教育经历
  • 2005-9 — 2010-12
    山东大学
    机械设计及制造及自动化
    工学博士学位
  • 2001-9 — 2005-6
    重庆大学
    机械设计及制造及自动化
    工学学士学位
  • 1998-9 — 2001-6
    广西玉林高中
工作经历
  • 2011-05 — 至今
     山东大学机械工程学院 
  • 2013-08 — 2014-02
     新疆昌吉学院(山东大学派出援疆支教) 
研究方向
论文成果

(1) 韩家桢.Fluid-solid-thermal coupling analysis of an underwater valve.2021

(2) 纪合溪.Numerical Study on the Internal Flow Field Characteristics of a Novel High-Speed Switching Control Valve.ACTUATORS.2024 (6)

(3) 韩家桢.Structure optimization of a piezomagnetic resistance sensor based on orthogonal experiment.2020

(4) 韩家桢.Structural and modal analysis of cross core piezomagnetic resistance sensor.2020

(5) 韩家桢.深海带电插拔连接器力学特性分析.山东大学学报(工学版.2020 (6)

(6) 韩家桢.Dynamic Simulation of a Warship Control Valve Based on a Mechanical-Electric-Fluid Cosimulation Model.SCIENCE AND TECHNOLOGY OF NUCLEAR INSTALLATIONS.2021 (2021)

(7) 韩家桢.Investigation on Unstable Fluid Load Compensation of a Diverged Flow Poppet Valve.Energy Reports.2022 (2024)

(8) 韩家桢.Research on dynamicflow rate self-sensing in control valves.Progress in Nuclear Energy.2024 (2024)

(9) 鞠金勇.Performance improvement of the self-power control valve based on digital twin technology.Energy.2024,300

(10) 包木鹏.Research on hydrodynamic characteristics and performance improvement of ball valve integrating fluid regulation and energy harvesting.Renewable Energy.2023 (218)

(11) 张光超.Performance study of a control valve with energy harvesting based on a modified passive model.Energy.2023,285

(12) 张玉兵.Effects of unsteady stream on hydrodynamic behavior of flexible hydrofoil in semi-passive mode.Renewable Energy.2023,206 :451

(13) 包木鹏.Performance improvement of a control valve with energy harvesting.Energy .2023,263

(14) 包木鹏.Performance improvement of a control valve with energy harvesting.Energy .2023,263 (263)

(15) 张玉兵.Effects of unsteady stream on hydrodynamic behavior of flexible hydrofoil in semi-passive mode.renewable energy.2023,206 (206)

(16) 韩家桢.Investigation on unstable fluid load compensation of a diverged flow poppet valve.Energy Reports.2022,8 (8):12237

(17) 张新标.Design of control valve with low energy consumption based on Isight platform.energy.2022,239

(18) 张玉兵.Effects of flexibility on energy extraction performance of an oscillating hydrofoil under a semi-activated mode.energy.2022,242

(19) 张玉兵.EFFECTS OF TWO TYPES OF CONTROLLABLE DEFORMATION ON ENERGY EXTRACTION OF A FLEXIBLE HYDROFOIL.Brodogradnja.2022,73 (1):109

(20) 张玉兵.Effects of hydrofoil motion parameters and swing arm parameters on power extraction of a flexible hydrofoil in swing arm mode.Ocean Engineering.2022,245

(21) 孙光.Research on the effect of a movable gurney flap on energy extraction of oscillating hydrofoil.Energy .2021,2021 (225)

(22) 孙光.Hydrodynamic and energy extraction properties of oscillating hydrofoils with a trailing edge flap.APPLIED OCEAN RESEARCH.2021 (110)

(23) 韩家桢.Dynamic Simulation of a Warship Control Valve Based on a Mechanical-Electric-Fluid Cosimulation Model.SCIENCE AND TECHNOLOGY OF NUCLEAR INSTALLATIONS.2021,2021

(24) 马鹏磊.Behaviors of two semi-passive oscillating hydrofoils with a tandem configuration.energy.2021,214

(25) 谢玉东.A New Method for Ship Control Valve Overload Protection in Complex Marine Environments.Journal of Coastal Research.2020 :228

(26) 吕凯.Performance investigations of a control valve with the function of energy harvesting.energy.2021,214

(27) 刘延俊.烧结机布料闸门开度控制的电液比例系统.《机械与电子》.2010,11 (218):61

(28) 刘延俊.液压系统故障诊断技术的现状及发展趋势.《液压与气动》.2006,2 (2):80

(29) 吕凯.Development of Savonius Rotors Integrated into Control Valves for Energy Harvesting.SUSTAINABILITY.2020,12 (20)

