张海成

教授

基本情况

张海成,教授,博士生导师。从事动力学与控制方面的教学与研究工作,主要研究方向包括海洋结构流固耦合动力学、海洋能开发与利用、海洋机器人智能控制等。担任《船舶力学》编委、《International Journal of Hydromechatronics》和《海洋工程》青年编委、中国钢结构协会海洋钢结构分会常务理事。先后主持国家自然科学基金、工信部高技术船舶专项、国家科技重大专项子课题等20余项课题,在国际权威期刊(Journal of Sound and Vibration、Mechanical Systems and Signal Processing、Nonlinear Dynamics等)发表论文90余篇,授权国家专利和软件著作权30余项。相关成果已在我国“永乐科考号”等三型平台上成功应用,获国家教学成果二等奖(19/22)、海洋工程技术基础研究类特等奖(7/20)和二等奖(2/11)、 中国造船工程学会技术进步一等奖(8/15)等。

教育及工作经历

[1]2011.09–2016.12,湖南大学,机械与运载工程学院,机械工程,博士(导师:徐道临教授);

[2]2007 .09–2011.06,湖南大学,机械与运载工程学院,工程力学,学士;

[3]2025.09-至今,湖南大学,机械与运载工程学院,教授

[4]2019.03-2025.08,湖南大学,机械与运载工程学院,副教授

[5]2017.01-2019.02,湖南大学,机械与运载工程学院,力学博士后

科研项目

[1]·自适应柔性驱动鱼尾高效仿生推进机理研究,广东省自然科学基金面上项目,2024/01-2026/12。(主持)

[2]·非线性水波超结构低频带隙机理及波传播特性研究,国家自然科学基金面上项目,2023/01-2026/12。(主持)

[3]·智能超平承载机器人运动控制算法优化,企业委托,2022/07-2023/07。(主持)

[4]·振幅死亡稳定性设计方法及其工程应用,湖南省自然科学基金面上项目,2022/01-2024/01。(主持)

[5]·海洋环境建模与装备性能仿真,中国船舶科学研究中心委托,2021/01-2022/12。(主持)

[6]·浮式保障平台工程(三期)——多模块连接复杂构型浮式平台水动力分析技术研究,2020/01-2022/12。(主持)

[7]·仿生多骨节消波吸能机理及结构优化设计,中央高校基本科研业务费项目,2019/01-2023/12。(主持)

[8]·阵列波能农场非线性响应及波能捕获特性研究(2019JJ50074),湖南省自然科学基金面上项目,2019/01-2021/12。(主持)

[9]·基于复杂网络理论的超大型浮动平台系统灾变动力学研究(11702088),国家自然科学青年基金项目,2017/01-2020/12。(主持)

[10]·阵列波能农场动力学建模及非线性响应特性研究(2018T110823),中国博士后基金特别资助项目,2018/06-2018/12。(主持)

[11]·基于复杂网络重构技术的深海采矿系统灾变预测方法研究(2017M620344),中国博士后基金面上项目,2017/06-2018/12。(主持)

[12]·多模块海上浮动机场柔性连接网络动力学研究(CX2015B085),湖南省研究生科研创新项目,2015/06-2017/06。(主持)

[13]·海上试验平台连接器关键参数优化研究,2017/01-2019/12。(骨干参与,排名第二)

[14]·超大型浮体多模块柔性连接网络动力学研究(2013CB036014),973子项目,2013/04-2015/12。(骨干参与,排名第二)

[15]·超大型浮动机场稳定性及非线性动力响应特性研究(11472100),自然科学基金,2015/1-2018/12。(参与)

学术成果

代表性论文

[1]·Zhou X, Zhang H, Jin H, Liu C, Xu D. Numerical and experimental investigation of a hinged wave energy converter with negative stiffness mechanism. Int J Mech Sci. 2023;245(September 2022):108103.

[2]·Ding R, Zhang H, Xu D, et al. Experimental and numerical study on motion instability of modular floating structures. Nonlinear Dyn. 2023;111(7):6239-6259.

[3]·Zhang X, Zhang H, Zhou X, Sun Z. Recent advances in wave energy converters based on nonlinear stiffness mechanisms. Appl Math Mech. 2022;43(7):1081-1108.

[4]·Jin H, Zhang H, Xu D. Array buoys with nonlinear stiffness enhance low-frequency wave attenuation and energy capture. Phys Fluids. 2022;34(12):127106.

[5]·Jin H, Zhang H, Xu D, Jun D, Ze S. Low-frequency energy capture and water wave attenuation of a hybrid WEC-breakwater with nonlinear stiffness. Renew Energy. 2022;196:1029-1047.

[6]·Zhang H, Li P, Jin H, Bi R, Xu D. Nonlinear wave energy dissipator with wave attenuation and energy harvesting at low frequencies. Ocean Eng. 2022;266(P3):112935.

