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2024

[1]  Menglong Cao, Zhe Wang*, Haobo Tang,Songran Li, Yulong Ji, Fenghui Han, Heat flow topology-driven thermo-mass decoupling strategy: Cross-scale regularization modeling and optimization analysis, Applied Energy, 2024, 367, 123395.

[2]  Zhe Wang, Bo Dong, Jinjun Yin,Mingyu Li, Yulong Ji, Fenghui Han, Towards a marine green power system architecture: Integrating hydrogen and ammonia as zero-carbon fuels for sustainable shipping, International Journal of Hydrogen Energy, 2024, Volume 50, Part B, 1069-1087.

[3]  Zhe Wang, Bo Dong, Yifu Wang, Mingyu Li, Han Liu, Fenghui Han, Analysis and evaluation of fuel cell technologies for sustainable ship power: Energy efficiency and environmental impact, Energy Conversion and Management: X, 2024, Volume 21, 100482.

[4] 王哲,唐浩博,张丁海等.氨燃料固体氧化物燃料电池低温化性能分析[J/OL].中国电机工程学报:1-10[2024-01-10].https://doi.org/10.13334/j.0258-8013.pcsee.231420. 网络首发

[5] 赖彦辰, 王哲*, 崔大安, 韩凤翚, 纪玉龙.氨燃料管状 SOFCs 中热冲击影响与性能的模拟研究[J/OL].中国电机工程学报, 2024, 44(1): 191-202. 

[6] Zhe Wang, Menglong Cao, Haobo Tang, Yulong Ji, Fenghui Han, A global heat flow topology for recovering the synergistic effects of heat transfer and thermal power conversion in large scale systems: Methodology and case study, Energy, 2024, 290, 130203.

[7] Zhe Wang, Qingyuan Lan, Dinghai Zhang, Mingyu Li, Daan Cui, Fenghui Han, Optimizing ammonia-fueled planar SOFCs for low-temperature operation: Multiphysics simulation and performance sensitivity analysis, Applied Thermal Engineering, 2024, 242, 122442.

[8] Zhe Wang, Bo Dong, Mingyu Li, Yulong Ji, Fenghui Han, Configuration of Low-Carbon fuels green marine power systems in diverse ship types and Applications, Energy Conversion and Management, 2024, 302C ,118139.

[9] Zhe Wang, Mingyu Li, Fan Zhao, Yulong Ji, Fenghui Han, Status and prospects in technical standards of hydrogen-powered ships for advancing maritime zero-carbon transformation, International Journal of Hydrogen Energy, 2024, 62 ,925-964. 

[10] 夏睿, 王哲*, 曹梦龙, 韩凤翚纪玉龙 等. FLNG船舶冷能综合管理系统设计与热力学分析[J]. 船海工程, 2024, 53(01): 41-45.

[11] Zhe Wang, Menglong Cao, Haobo Tang, Bo Dong, Yulong Ji, Fenghui Han, Marine temperature and humidity regulation combined system: performance analysis and multi-objective optimization, Case Studies in Thermal Engineering, 2024, 56, 104215.

[12] 夏睿 , 王哲* , 董博 , 韩凤翚 , 纪玉龙 , 蔡文剑. FLNG船舶能量管理系统设计与性能优化. 中国电机工程学报. 2024, 44(8): 3165-3176.

[13] Yue Ma, Zhe Wang*, Han Liu, Haobo Tang, Yulong Ji, Fenghui Han. Efficient and sustainable power propulsion for all-electric ships: An integrated methanol-fueled SOFC-sCO2 system, Renewable Energy, 2024, 230, 120822.

[14] Yuemao Jiang, Sunsen Wang, Zhe Wang, Wen Su, Performance enhancement of gas turbine by supercritical CO2 cycle construction: System and component two-level evaluation, Energy, 2024, 203, 131830.



2023

[20]  Fan Zhao, Zhe Wang*, Bo Dong, Mingyu Li, Yulong Ji, Fenghui Han, Comprehensive life cycle cost analysis of ammonia-based hydrogen transportation scenarios for offshore wind energy utilization, Journal of Cleaner Production, 2023,429: 139616.