(30) 谢玉东.A New Method for Ship Control Valve Overload Protection in Complex Marine Environments.Journal of Coastal Research.2020,2020 (2020)

(31) 张健.Influence of installation deviation on dynamic performance of synchronous magnetic coupling.2017

(32) 张健.A new type flexible transmission mechanism used in ocean energy converters.2017

(33) 吕凯.Performance investigations of a control valve with the function of energy harvesting.Energy .2021,214 (1):1

(34) 王龙晖.Learning word hierarchical representations with neural networks for document modeling.Journal of Experimental & Theoretical Artificial Intelligence.2019,2019 (2019):1

(35) 谢玉东.控制阀的流量自感知及其在外泄漏自感知中应用.工程科学与技术.2017,49 (4):203

(36) 张健.波浪能设备中磁性驱动器偏差对性能影响.太阳能学报.2018 (05)

(37) 谢玉东.振荡翼在非均匀流中的能量提取性能分析.太阳能学报.2018,39 (4):886

(38) 谢玉东.Unsteady analyses of a control valve due to fluid-structure coupling.Mathematical Problems in Engineering.2013,2013 :1

(39) 谢玉东.水翼振荡运动捕获潮流能的机理研究.浙江大学学报(工学版).2018,52 (1):65

(40) 谢玉东.大型调节阀死区的颤振补偿研究.《振动与冲击》.2010,29 (1):166

(41) 马鹏磊.Numerical analysis of a tidal current generator with dual flapping wings.Energy.2018,155 :1077

(42) 谢玉东.Analysis of Unstable Hydrofoil Energy-Capturing Motion Due to Energy Dissipation.Polish Journal of Environmental Studies.2018,27 (5):2315

(43) 马鹏磊.Effects of time-varying freestream velocity on energy harvesting using an oscillating foil.Ocean Engineering.2018,153 :353

(44) 谢玉东.New pressure control method of mixed gas in a combined cycle power plant of a steel mill.ENTERPRISE INFORMATION SYSTEMS.2017, 11 (7):1094

(45) 谢玉东.基于电液调节阀的大流量混合煤气压力控制研究.《武汉理工大学学报》(交通科学与工程版).2009,33 (3):519

(46) 谢玉东.RESEARCH OF A CONTROL VALVE CHARACTERISTICS TEST.Journal of Theoretical and Applied Information Technology.2013,51 (1):80

(47) 谢玉东.Research on a Control Valve Controllability of a gas pressure regulation system.Applied mechanics and materials.2014,685 (685(2014)):294

(48) 谢玉东.Effect of internal leakage on an electro-hydraulic servo-driven control valve performance.Applied mechanics and materials.2011,99-100 (2011):901

(49) 谢玉东.基于物理模型的电液调节阀动态设计与研究.《机床与液压》.2009,37 (1):66

(50) 谢玉东.Effect of internal leakage on an electro-hydraulic servo-driven control valve performance.Trans Tech Publications, P.O. Box 1254, Clausthal-Zellerfeld, D-38670, Germany.2011,99-100 :901

(51) 谢玉东.调节阀执行机构研究.《液压与气动》.2008 (9):72

(52) 谢玉东.Fuzzy PID Control for Valve-controlled Cylinder Hydraulic System.Applied mechanics and materials.2012,212-213 (2012):1244

(53) 谢玉东.Dead Band Control Method of an Electro-hydraulic Servo-driven Control Valve in Combined Cycle Power Plant.Advanced Science Letters.2012,8 (2012):406

(54) 谢玉东.Unsteady analyses of a control valve due to fluid-structure coupling.Mathematical Problems in Engineering.2013,2013 (2013):1

(55) 谢玉东.调节阀技术研究综述.《化工自动化及仪表》.2012,39 (9):1111

(56) 谢玉东.Prediction Model of Control Valve Characteristics.Advanced Materials research.2012,605-607 :1345

(57) 谢玉东.基于颤振效应的气动比例阀摩擦力补偿研究.《振动与冲击》.2008,27 (2):107

(58) 谢玉东.Dynamic Design of Electro-hydraulic Control Valve based on Physical Simulation Model.IEEE Computer Society.2009,1 (1):388

(59) 谢玉东.Active Control of the Pressure Pulsation in Large-flow Mixed Gas Pipe.IEEE Computer Society.2009,1 (1):1639

(60) 谢玉东.气动比例阀摩擦力补偿机制及实验研究.润滑与密封.2007,32 (9):94

(61) 谢玉东.基于压力流量复合控制的电液调节阀研究.《液压与气动》.2008,1 (8):30

(62) 谢玉东.Design of cascade-smith hybrid control structure for pressure control.Key Engineering Materials.2010,419-420 :797