[7]·Zhang H, Zhang J, Zhou X, et al. Robust performance improvement of a raft-type wave energy converter using a nonlinear stiffness mechanism. Int J Mech Sci. 2021;211(2):106776.

[8]·席儒,张海成*,陆晔,徐道临,吴博.不规则波激励下磁力双稳态波浪能转换装置的能量捕获特性研究.海洋工程2021;39:142–52.

[9]·Sun Ze, Zhang Haicheng*, Liu Xiaolong, Ding Jun, Xu Dao, Cai Zhiwen. Wave energy assessment of the Xisha Group Islands zone for the period 2010-2019. Energy 2021;220:119721. doi:10.1016/j.energy.2020.119721.

[10]·赵淮,张海成*,徐道临,施奇佳,陆晔.超大型多模块浮动平台柔性连接器刚度配比优化.船舶力学2021;25:489–501. doi:10.3969/j.issn.1007-7294.2021.04.012.

[11]·Xi Ru, Zhang Haicheng*, Xu Daolin, Zhao Huai, Mondal R. High-performance and robust bistable point absorber wave energy converter. Ocean Eng 2021;229:108767. doi:10.1016/j.oceaneng.2021.108767.

[12]·Shi Qijia, Xu Daolin*, Zhang Haicheng. Performance analysis of a raft-type wave energy converter with a torsion bi-stable mechanism. Energy 2021;227:120388. doi:10.1016/j.energy.2021.120388.

[13]·Ding Rui, Yan Dulei, Zhang Haicheng, Lu Ye, Shi Qijia, Tian Chao, et al. An application of network modeling method to scientific research and demonstration platform—Connector load analysis. J Hydrodyn 2021;33:33–42. doi:10.1007/s42241-021-0011-2.

[14]·Zhao Huai, Zhang Haicheng*, Bi Rengui, Xi Ru, Xu Daolin, Shi Qijia, et al. Enhancing efficiency of a point absorber bistable wave energy converter under low wave excitations. Energy 2020;212:118671. doi:10.1016/j.energy.2020.118671.

[15]·Xia Shuyan, Xu Daolin*, Zhang Haicheng, Shi Qijia, Wen Guilin, Wu Yousheng. Motion mitigation of hinged floating structures by adaptive control. Ocean Eng 2020;216. doi:10.1016/j.oceaneng.2020.107700.

[16]·Ding Rui, Liu Chunrong, Zhang Haicheng, Xu Daolin*, Shi Qijia, Yan Dulei, et al. Experimental investigation on characteristic change of a scale-extendable chain-type floating structure. Ocean Eng 2020;213:107778. doi:10.1016/j.oceaneng.2020.107778.

[17]·Sun Ze, Zhang Haicheng*, Xu Daolin, et al. Assessment of wave power in the South China Sea based on 26-year high-resolution hindcast data. Energy 2020;197:117218. doi:10.1016/j.energy.2020.117218.

[18]·Xia Shuyan, Xu Daolin, Zhang Haicheng, Wu Yousheng. Response control of a floating airport in heading waves with output saturation. J Vib Control 2019;25:571–80. doi:10.1177/1077546318790592.

[19]·Xia Shuyan, Xu Daolin*, Zhang Haicheng, Wu Y. Multivariable oscillation control of a modularized floating airport with disturbance of uncertain waves. J Sound Vib 2019;439:310–28. doi:10.1016/j.jsv.2018.10.006.

[20]·Haicheng Zhang*, Ru Xi, Daolin Xu, Kai Wang, Qijia Shi, Huai Zhao, Bo Wu. Efficiency enhancement of a point wave energy converter with a magnetic bistable mechanism. Energy, 2019, doi: 10.1016/j.energy.2019.06.008

[21]·Huai Zhao, Daolin Xu, Haicheng Zhang*, Shuyan Xia, Qijia Shi, Rui Ding, Yousheng Wu. Anoptimization method for stiffness configuration of flexible connectors formulti-modular floating systems. Ocean Engineering, 2019, 181: 134-144.

[22]·Haicheng Zhang, Daolin Xu*,Rui Ding, Huai Zhao, Lu Ye, Yousheng Wu. Embedded Power Take-Off in hinged modularized floating platform for wave energy harvesting and pitch motion suppression. Renewable Energy, 2019, 138:1176-1188.

[23]·HaichengZhang, Daolin Xu*, Shuyan Xia, Yousheng Wu. Nonlineardynamics of a non-autonomous network with coupled discrete-continuumoscillators. Nonlinear Dynamics, 2018, 94(2): 889-904.

[24]·HaichengZhang, Daolin Xu*, Huai Zhao, Shuyan Xia, Yousheng Wu. Energyextraction of wave energy converters embedded in a very large modularizedfloating platform. Energy, 2018, 158: 317-329.

[25]·HaichengZhang, Daolin Xu*, Yousheng Wu. Predicting catastrophesof non-autonomous networks with visibility graphs and horizontal visibility. MechanicalSystems and Signal Processing, 2018, 104:494-502.

