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孔为 教授

能源与动力学院

通讯地址:江苏省镇江市梦溪路2号

个人邮箱:wkongsofc@126.com

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  • 个人简介

  • 研究方向

  • 科研团队

  • 科研项目

  • 获奖动态

  • 教学随笔

  • 教育经历

  • 课程教学

  • 论文著作

  • 科研论文

  • 科研横向项目

  • 科研纵向项目

  • 科研专利

  • 科研动物专利

  • 个人简介:

    姓名:孔为

    学位:博士

    导师:硕导

    职称:教授

    Emailwkongsofc@126.com

    QQ362376855


    研究生招生专业:

    学硕:船舶与海洋工程(轮机工程)、动力工程及工程热物理

    专硕:能源动力

      

    主持/参研科研项目:

    2024.9-2027.8 镇江市产业前瞻项目

    2023.1-2024.12 科技部高端外国专家项目

    2018.7-2022.8:江苏科技大学青年学者

    2015.01–2017.12 :国家自然科学青年基金

    2016.07–2016.12 :磁控溅射阴极磁场设计(横向课题)

    2016.03–2016.12 :低成本-小型化-防腐蚀的第二代太阳能制氢-燃料电池供电系统样机研发

    2015.01–2015.12 :太阳能制氢-金属贮氢-燃料电池供电集成系统样机研发

    2013.08–2015.12 :江苏省高校基金

    2011.11–2014.12:江苏科技大学启动经费

      

    代表性论文:

    Wei Kong *, Chensheng Zhang, Zhaoxiang JiInvestigation on the cooling effect of a novel composite channel cold platefor lithium-ion battery, Journal of Energy Storage 86 (2024) 111183

    Wei Kong,*, Kejun Zhu, Xipo Lu, Jingtao Jin, Meng Ni*. Enhancement of lithium-ion battery thermal management with the divergent-shaped channel cold plate [J]. Journal of Energy Storage, 2021, 42.

    Wei Kong,*, Zhen Han, Siyu Lu, Meng Ni,*. A simple but effective design to enhance the performance and durability of direct carbon solid oxide fuel cells [J]. Applied Energy, 2021, 287.

    Wei Kong*, Zhen Han, Siyu Lu, Meng Ni*. A novel interconnector design of SOFC [J]. International Journal of Hydrogen Energy, 2020, 45(39): 20329-38.

    Wei Kong, Wenxuan Zhang, Hongyan Huang, Yukun Zhang, Jie Wu, Yu Xu. Analysis of micro-tubular SOFC stability under ambient and operating temperatures [J]. Journal of Materials Science & Technology, 2018, 34(8): 1436-40.

    W. Kong, W. Zhang, S. Zhang, Q. Zhang, S. Su, Residual stress analysis of a micro-tubular solid oxide fuel cell, International Journal of Hydrogen Energy, 41 (2016) 16173-16180.

    S. Su, Q. Zhang, X. Gao, V. Periasamy, W. Kong*, Effects of changes in solid oxide fuel cell electrode thickness on ohmic and concentration polarizations, International Journal of Hydrogen Energy, 41 (2016) 16181-16190.(通讯作者)

    W. Kong, Q. Zhang, X. Xu, D. Chen, A Simple Expression for the Tortuosity of Gas Transport Paths in Solid Oxide Fuel Cells’ Porous Electrodes, Energies, 8 (2015) 13953-13959.

    S. Su, H. He, D. Chen*, W. Zhu, Y. Wu, W. Kong*, B. Wang, L. Lu, Flow distribution analyzing for the solid oxide fuel cell short stacks with rectangular and discrete cylindrical rib configurations, International Journal of Hydrogen Energy, 40 (2015) 577-592. (通讯作者)

    W. Kong, Q. Zhang, X. Gao, J. Zhang, D. Chen, S. Su, A Method for Predicting the Tortuosity of Pore Phase in Solid Oxide Fuel Cells Electrode, INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 10 (2015) 5800-5811.

    W. Kong, X. Gao, S. Liu, S. Su, D. Chen, Optimization of the interconnect ribs for a cathode-supported solid oxide fuel cell, Energies, 7 (2014) 295-313.

    W. Kong, H. Zhu, Z. Fei, Z. Lin, A modified dusty gas model in the form of a Fick's model for the prediction of multicomponent mass transport in a solid oxide fuel cell anode, Journal of Power Sources, 206 (2012) 171-178.

    W. Kong, J. Li, S. Liu, Z. Lin, The influence of interconnect ribs on the performance of planar solid oxide fuel cell and formulae for optimal rib sizes, Journal of Power Sources, 204 (2012) 106-115.

    J. Li, W. Kong, Z. Lin, Theoretical studies on the electrochemical and mechanical properties and microstructure optimization of micro-tubular solid oxide fuel cells, Journal of Power Sources, 232 (2013) 106-122.

    D. Chen, L. Lu, J. Li, Z. Yu, W. Kong, H. Zhu, Percolation micro-model to predict the effective properties of the composite electrode with poly-dispersed particle sizes, Journal of Power Sources, 196 (2011) 3178-3185.

