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基本信息:

韩志强,讲师,工学博士,硕士生导师

船舶与海洋工程系

电子邮箱:hzq910413@zjou.edu.cn

通讯地址:浙江省舟山市定海区临城街道海大南路1号工科楼143

 

研究方向:

[1] 海洋复合材料

[2] 小型船舶设计

[3]绿色船舶技术

[4] 产品全生命周期环境影响评估

 

个人教育与工作简历:

2016.032018.02               韩国国立木浦海洋大学       造船海洋工程    硕士

2018.032022.02           韩国国立木浦海洋大学       造船海洋工程    博士

2022.032022.08               韩国国立木浦海洋大学       产学研究中心    助理研究员

2022.08至今                         浙江海洋大学船舶与海洋工程讲师

2022.082025.09               武汉理工大学与舟山中远海运重工有限公司联合培养博士后

 

项目经历

1.          韩国国家研究基金会_A study on Design Standard and Application of Multi-layered Composite for Developing CFRP Ship Structure (2016.03~2017.04)_参与

2.          韩国国家研究基金会_Improving Green Performance in response to Environmental Regulations for a Composite Ship (2017.07~2020.04)_参与

3.          韩国海洋水产部Study on Environmental Impact Assessment System of Small Craft for Eco-friendly Design (2019.02~2021.12)_硕博研究生主持课题项目_主持

4.          韩国产业通商部_Development of Foam Core Material and Sandwich Structure for a Composite Ship (2016.03~2021.07)_参与

5.          韩国产业通商部_IoT and AI based development of Digital Twin for Block Assembly Process (2019.03~2021.12) _参与

6.          韩国产业通商部_Establishment Foundation for Development Support for Aluminum Small Ship (2019.03~2022.03) _参与

7.          舟山中远海运重工有限公司博士后工作站_基于全生命周期的15.4万吨穿梭油轮碳排放强度评价体系构建研究(2022.11~2025.09_主持

8.          国家自然科学基金委青年基金,纤维含量对玻璃钢船体结构碳足迹的影响机制研究(2026.01~2028.12_主持

 

发表论文:

1.         Decarbonization effect evaluation of dual-fuel solutions for shuttle tankers using the energy efficiency design indexProceedings of the Institution of Mechanical Engineers Part M Journal of Engineering for the Maritime Environment, 20255月,SCIE, 通讯作者)

2.         Decarbonation Effects of Mainstream Dual-Fuel Power Schemes Focus on IMO Mandatory Regulation and LCA MethodJournal of Marine Science and Engineering,20254月,SCIE,通讯作者)

3.         Effects of Fiber Orientation on the Bearing Strength of 3D-Printed Composite Materials Produced by Fused Filament FabricationPolymers202412月,SCIE,通讯作者)

4.         Ultrasonic non-destructive inspection method for glass fibre reinforcement polymer (GFRP) hull plates considering design and construction characteristicsProceedings of the Institution of Mechanical Engineers Part M Journal of Engineering for the Maritime Environment, 20252月,SCIE, 第一作者)

5.         Environmental implications of a sandwich structure of a glass fiber-reinforced polymer shipOcean Engineering20243月,SCIE,第一作者)

6.         Comparison of structural design and future trends in composite hulls: A regulatory reviewInternational Journal of Naval Architecture and Ocean Engineering202311月,SCIE,第一作者)

7.         Effect of Void Content on the Mechanical Properties of GFRP for Ship DesignJournal of Marine Science and Engineering20236月,SCIE,通讯作者)

8.         Fabric combination of glass fiber reinforced polymer effect on performance of GFRP hull structure International Journal of Naval Architecture and Ocean Engineering, 20226_SCIE, 通讯作者)

9.         Ultrasonic Attenuation Characteristics of Glass-Fiber-Reinforced Polymer Hull StructureApplied Sciences, 2021.07SCIE, 第一作者)

10.      Comparative Study of Glass Fiber Content Measurement Methods of Inspecting Fabrication Quality of Composite Ship StructuresApplied Sciences, 2020.07SCIE,第一作者)

11.      Error Analysis of Non-Destructive Ultrasonic Testing of Glass Fiber-Reinforced Polymer Hull PlatesJournal of Composite Sciences202109月,Scopus,第一作者)

12.      Evaluating the Application Feasibility of Lithium- Battery Electric Propulsion for Fishing BoatsJournal of the Society of Naval Architects of Korea20236月,KCI,通讯作者)

13.      Feasibility Study of a 500-ton Class Patrol Vessel Made of Carbon Fiber Reinforced PolymerComposite Research, 20229月,KCI,通讯作者)

14.      Basic Design of High-Speed Riverine Craft Made of Carbon Fiber Reinforced PolymerJournal of the Society of Naval Architects of Korea, 202008月,KCI,第一作者)

15.      Light-weight Optimum Design of Laminate Structures of a GFRP Fishing VesselJournal of Ocean Engineering and Technology, 201912月,KCI, 第二作者)

16.      Experimental Data based Laminate Weight Optimization of Composite Ship StructuresJournal of the Society of Naval Architects of Korea, 202004月,KCI,第二作者)

17.      Correlation between Probe Frequency and Echo-Pulse Velocity for Ultrasonic Testing of a Fiber-Reinforced Plastic Hull PlateJournal of the Korean Society of Marine Environment and Safety, 2020年,04月,KCI,第二作者)

18.      某穿梭油轮EEDI多方案优化对比分析(船海工程,202312月,通讯作者)

19.      考虑玻璃钢强度性能的渔船船体结构轻量化设计(中国造船, 202106月,EI/Scopus, 第一作者)

20.      韩国玻璃钢渔船船体结构设计余量及其环境负荷分析(中国造船, 202003月,EI/Scopus, 第一作者)

21.      随碳纤维含量变化的CFRP船体结构积层板的材料特性(船海工程,2019.02,北大核心,通信作者)

专利:

1.          碳纤维游艇(设计专利,韩国)

2.          快艇(外观设计专利,中国)

3.          复合材料船体结构轻量化的最优纤维含量决定方法(发明专利,韩国)

4.          基于纤维含量调节的材料轻量化优化设计方法(发明专利,中国)

荣获奖项:

1.          辽宁省优秀毕业生

2.          韩国海洋工学会优秀论文奖

3.          韩国复合材料学会优秀论文奖

4.          韩国船级社奖励奖

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