[26]·Haicheng Zhang, Daolin Xu*, ChunrongLiu, Yousheng Wu. Floating platform with embedded wave energy harvesting arraysin regular and irregular seas. Energies, 2017,10: 1249.

[27]·Haicheng Zhang, Daolin Xu*, Chao Lu,Enrong Qi, Chao Tian, Yousheng Wu. Connection effect on amplitude deathstability of multi-module floating airport. Ocean Engineering,2017,129: 45-55.

[28]·Haicheng Zhang, Daolin Xu*, ChunrongLiu, Yousheng Wu. Wave energy absorption of a wave farm with an array of buoysand flexible runway,Energy, 2016, 109: 211-223.

[29]·Haicheng Zhang, Daolin Xu*, Shuyan Xia, Chao Lu, Enrong Qi, Chao Tian, Yousheng Wu. Nonlinearnetwork modeling of multi-module floating structures with arbitrary flexibleconnections. Journal of Fluids and Structures, 2015, 59: 270–284.

[30]·Haicheng Zhang, Daolin Xu*, Chao Lu, Shuyan Xia, Enrong Qi,Jiajun Hu, Yousheng Wu. Network dynamic stability of floating airport based onamplitude death, Ocean Engineering, 2015, 104: 129–139.

[31]·Haicheng Zhang, Daolin Xu*, Chao Lu, Enrong Qi, Jiajun Hu, YoushengWu. Amplitude death of a multi-module floating airport, Nonlinear Dynamics,2015, 79: 2385–2394.

[32]·Daolin Xu*, Haicheng Zhang, Chao Lu, Enrong Qi, Chao Tian, Yousheng Wu.Analytical criterion for amplitude death in nonautonomous systems withpiecewise nonlinear coupling, Physical Review E, 2014, 89: 42906.

[33]·Daolin Xu*, Haicheng Zhang, Shuyan Xia, Chao Lu, Enrong Qi, Chao Tian, Yousheng Wu. Nonlinear dynamiccharacteristics of a multi-module floating airport with rigid-flexible connections,Journalof Hydrodynamics, 2017.

[34]·Haicheng Zhang, DaolinXu*, Shuyan Xia, Yousheng Wu. A new concept for the stability design of floatingairport with multi-modules, Procedia IUTAM, 2017, 22: 221-228.

[35]·QijiaShi, Haicheng Zhang, DaolinXu*, Enrong Qi, Chao Tian, Jun Ding, Yousheng Wu, Ye Lu, Zhiwei Li. Experimentalvalidation of network modeling method on a three-modular floating prototype. CoastalEngineering, 2018, 137: 92-102.

[36]·QijiaShi, Daolin Xu*, Haicheng Zhang,Huai Zhao, Yousheng Wu. Optimized stiffness combination of a flexible-basehinged connector for very large floating structures. Marine Structures, 2018,60: 151-164.

[37]·ShuyanXia, Daolin Xu*,Haicheng Zhang,Enrong Qi, Jiajun Hu, Yousheng Wu. On retaining a multi-module floating structurein an amplitude death state, Ocean Engineering, 2016, 121:134-142.

[38]·Daolin Xu*,Shuyan Xia, Haicheng Zhang. Adaptive optimal control of multi-modular floatingplatforms in random seas, Nonlinear Dynamics, 2018,91:863-876.

[39]·ShuyanXia, Daolin Xu*, Haicheng Zhang,Yousheng Wu.Response Control ofFloating Airport in Heading Waves with Output Saturation.Journal of Vibration and Control,2018, 25(3):571-580.

奖励与荣誉

[1]2025年 湖南大学优秀教师

[2]2024年 湖南大学优秀班主任

[3]2024年 中国造船工程学会科学技术一等奖

[4]2024年 中国海洋工程咨询协会二等奖

[5]2024年 湖南省优秀硕士学位论文指导教师

[6]2024年 湖南省教学比赛三等奖

[7]2023年 湖南省优秀硕士学位论文指导教师

[8]2023年 湖南省党务工作示范岗 荣誉称号

[9]2022年全国海洋航行器设计与制作大赛一等奖指导教师

[10]2022年 湖南省机械创新设计大赛二等奖指导教师

[11]2022年 湖南省青年骨干教师培养对象

[12]2022年 湖南大学优秀党务工作者

[13]2022年 湖南大学优秀硕士论文指导教师

[14]2021年 第十六届湖南大学“长丰奖励基金”长丰优秀教师奖

[15]2021年 湖南大学机械与运载工程学院优秀共产党员 荣誉称号

[16]2020年湖南大学青年教工党员示范岗 荣誉称号

[17]2020年度海洋工程科学技术特等奖

[18]2020年 湖南大学杰出博士后

[19]2019年 第十九届中国海洋(岸)工程学术研讨会优秀青年论文奖

[20]2018年 湖南大学优秀博士学位论文

[21]2015年 中国海洋钢结构会议最佳论文奖

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