[19] 马悦, 王哲*, 曹梦龙, 等. 固体氧化物燃料电池和分部加热式S-CO2循环联合发电系统设计与分析, 中国电机工程学报, 2023,10.13334/j.0258-8013.pcsee.231116. 网络首发

[18]  Yuxiang Liu, Fenghui Han, Guang Yin, Muk Chen Ong, Wenhua Li, Zhe Wang, Numerical investigation of blind-tee effect on flow mixing in double-bend combinations, Ocean Engineering, 287, Part 2, 2023, 115909.

[17]  Zhe Wang, Rui Xia, Yuemao Jiang, Menglong Cao, Yulong Ji, Fenghui Han. Evaluation and optimization of an engine waste heat assisted Carnot battery system for ocean-going vessels during harbor stays, Journal of Energy Storage, 2023, Volume 73, Part A: 108866.

[16] Rui Xia, Zhe Wang*, Menglong Cao, Yuemao Jiang, Bohao Tang, Yulong Ji, Fenghui Han.Comprehensive performance analysis of cold storage Rankine Carnot batteries: Energy, exergy, economic, and environmental perspectives, Energy Conversion and Management, 2023, 293: 117485.

[15] Yuemao Jiang, Yue Ma, Fenghui Han, Yulong Ji, Wenjian Cai, Zhe Wang*. Assessment and optimization of a novel waste heat stepped utilization system integrating partial heating sCO2 cycle and ejector refrigeration cycle using zeotropic mixtures for gas turbine, Energy, 2023, 265: 126362.

[14] Zhe Wang, Fan Zhao, Bo Dong, Dongxing Wang, Yulong Ji, Fenghui Han. Life cycle framework construction and quantitative assessment for the hydrogen fuelled ships: A case study. Ocean Engineering, 2023, 281: 114740.

[13] Zhe Wang, Yue Ma, Menglong Cao, Yuemao Jiang, Fenghui Han. Energy, exergy, exergoeconomic, environmental (4E) evaluation and multi-objective optimization of a novel SOFC-ICE-SCO2-HRSG hybrid system for power and heat generation, Energy Conversion and Management, 2023, 291(1): 117332.

[12] Qingyuan Lan Fenghui Han, Yuxiang Liu, Wenhua Li, Zhe Wang*. Effects of ventilation system design on flame behavior and smoke characteristics for mitigating marine engine room fire hazards[J]. Ocean Engineering, 2023, 281: 114890.

[11] Yanchen Lai, Zhe Wang*, Daan Cui, Fenghui Han, Yulong Ji, Wenjian Cai. Thermal impact performance study for the thermal management of ammonia-fueled single tubular solid oxide fuel cell, International Journal of Hydrogen Energy, 2023, 48(6): 2351-2367.

[10] Zhe Wang, Shui Yu, Menglong Cao, Yulong Ji, Wenjian Cai, Fenghui Han. Design and performance simulation of a novel waste heat-driven liquid desiccant combined with transcritical CO2 refrigeration system for ocean-going vessels in typical shipping routes, Thermal Science and Engineering Progress, 2023, 38: 101636.

[9] Zhe Wang, Fan Zhao, Yue Ma, Rui Xia, Fenghui Han. Performance Analysis and Design of Direct Ammonia Fuel Tubular Solid Oxide Fuel Cell for Shipborne Unmanned Aerial Vehicles. Aerospace 2023, 10, 397.

[8] Zhe Wang, Yue Ma, Sun Y, Haobo Tang, Menglong Cao, Rui Xia, Fenghui Han. Optimizing Energy Management and Case Study of Multi-Energy Coupled Supply for Green Ships. J. Mar. Sci. Eng. 2023, 11, 1286.

[7] 夏睿, 王哲*, 董博, 韩凤翚, 纪玉龙, 蔡文剑. FLNG船舶能量管理系统设计与性能优化, 中国电机工程学报, 2023, 223349.

[6] 王群, 姜悦茂, 王哲*, 韩凤翚, 纪玉龙, 蔡文剑. 船载GT-sCO2双布雷顿联合循环㶲经济分析与多目标优化, 西安交通大学学报, 2023, 57(1): 87-99.

[5] 夏睿, 王哲*, 曹梦龙,韩凤翚,纪玉龙,蔡文剑. FLNG船舶冷能综合管理系统设计与热力学分析, 船海工程, 2023, 03, 1-10.

[4]王东兴 , 王哲*, 赵帆, 等. 氢燃料电池动力船舶技术标准现状分析与发展展望. 交通信息与安全 , 2023, 2(41): 157-167.

