of nitrogen through microchannels at atmospheric pressure. Microfluidcs and Nanofluidcs, 2023, 27:7.
  4. Kejia Zhou, Junfu Li, Wangming Li, Yudong Zhang, Kuangbing Wang, Xinyi Xiong, Shijiao Li, Xiaoyang Chen, Hsien-wei Cheng, Jingjiang Qiu, and Ronghan Wei. Preparation and Magnetic Manipulation of Fe3O4/Acrylic Resin Core−Shell Microspheres. Langmuir, 2023, 39:11459-11467.
  5. Kuangbing Wang, Bangbang Nie, Ni Su, Benkun Lv, Huiqian Song, Guochen Qi, Yudong Zhang, Jingjiang Qiu and Ronghan Wei. Three dimensional high-performance microsupercapacitors with switchable high power density and high energy density. Nanoscale, 2023, 15:15956.
  6. Dejia Zhang, Aiguo Xu, Yanbiao Gan, Yudong Zhang, Jiahui Song, Yingjun Li. Viscous effects on morphological and thermodynamic non-equilibrium characterizations of shock–bubble interaction. Physics of Fluids, 2023, 35:106113.
  7. Dejia Zhang, Aiguo Xu, Yanbiao Gan, Yudong Zhang, Jiahui Song, Yingjun Li. Specific-heat ratio effects on the interaction between shock wave and heavy-cylindrical bubble: Based on discrete Boltzmann method. Computers and Fluids, 2023, 265:10602.
  8. Bangbang Nie, Huiqian Song, Benkun Lv, Xinyi Xiong, Guochen Qi, Yudong Zhang, Jingjiang Qiu,  Xiangming Li, Jinyou Shaoc and Zonhan Wei. Micro–nano dual-scale embedded graphene/Ag architectures for flexible low-voltage-driven transparent electrothermal films. J. Mater. Chem. C, 2023, 11, 6145.
  9. Yudong Zhang, Aiguo Xu, Feng Chen, Chuandong Lin, and Zon-Han Wei. Non-equilibrium characteristics of mass and heat transfers in the slip flow. AIP Advances 2022, 12, 035347.
  10. 祁俊霞, 张玉东*, 徐献忠, 邱京江, 卫荣汉. 一种电磁力驱动的无阀微泵气体泵送特性. 微纳电子技术, 2022, 59(11): 1177-1183.
  11. 李旺明, 邱京江, 张玉东, 李静, 徐献忠, 卫荣汉. 基于微流控技术的磁性微液滴制备方法. 微纳电子技术, 2022, 59(07): 710-717.
  12. Dongyang Zhao, Bangbang Nie, Guochen Qi, Shijiao Li, Qichen Zhu,  Jingjiang Qiu, Yenya Hsu, Yudong Zhang, Wen Wang, Qidong Zhang and Zonhan Wei. A flexible metal nano-mesh strain sensor with the characteristic of spontaneous functional recovery after fracture damage. Nanoscale, 2022, 14:12409.
  13. Feng Chen, Aiguo Xu, Yudong Zhang, Yanbiao Gan, Bingbing Liu, Shuang Wang. Effects of the initial perturbations on the Rayleigh–Taylor–Kelvin–Helmholtz instability system. Frontiers of Physics, 2022, 17(3): 33505.
  14. Jie Chen, Aiguo Xu, Dawei Chen, Yudong Zhang, and Zhihua Chen. Discrete Boltzmann modeling of Rayleigh-Taylor instability: Effects of interfacial tension, viscosity, and heat conductivity. Physical Review E, 2022, 106:015012.
  15. Dejia Zhang, Aiguo Xu, Yudong Zhang, Yanbiao Gan, and Yingjun Li. Discrete Boltzmann modeling of high-speed compressible flows with various depths of non-equilibrium. Physics of Fluids, 2022, 34: 086104.
  16. Guanglan Sun, Yanbiao Gan, Aiguo Xu, Yudong Zhang, and Qingfan Shi. Thermodynamic nonequilibrium effects in bubble coalescence: A discrete Boltzmann study. Physical Review E, 2022, 106: 035101.
  17. Yudong Zhang, Aiguo Xu, Jingjiang Qiu, Hongtao Wei, Zung-Hang Wei, Kinetic modeling of multiphase flow based on simplified Enskog equation. Frontiers of Physics, 2020, 15(6): 62503.
  18. Feng Chen, Aiguo Xu, Yudong Zhang, and Qingkai Zeng. Morphological and non-equilibrium analysis of coupled Rayleigh–Taylor–Kelvin–Helmholtz instability. Phys. Fluids 2020, 32: 104111.
  19. Dejia Zhang, Aiguo Xu, Yudong Zhang, and Yingjun Li. Two-fluid discrete Boltzmann model for compressible flows: Based on ellipsoidal statistical Bhatnagar–Gross–Krook. Phys. Fluids, 2020, 32: 126110.
  20. Chuandong Lin, Xianli Su, and Yudong Zhang. Hydrodynamic and Thermodynamic Nonequilibrium Effects Around Shock Waves: Based on a Discrete Boltzmann Method. Entropy 2020, 22: 1397.
  21. Yudong Zhang, Aiguo Xu, Guangcai Zhang, Zhihua Chen, Pei Wang. Discrete Boltzmann method for nonequilibrium flows: based on Shakhov model. Computer Physics Communications, 2019, 238: 50-65.
  22. Yudong Zhang, Aiguo Xu, Guangcai Zhang, Yanbiao Gan, Zhihua Chen, Sauro Succi. Entropy production in thermal phase separation: a kinetic theory approach. Soft Matter, 2019, 15: 2245.
  23. Ge Zhang, Yudong Zhang, Aiguo Xu, Yingjun Li. Microflow effects on the hydraulic aperture of single rough fractures. Advances in Geo-Energy Research, 2019, 3(1):104-114.
  24. Yudong Zhang, Aiguo Xu, Guangcai Zhang, and Zhihua Chen. Comparative study on several criteria for non-equilibrium phase separation. AIP Conference Proceedings, 2019, 2132: 180004.
  25. Yudong Zhang, Aiguo Xu, Guangcai Zhang, Zhihua Chen, Pei Wang. Discrete ellipsoidal statistical BGK model and Burnett equations. Frontiers of Physics, 2018, 13(3):135101.
  26. Yudong Zhang, Aiguo Xu, Guangcai Zhang, Zhihua Chen. Discrete Boltzmann Method with Maxwell-Type Boundary Condition for Slip Flow. Commun. Theor. Phys., 2018, 69:77-85.
  27. Yudong Zhang, Aiguo Xu, Guangcai Zhang, Zhihua Chen. A one-dimensional discrete Boltzmann model for detonation and an abnormal detonation phenomenon. Commun. Theor. Phys., 2019, 71:117-126.
  28. Yudong Zhang, Aiguo Xu, Guangcai Zhang. Comparative study of discrete Boltzmann model and Navier-Stokes. Journal of Physics: Conference Series, 2018, 1113: 012015.
  29. Yudong Zhang, Aiguo Xu, Guangcai Zhang, Zhihua Chen. Comparative Study on Several Criteria for Non-equilibrium Phase Separation. Journal of Physics: Conf. Series, 2018, 1113: 012015.
  30. Aiguo Xu, Guangcai Zhang, Yudong Zhang, Pei Wang and Yangjun Ying. Discrete Boltzmann model for implosion- and explosion related compressible flow with spherical symmetry. Frontiers of Physics, 2018, 13(5), 135102.
  31. Yanbiao Gan, Aiguo Xu, Guangcai Zhang, Yudong Zhang, Sauro Succi. Discrete Boltzmann trans-scale modeling of high-speed compressible flows. Phys. Rev. E, 2018, 97, 053312.
  32. Yudong Zhang, Aiguo Xu, Guangcai Zhang, Chuandong Lin, Chengmin Zhu. Kinetic modeling of detonation and effects of negative temperature coefficient. Combustion & Flame, 2016, 173:483-492.
  33. 张玉东, 许爱国, 张广财 祝成民. 一个高效的离散Boltzmann爆轰模型. 计算物理. 2016, 33 (5): 505-515.

