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王虎
作者:研究生   时间:2026-08-27   点击数:[]

姓名:王虎

职称:讲师

邮箱:huwang@ytu.edu.cn

办公地点:

 

  • 工作履历

2026.08-至今,烟台大学机电汽车工程学院,讲师

 

  • 教育背景

2022.09-2026.06,大连海事大学,船舶与海洋结构物设计制造,工学博士

2019.09-2022.06,大连海事大学,机械工程,工学硕士

2015.09-2019.06,鲁东大学,机械设计制造及其自动化,工学学士

 

  • 研究领域

海洋可再生能源及其存储、水下压缩气体储能

 

  • 科研项目

[1] 国家自然科学基金面上项目,规模化水下压缩气体储能中气液两相流流动及其诱导振动特性研究,2021.01-2024.12NO.52075065,结题,参与

[2] 国家自然科学基金青年项目,基于储能和高等㶲理论的气动系统恒压储气节能机理研究,2020.01-2022.12NO.51905066,结题,参与

[3] 大连海事大学优秀博士学位论文培育项目,水下大型压缩气体储能装置设计及其在位稳定性研究,2024.10-2025.12,结题,主持

[4] 南方电网广东新型储能国家研究院有限公司,水下柔性储气系统可靠性评估,在研,参与

 

  • 研究成果

一、学术论文:

[1] Wang H, Wang Z, Zhao Z, Ting DSK, Sant T, Carriveau R, Li P, Xiong W. Experimental Investigation on the Effects of Buoyancy Loading Rate on Pullout Resistance of Composite Suction Caissons in Subsea Hydrogen Storage. China Ocean Engineering, 2026: 1-16. (JCR Q3,中科院2)

[2] Huang Z, Wang H*, Zhao Z, Yang Y, Xiong W, Wang Z. Time-variant reliability assessment for mooring line fatigue of underwater flexible compressed air energy storage system. Journal of Ocean Engineering and Marine Energy, 2026: 1-16. (EI)

[3] Wang H, Wang Z, Zhao Z, Ting DSK, Sant T, Carriveau R, Li P, Xiong W. An experimental investigation of the pullout capacity of a composite suction caisson for underwater compressed hydrogen energy storage accumulator in saturated sand. Ocean Engineering, 2025, 327: 121010. (JCR Q1,中科院2TOP

[4] Wang H, Wang Z, Ting DSK, Carriveau R, Sant T, Xiong W. Structural strength and fatigue analyses of large scale underwater compressed hydrogen energy storage accumulator. Marine Structures, 2024, 98: 103684. (JCR Q1,中科院2区)

[5] Wang Z, Wang H, Sant T, Zhao Z, Carriveau R, Ting DSK, Li P, Zhang T, Xiong W. Subsea energy storage as an enabler for floating offshore wind hydrogen production: Review and perspective. International Journal of Hydrogen Energy, 2024, 71: 1266-1282. (JCR Q1,中科院2区)

[6] Wang H, Wang Z, Liang C, Carriveau R, Ting DSK, Li P, Cen H, Xiong W. Underwater compressed gas energy storage (UWCGES): current status, challenges, and future perspectives. Applied Sciences, 2022, 12(18): 9361. (JCR Q2,中科院4区)

[7] Wang H, Tong Z, Dong X, Xiong W, Ting DSK, Carriveau R, Wang Z. Design and energy saving analysis of a novel isobaric compressed air storage device in pneumatic systems. Journal of Energy Storage, 2021, 38: 102614.JCR Q1,中科院 2区)

[8] Wang H, Xiong W, Carriveau R, Ting DSK, Sant T, Wang Z. Numerical Analysis of Uplift Bearing Capacity of Composite Suction Caisson Foundation Used For Large-scale Underwater Compressed Gas Energy Storage. The 8th Offshore Energy & Storage Symposium, July 10-12, 2024, New Bedford, Massachusetts, US. (EI)

[9] Wang H, Wang Z, Liang C, Xiong W. Techno-Economic Assessment of an Offshore Wind Turbine Underwater Compressed Hydrogen Energy Storage System. IEEE 9th International Conference on Fluid Power and Mechatronics (FPM), 18-21 August 2023, Lanzhou, China. (EI)

[10] Wang H, Xiong W, Liang C, Carriveau R, Ting DSK, Wang Z. Design and modal analysis of a large-scale underwater compressed gas energy storage accumulator. 7th Offshore Energy & Storage Symposium (OSES 2023), 12-14 July 2023, St. Julian's, Malta. (EI)

[11] 王虎,王志文,熊伟. 基于AMESim的水下大型气液混合储能系统运行特性分析[J].液压与气动, 2023, 47(11):120-127.

[12] 王虎,王志文,童郑人,董欣, 熊伟. 恒压式气动储气装置设计与仿真分析[J].液压与气动, 2021,(5): 39-43.

[13] Huang Z, Zhao Z, Wang H, Yang Y, Xiong W, Wang Z. Fluid-structure interaction analysis of an underwater flexible compressed air energy storage accumulator based on Arbitrary Lagrangian-Eulerian method. Ocean Engineering, 2026, 356: 125353. (JCR Q1,中科院2TOP

[14] Wang Z, Zhao Z, Wang H, Li P, Sant T, Ting DSK, Carriveau R, Xiong W. Levelized Cost of Storage Analysis of Subsea Isobaric Hydrogen Storage. Marine Energy Research, 2026, 3(2): 10010.