[3] 马悦,王哲*,姜悦茂, 等. 固体氧化物燃料电池和分部加热式S-CO2循环联合发电系统设计与分析,中国电机工程学报,2023,X231116.

[2] 王哲, 吕欣荣, 徐敏义. “求知—讲授—评价—科创”教改实践探讨——以轮机工程专业热工基础课程为例. 教育教学论坛, 2023, 610(07): 93-96.

[1] 王哲, 韩凤翚, 纪玉龙. 科研团队建设与“互联网+”相结合的新工科人才培养研究. 中国多媒体与网络教学学报(上旬刊), 2023(02): 138-141.


2022

[1] Zhe Wang, Yuemao Jiang, Yue Ma, Fenghui Han, Yulong Ji, Wenjian Cai. A partial heating supercritical CO2 nested transcritical CO2 cascade power cycle for marine engine waste heat recovery: Thermodynamic, economic, and footprint analysis, Energy, 2022, 261: 125269.

[2] Fan Zhao, Zhe Wang*, Dongxing Wang, Fenghui Han, Yulong Ji, Wenjian Cai. Top level design and evaluation of advanced low/zero carbon fuel ships power technology. Energy Reports, 2022, 8: 336-344.

[3] Zhe Wang, Yuemao Jiang, Fenghui Han, Shui Yu, Wenhua Li, Yulong Ji, Wenjian Cai. A thermodynamic configuration method of combined supercritical CO2 power system for marine engine waste heat recovery based on recuperative effects, Applied Thermal Engineering, 2022, 200: 117645.

[4] Fenghui Han, Yuxiang Liu, Muk Chen Ong, Guang Yin, Wenhua Li, Zhe Wang*. CFD investigation of blind-tee effects on flow mixing mechanism in subsea pipelines. Engineering Applications of Computational Fluid Mechanics, 2022, 16(1): 1395-1419.

[5] Zhe Wang, Huaiqiang Chen, Rui Xia, Fenghui Han, Yulong Ji, Wenjian Cai. Energy, exergy and economy (3E) investigation of a SOFC-GT-ORC waste heat recovery system for green power ships, Thermal Science and Engineering Progress, 2022, 32: 101342.

[6] Fenghui Han, Zhe Wang*, Yijun Mao, Jiajian Tan. A novel method for work capacity calculation of centrifugal compressor impellers in energy storage systems. Energy Reports, 2022, 8: 144-152.

[7] Yuemao Jiang, Zhe Wang*, Yue Ma, Yulong Ji, Wenjian Cai, Fenghui Han. Supercritical CO2 Power Cycle and Ejector Refrigeration Cycle for Marine Dual Fuel Engine Efficiency Enhancement by Utilizing Exhaust Gas and Charge Air Heat, Journal of Marine Science and Engineering, 2022, 10: 1404.

[8] Fenghui Han, Yuxiang Liu, Qingyuan Lan, Wenhua Li, Zhe Wang*. CFD investigation on secondary flow characteristics in double-curved subsea pipelines with different spatial structures. Journal of Marine Science and Engineering, 2022, 10(9): 1264.

[9] Zhe Wang, Dongxing Wang, Fan Zhao, Fenghui Han, Yulong Ji, Wenjian Cai. Hydrogen Refueling Stations and Carbon Emission Reduction of Coastal Expressways: A Deployment Model and Multi-Scenario Analysis, Journal of Marine Science and Engineering, 2022, 10(7): 992.

[10] 赖彦辰, 王哲*, 崔大安, 韩凤翚, 纪玉龙. 氨燃料管状SOFCs中热冲击影响与性能的模拟研究, 中国电机工程学报, 2022, 222155.

[11] 姜悦茂, 王哲*, 夏睿, 马悦, 韩凤翚, 纪玉龙. 主机废气余热驱动的分部加热式S-CO2动力循环设计与性能优化, 工程热物理学报, 2022, 43(9):2347-2356.

[12] 陈怀强, 王哲*, 夏睿, 马悦, 韩凤翚, 纪玉龙. 联合动力船舶废热回收系统设计及有效能分析, 船舶工程, 2022, 44(S1): 330-337.