(63) 马鹏磊.Effect of wake interaction on the response of two tandem oscillating hydrofoils.ENERGY SCIENCE & ENGINEERING.2019,7 (2):431

(64) 马鹏磊.Effect of wake interaction on the response of two tandem oscillating hydrofoils.ENERGY SCIENCE & ENGINEERING.2019,7 (2):431

(65) 张健.波浪能设备中磁性驱动器偏差对性能影响.太阳能学报.2018 (05)

(66) 马鹏磊.Numerical analysis of a tidal current generator with dual flapping wings.Energy.2018,155 :1077

(67) 马鹏磊.Effects of time-varying freestream velocity on energy harvesting using an oscillating foil.Ocean Engineering.2018,153 :353

(68) 谢玉东.气动比例阀摩擦力补偿机制及实验研究.润滑与密封.2007,32 (9):94

(69) 谢玉东.调节阀执行机构研究.《液压与气动》.2008 (9):72

(70) 谢玉东.基于压力流量复合控制的电液调节阀研究.《液压与气动》.2008,1 (8):30

(71) 谢玉东.基于物理模型的电液调节阀动态设计与研究.《机床与液压》.2009,37 (1):66

(72) 谢玉东.基于电液调节阀的大流量混合煤气压力控制研究.《武汉理工大学学报》(交通科学与工程版).2009,33 (3):519

(73) 谢玉东.基于颤振效应的气动比例阀摩擦力补偿研究.《振动与冲击》.2008,27 (2):107

(74) 谢玉东.大型调节阀死区的颤振补偿研究.《振动与冲击》.2010,29 (1):166

(75) 谢玉东.Effect of internal leakage on an electro-hydraulic servo-driven control valve performance.Trans Tech Publications, P.O. Box 1254, Clausthal-Zellerfeld, D-38670, Germany.2011,99-100 :901

(76) 谢玉东.Dynamic Design of Electro-hydraulic Control Valve based on Physical Simulation Model.IEEE Computer Society.2009,1 (1):388

(77) 谢玉东.Active Control of the Pressure Pulsation in Large-flow Mixed Gas Pipe.IEEE Computer Society.2009,1 (1):1639

(78) 谢玉东.Design of cascade-smith hybrid control structure for pressure control.Key Engineering Materials.2010,419-420 :797

(79) 谢玉东.Effect of internal leakage on an electro-hydraulic servo-driven control valve performance.Applied mechanics and materials.2011,99-100 (2011):901

(80) 谢玉东.Research on a Control Valve Controllability of a gas pressure regulation system.Applied mechanics and materials.2014,685 (685(2014)):294

(81) 谢玉东.Unsteady analyses of a control valve due to fluid-structure coupling.Mathematical Problems in Engineering.2013,2013 (2013):1

(82) 谢玉东.RESEARCH OF A CONTROL VALVE CHARACTERISTICS TEST.Journal of Theoretical and Applied Information Technology.2013,51 (1):80

(83) 谢玉东.调节阀技术研究综述.《化工自动化及仪表》.2012,39 (9):1111

(84) 谢玉东.Prediction Model of Control Valve Characteristics.Advanced Materials research.2012,605-607 :1345

(85) 谢玉东.Fuzzy PID Control for Valve-controlled Cylinder Hydraulic System.Applied mechanics and materials.2012,212-213 (2012):1244

(86) 谢玉东.Dead Band Control Method of an Electro-hydraulic Servo-driven Control Valve in Combined Cycle Power Plant.Advanced Science Letters.2012,8 (2012):406

(87) 谢玉东.New pressure control method of mixed gas in a combined cycle power plant of a steel mill.ENTERPRISE INFORMATION SYSTEMS.2017, 11 (7):1094

(88) 谢玉东.Analysis of Unstable Hydrofoil Energy-Capturing Motion Due to Energy Dissipation.Polish Journal of Environmental Studies.2018,27 (5):2315