九、出版专著

[1]许爱国,张玉东;复杂介质动理学,北京:科学出版社,2022

[2] Aiguo Xu, Guangcai Zhang and Yudong Zhang. Discrete Boltzmann Modeling of Compressible Flows, Chapter 2 in Kinetic Theory Croatia: InTech, 2018. (专著章节)

十、申请专利

[1]  张玉东,张鹏,骆乐乐,高高梓涵,段建丰,冯常胜,马薪雨,邱京江,卫荣汉. 机械臂. 中国,ZL 2023 2 1462335.6

[2] 张玉东, 张国立, 孙铭泽, 刘翔, 徐献忠, 卫洪涛, 邱京江, 卫荣汉. 采用锥形微通道的无阀微泵结构. 中国,ZL 2022 2 0458058.0

[3] 邱京江,张永祥,唐放,盖赟,闫豫川,王喆,张玉东,齐国臣,聂帮帮,卫荣汉. 一种基于微流控技术的洗衣凝珠制备装置. 中国, ZL 2023 2 1042850.9

[4] 邱京江,詹骏岚,张迪,张玉东,卫荣汉,王一涵,卫洪涛. 一种胰岛素注射微针贴片. 中国,ZL 2022 2 1365466.8

[5] 卫荣汉,许雁雅,刘俊杰,徐献忠,赵无垛,卫洪涛,邱京江,张玉东,陈银铃,胡志鑫,赵东阳,刘庆稳,戴君杰,李旺明. 一种通过磁性基板轨道来控制磁性微纳机器人运行的方法,中国,ZL 2020 1 0197964.5.

热烈欢迎有良好力学、机械、电子信息等专业背景的优秀同学加入我们研究团队!  

 

张玉东