2021

[1] Yantao Li, Zhiling Qiu, Daan Cui, Zhe Wang, Yulong Ji. Numerical investigation on the thermal-hydraulic performance of helical twine printed circuit heat exchanger. International Communications in Heat and Mass Transfer, 2021, 128: 105596.

[2] Zhe Wang, Fenghui Han, Yulong Ji, Wenhua Li. Redundant energy combination and recovery scheme for dual fuel carriers based on thermoelectric harvesting with a large temperature range, International Journal of Energy Research, 2021, 45(5): 7404-7420.

[3] Zhe Wang, Fenghui Han, Yuemao Jiang, Shui Yu, Yulong Ji, Wenjian Cai. Conceptual design and assessment of a novel energy management system for LNG fueled ships with air separation, Thermal Science and Engineering Progress, 2021, 26: 101111.

[4] Fenghui Han, Zhe Wang*, Yuemao Jiang, Yulong Ji, Wenhua Li. Energy assessment and external circulation design for LNG cold energy air separation process under four different pressure matching schemes, Case Studies in Thermal Engineering, 2021, 27: 101251.

[5] Zhe Wang, Fenghui Han, Yuxiang Liu, Wenhua Li. Evolution Process of Liquefied Natural Gas from Stratification to Rollover in Tanks of Coastal Engineering with the Influence of Baffle Structure, Journal of Marine Science and Engineering, 2021, 9(1): 95.

[6] 王哲, 韩凤翚, 李文华. 疫情常态化下新工科专业课程教学模式革新探讨. 当代教育实践与教学研究, 2021(22): 114-115.


2020

[1] Da Cui, Yulong Ji, Chang Chao, Zhe Wang. Influence of structure size on voltage uniformity of flat tubular segmented-in-series solid oxide fuel cell. Journal of Power Sources, 2020, 460: 228092.

[2] Zhe Wang, Fenghui Han, Yulong Ji, Wenhua Li. Analysis on feasibility of a novel cryogenic heat exchange network with liquid nitrogen regeneration process for onboard liquefied natural gas reliquefaction, Case Studies in Thermal Engineering, 2020, 22: 100760.

[3] Daan Cui, Yulong Ji, Cao Chang, Zhe Wang. Influence of fuel flow rate on the performance of micro tubular solid oxide fuel cell. International Journal of Hydrogen Energy, 2020, 45(24): 13459-13468.

[4] Zhe Wang, Fenghui Han, Yanzhong Li, Bengt Sunden. Numerical Investigation on Thermal Performance Design of Cryogenic Compact Heat Exchangers with Serrated-Fin Channels, Heat Transfer Engineering, 2020, 41(22): 1856-1868.

[5] 王哲, 韩凤翚, 纪玉龙, 李文华, 厉彦忠. 低温多股流板翅式换热器设计优化方法研究进展. 化工进展, 2020, 40(2): 621-634.

[6] 王哲, 韩凤翚, 李文华. 新工科背景下轮机工程专业基础课程教学改革探讨.教育教学论坛,2022, 562(11): 89-92.


2019

[1] Fenghui Han, Zhe Wang*, Yulong Ji, Wenhua Li, Bengt Sundén. Energy analysis and multi-objective optimization of waste heat and cold energy recovery process in LNG-fueled vessels based on a triple organic Rankine cycle, Energy Conversion and Management, 2019, 195: 561-572.

[2] Zhe Wang, Wenjian Cai, Fenghui Han, Yulong Ji, Wenhua Li, Bengt Sundén. Feasibility study on a novel heat exchanger network for cryogenic liquid regasification with cooling capacity recovery: Theoretical and experimental assessments. Energy, 2019, 181: 771-781.

[3] Zhe Wang, Wenjian Cai, Wei Hong, Suping Shen, Huizhu Yang, Fenghui Han. Multi-objective optimization design and performance evaluation of a novel multi-stream intermediate fluid vaporizer with cold energy recovery. Energy Conversion and Management, 2019, 195: 32-42.

[4] Fenghui Han, Zhe Wang*, Yijun Mao, Yiyun Zhang, Jiajian Tan. Large-scale flow measurements and analysis for radial inlets of industrial centrifugal compressors based on multi-hole probe system. International Journal of Precision Engineering and Manufacturing, 2019, 20(1): 79-92.