(89) 谢玉东.振荡翼在非均匀流中的能量提取性能分析.太阳能学报.2018,39 (4):886

(90) 谢玉东.水翼振荡运动捕获潮流能的机理研究.浙江大学学报(工学版).2018,52 (1):65

(91) 谢玉东.控制阀的流量自感知及其在外泄漏自感知中应用.工程科学与技术.2017,49 (4):203

专利

1. 一种坛紫菜自动烘干装置及使用方法

2. 一种紫菜烘干循环装置

3. 一种链板式清理装置及零件清理设备

4. 一种可发电的控制阀及使用方法

5. 一种紫菜卷菜装置、自动卷卷装置及紫菜卷加工设备

6. 一种拉幅定型机补针装置及使用方法

7. 一种液体流量控制阀

8. 一种紫菜烘干循环装置

9. 一种袋装物料搬运输送装置

10. 一种海藻加工用预剥菜装置及设备

11. 一种落重式液压破碎锤及设备

12. 一种能够缓解流体振荡冲击的控制阀

13. 一种低能耗高频响的控制阀及控制方法

14. 一种能够自供电的控制阀系统及方法

15. 一种具有自我供电功能的水下控制阀

16. 一种销式压磁传感器及包括该传感器的控制系统

17. 一种水下控制阀

18. 一种球形三维测力压磁式传感器及其三维力测量方法

19. 一种封闭式全自由度波浪能发电装置及其工作方法

20. 一种球形三维测力压磁式传感器

21. 一种压磁元件及包括该压磁元件的传感器

22. 一种风能、波浪能和潮流能复合式发电装置

23. 一种机器人行星减速器

24. 一种坛紫菜自动烘干装置及使用方法

25. 一种可发电的控制阀及使用方法

26. 一种叶轮及一种可发电的控制阀

27. 一种垂直轴海洋能液态金属磁流体发电装置及方法

28. 液态金属磁流体直接电解水制氢模块

29. 一种漂浮式全液压海浪发电装置

30. 振荡式潮流发电装置

31. 一种漂浮式全液压海浪发电装置

32. 一种潮流能发电装置

33. 鳐鱼式液态金属磁流体发电装置及发电方法

34. 鳐鱼式液态金属磁流体发电装置及发电方法

35. 一种漂浮式全液压海浪发电装置

36. 升降式振荡水翼捕获潮流能发电装置

37. 振荡式潮流发电装置

38. 一种控制阀柔性连接套件

39. 一种控制阀柔性连接套件

40. 集成式电液驱动调节阀

41. 集成式电液驱动调节阀及控制方法

42. 升降式振荡水翼捕获潮流能发电装置

科研项目

1. 控制阀特性模拟, 2024/07/01-2029/12/30

2. 泥浆泵的流场分析, 2024/01/20-2027/12/30

3. 农用斜盘马达的流场模拟, 2024/01/15-2027/12/31

4. 基于数字孪生的高精度高频响智能电液伺服系统研发, 2022/11/01-2024/11/30

5. 基于数字孪生的高精度高频响智能电液伺服系统研发, 2022/11/01-2024/11/30

6. 集成液压缸流动特性模拟, 2023/07/03-2026/12/30

7. 基于流体功率分流的水下控制阀电能自供机理与冗余驱动补偿研究, 2022/09/07-2026/12/31

8. 阀门的流场仿真, 2021/12/06-2022/12/31

9. 超声清洗油缸开发, 2021/04/25-2025/12/30

10. 低压降液压缸研发, 2020/12/03-2022/12/30

11. 漂浮式破浪能独立电力系统项目, 2012/05/22-2012/05/31

12. 新型舰船负载自补偿调节阀的研发, 2019/07/08-2021/12/31

13. 兆瓦级风电增速箱复杂多变冲击载荷抑制与载荷分流机理的研究, 2012/01/01-2015/12/31

14. 流体诱导双水翼耦合振荡捕获潮流能发电的机理与关键技术研究, 2014/08/15-2018/12/31

15. 液压海浪发电关键技术及装置研制, 2013/01/01-2015/12/31

16. 大流量高频响核电控制阀的多场耦合振动与泄漏自感知机理研究, 2012/01/01-2015/12/31

17. 120kw漂浮式液压海浪发电站中试, 2010/01/01-2012/12/31

18. 新型双组份打胶机的开发研制, 2006/12/10-2009/12/30

19. 舰船调节阀附加耦合负载补偿与高频动态流量自感知机理研究, 2017/08/17-2021/12/31

20. GF***水下航行器关键技术研究, 2016/01/01-2018/12/01

21. 电液提升器与悬浮式转向驱动桥关键技术研究与开发, 2016/07/01-2020/12/31

22. 智能电液联动执行机构技术研发及共建电液驱动与控制研究实验室, 2016/01/01-2018/12/31

23. 控制阀电液驱动器,集成式电液驱动调节阀及控制方法(专利许可), 2015/11/18-2020/11/17

24. 高温高压大流量核电/火电控制阀的耦合振动与泄漏自感知机理研究, 2013/08/15-2016/12/31

25. 漂浮式破浪能独立电力系统项目, 2012/05/22-2012/05/31

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