[15] Zhao Z, Wang Z, Wang H, Carriveau R, Ting DSK, Xiong W. An exergy-based efficiency analysis framework for industrial pneumatic systems. International Journal of Exergy, 2024, 44: 33-52. (JCR Q4,中科院4区)

[16] Zhao Z, Xiong W, Wang H, Sant T, Carriveau R, Ting DSK, Wang Z. Simulation of a decentralized offshore wind hydrogen production system with hydro-pneumatic energy storage and subsea isobaric hydrogen storage. The 8th Offshore Energy & Storage Symposium, July 10-12, 2024, New Bedford, Massachusetts, US. (EI)

[17] Liang C, Xiong W, Wang H, Carriveau R, Ting DSK, Li P, Wang Z. Identification and maximum impact force modeling investigation for critical slugging in underwater compressed gas energy storage systems. Journal of Energy Storage, 2023, 67: 107550. (JCR Q1,中科院2TOP

[18] Liang C, Xiong W, Wang M, Ting DSK, Carriveau R, Wang, Z. Experimental and Modeling Investigation for Slugging Pressure under Zero Net Liquid Flow in Underwater Compressed Gas Energy Storage Systems. Applied Science, 2023, 13: 1216. (JCR Q2,中科院4)

[19] Wang Z, Yang B, Ma Q, Wang H, Carriveau R, Ting DSK, Xiong W. Facilitating Energy Monitoring and Fault Diagnosis of Pneumatic Cylinders with Exergy and Machine Learning. International Journal of Fluid Power, 2023, 24(4): 643-682. (JCR Q2,中科院4区)

[20] Zhao Z, Wang Z, Wang H, Zhu H, Xiong W. Conventional and Advanced Exergy Analyses of Industrial Pneumatic Systems. Energies, 2023, 16: 5982. (JCR Q3,中科院4区)

[21] Zhu H, Wang Z, Wang H, Zhao Z, Xiong W. Leakage Fault Diagnosis of Two Parallel Cylinders in Pneumatic System with a Minimal Number of Sensors. Electronics, 2023, 12: 3261. (JCR Q2,中科院4)

[22] Liang C, Xiong W, Wang H, Carriveau R, Ting DSK, Wang Z. Identification of slug flow in underwater compressed gas energy storage pipeline using pressure signals. 7th Offshore Energy & Storage Symposium (OSES 2023), 12-14 July 2023, St. Julian's, Malta. (EI)

[23] Wang M, Xiong W, Liang C, Wang H, Wang Z. Experimental analysis on vibration characteristics of reduced scale gas transportation pipeline with liquid accumulation. IEEE 9th International Conference on Fluid Power and Mechatronics (FPM), 18-21 August 2023, Lanzhou, China. (EI)

[24] Zhao Z, Wang Z, Wang H, Xiong W. Energy Efficiency Analysis of Pneumatic Vacuum Generators Based on the Exergy Field Method. IEEE 9th International Conference on Fluid Power and Mechatronics (FPM), 18-21 August 2023, Lanzhou, China. (EI)

[25] 杨波, 王志文, 马茜, 王虎, 熊伟. 基于自编码器和支持向量机的气压传动系统气缸泄漏故障诊断. 液压与气动, 2023, 47(2): 72-79.

[26] 朱宏伟, 王志文, 杨波, 王虎, 熊伟.基于上游单点测量信息和机器学习的气动系统并联双气缸泄漏故障诊断. 液压与气动, 2023, 47(7): 73-82.

[27] Tong Z, Wang H, Xiong W, Ting DSK, Carriveau R, Wang Z. Accumulated and transient exergy analyses of pneumatic systems with isochoric and isobaric compressed air storage tanks. Energy Storage, 2021, 3(6): e269.

 

二、发明专利:

[1] 王志文,王虎,熊伟,梁成玉. 一种大型水下压缩气体储能装置. ZL202311343961.8

[2] 王志文,王虎,熊伟,符悦斌. 一种防海水腐蚀和海洋生物附着的闭式水下压缩气体储能装置. ZL202310229491.6

[3] 王志文,王虎,熊伟,童郑人,董欣. 一种恒压变容式气动系统储气装置. ZL202010317530.4

[4] 熊伟,王虎,王志文. 一种具有储能功能的海上风电固定式基础. ZL202310205523.9

[5] 熊伟,王虎,王志文. 一种无输气管道的水下大型气液混合储能系统及方法. CN202310229466.8

[6] 王志文,卢博闻,王虎,熊伟,童郑人,董欣. 一种规模化水下天然气存储系统及方法ZL2020101531037

[7] 王志文,童郑人,董欣,王虎,熊伟,王金舜. 一种水下油气存储装置,ZL2020108210018

 

  • 获奖情况

[1] 2025年博士研究生国家奖学金    

[2] 2021年硕士研究生国家奖学金

[3] 2022年辽宁省优秀毕业生

[4]北京SMC教育基金会专项奖学金特等奖,2022-2024