2018之前

[1] Wang Z, Sundén B, Li Y. A novel optimization framework for designing multi-stream compact heat exchangers and associated network[J]. Applied Thermal Engineering, 2017, 116: 110-125.

[2] Wang Z, Li Y. A combined method for surface selection and layer pattern optimization of a multistream plate-fin heat exchanger[J]. Applied Energy, 2016, 165: 815-827.

[3]  Wang Z, Li Y. Layer pattern thermal design and optimization for multistream plate-fin heat exchangers—A review[J]. Renewable and Sustainable Energy Reviews, 2016, 53: 500-514.

[4]  Wang Z, Li Y. Irreversibility analysis for optimization design of plate fin heat exchangers using a multi-objective cuckoo search algorithm[J]. Energy Conversion and Management, 2015, 101: 126-135.

[5]  Wang Z, Li Y, Zhao M. Experimental investigation on the thermal performance of multi-stream plate-fin heat exchanger based on genetic algorithm layer pattern design[J]. International Journal of Heat and Mass Transfer, 2015, 82: 510-520.


相关专利:

[1] 王哲, 韩凤翚, 纪玉龙, 李文华. 一种基于氨能源船舶的冷热电三联供复合系统及供电方法, 2023-8-15, 中国, ZL202010139304.1.

[2] 王哲, 马悦, 姜悦茂, 韩凤翚, 纪玉龙. 一种固体氧化物燃料电池与CO2超-跨临界动力循环的联合发电系统, 2023-9-8, 中国, ZL202211295982.2.

[3] 王哲, 夏睿, 于水, 韩凤翚, 纪玉龙. 一种用于低温液货产品生产储存及碳捕获的能量管理系统, 2023-11-17, 中国, ZL202211305707.4.

[4] 王哲, 王东兴, 赵帆, 韩凤翚, 纪玉龙. 一种氢能高速公路加氢站选址规划方法, 2024-1-19, 中国, ZL202211295950.2..

[5] 王哲, 陈怀强, 纪玉龙, 韩凤翚. 一种带有SOFC的双燃料船舶主机余热利用和LNG冷能回收系统, 2022-2-22, 中国, ZL202121263134.4.

[6] 王哲, 韩凤翚, 纪玉龙, 李文华. 一种液氢-燃油双燃料船氢存储再液化耦合燃油废气低温捕集系统, 2021-6-7, 中国, ZL202110633509.X.

[7] 王哲, 韩凤翚, 纪玉龙. 一种余热回收耦合太阳能水氢循环的船舶动力系统, 2021-3-26, 中国, ZL202021062238.4.

[8] 王哲, 韩凤翚, 纪玉龙. 一种基于多能互补的海岛水氢动力循环能源复合供应系统, 2021-3-26, 中国, ZL202021070648.3.

[9] 王哲, 韩凤翚, 纪玉龙, 李文华. 一种基于液氨载氢-制氢的能量储存及转换系统, 2020-10-27, 中国, ZL202020244337.8.

[10] 王哲, 韩凤翚, 纪玉龙, 李文华. 一种撬装式移动现场制氢一体机, 2020-11-24, 中国, ZL202020248676.3..

[11] 王哲, 唐浩博, 曹梦龙, 韩凤翚, 纪玉龙. 一种大型浮式储存和再气化装置冷能回收和再气化过程的全局热流拓扑建模与优化方法, 2023-12-01, 中国, ZL2023116421014.

[12] 王哲, 曹梦龙, 韩凤翚, 纪玉龙. 一种热-湿解耦的规整化建模方法, 2024-02-02, 中国, ZL2024101513431.

[13] 王哲, 刘涵, 韩凤翚, 纪玉龙. 一种面向海洋平台的制储氢与海水淡化的系统与方法, 2023-12-01, 中国, ZL 2023116421048.

[14] 韩凤翚, 王哲, 李文华, 陈海泉, 孙玉清. LNG储罐用BOG自循环再液化回收换热系统, 2019-11-12, 中国, ZL201822055893.6.

[15] 韩凤翚, 王哲, 李文华, 陈海泉, 孙玉清. 一种船用LNG气化及冷量回收换热系统, 2019-08-20, 中国, ZL201822055906.X.

[16] 韩凤翚, 王哲, 李文华, 陈海泉, 孙玉清. LNG动力船用燃料气化及冷热电三联供给系统, 2019-09-17, 中国, ZL201822055885.1.