    D. Chen, W. Bi, W. Kong, Z. Lin, Combined micro-scale and macro-scale modeling of the composite electrode of a solid oxide fuel cell, Journal of Power Sources, 195 (2010) 6598-6610.

    S. Liu, W. Kong, Z. Lin, Three-dimensional modeling of planar solid oxide fuel cells and the rib design optimization, Journal of Power Sources, 194 (2009) 854-863.

      

    代表性专利:

    一种甲醇固体氧化物燃料电池及含该燃料电池的发电系统

    固体氧化物燃料电池阴极接触电阻数值模拟方法

    一种甲醇固体氧化物燃料电池及含该燃料电池的发电系统

    一种利用太阳能的甲醇重整制氢系统

    一种甲醇重整固体氧化物燃料电池系统及工作方法

    一种利用地下水的储能电池集装箱温度控制系统

    一种基于液体介质的新能源汽车锂电池热管理系统

    光伏电池以及淡化海水的耦合系统、收集系统及工作方法

    一种新能源汽车电池动力系统的热管理装置

    一种电气共产固体氧化物燃料电池堆

    基于燃料电池余热的生物质炭化装置及工作方法

    一种直接碳固体氧化物燃料电池电堆及其发电装置

    一种分段串联管式固体氧化物燃料电池及其制备方法

    一种质子交换膜燃料电池的自加热装置及其自加热方法

    利用残余燃料的直接火焰燃料电池发电装置及工作方法

    基于光伏与固体氧化物燃料电池的燃料制备系统及方法

    一种利用燃料电池余热的热解回收装置及工作方法

    一种平板式固体氧化物燃料电池

    一种固体氧化物电解池产氢气的热回收系统

    一种浸渍法制备分段串联管式固体氧化物燃料电池的方法

    固体氧化物燃料电池静电纺丝电极纳米颗粒逾渗几率计算方法

    固体氧化物燃料电池电极气体传输曲率因子预测方法

    平板式固体氧化物燃料电池电堆装置

      


  • ü固体氧化物燃料电池模拟

    ü电解水制氢技术

    ü锂电池热管理

    ü连接体涂层


    • 科研项目

      [1] 2015.012017.12 :固体氧化物燃料电池电极无规则微结构对气体传质及电池性能作用机理的分形研究,国家自然科学青年基金(21406095) 25万,主持

      [2] 2016.072016.12 磁控溅射阴极磁场设计(横向课题),40万,第二负责人

      [3] 2016.032016.12 :低成本-小型化-防腐蚀的第二代太阳能制氢-燃料电池供电系统样机,海洋装备研究院资助项目(HZ2016016) 53万,第二负责人

      [4] 2015.092017.12 南京市“321人才引进计划”,100万,第二负责人

      [5] 2015.012015.12 :太阳能制氢-金属贮氢-燃料电池供电集成系统样机研发,海洋装备研究院资助项目(HZ2015003) 80万,第二负责人

      [6] 2013.082015.12 :研究电极无规则微结构对其宏观有效性质的作用机理,江苏省高校自然科学(13KJB480003) 主持

      [7] 2013.012014.12固体氧化物燃料电池堆优化设计,江苏科技大学能源与动力工程学院青年教师科研基金项目,主持

      [8] 2011.112013.05 :多套独立阴极保护系统间干扰模拟研究与开发,中油管道科技研究中心资助,(GDGS-KJZX-2011-JS-325) 40万,第二负责人

      [9] 2011.112014.12固体氧化物燃料电池理论分析与优化设计,江苏科技大学

      科技项目,(35321101) 6万,主持


    • 专利成果

      [1] 孔为,林子敬,李明,谢斌,王海千,姜友松,长江亦周,磁场发生装置、磁控管阴极及溅射装置,PCT/JP2010/065749,国际发明专利(中国,日本,香港已授权)

      [2] 孔为,张强,高祥,陈代芬,苏石川,平板式固体氧化物燃料电池电堆装置,发明专利,申请号:201410449780.8,申请日:2014-09-04,已授权

      [3] 孔为,张强,高祥,李渊,陈代芬,固体氧化物燃料电池电极气体传输曲率因子预测方法,申请号:201410419212.3,申请日:2014-08-22

      [4] 孔为,张强,许秀文,陈代芬,苏石川,固体氧化物燃料电池静电纺丝电极纳米颗粒逾渗几率计算方法,申请号:201510502608.9,申请日:2015-08-14

      [5] 孔为,高祥,张强,陈代芬,苏石川,一种平板式固体氧化物燃料电池,申请号:201510475325.X,申请日:2015-08-06

      [6] 孔为,张文轩,吴杰,张强,一种燃料电池尾气回收利用装置,申请号: 201610861120.8,申请日:2016-09-30

      [7] 杨兴林,吴杰,张文轩,张强,孔为,一种利用残余燃料自加热的固体氧化物燃料电池发电系统,申请号:201610867564.4,申请日:2016-09-29


    • 论文著作

      [1] W. Kong, W. Zhang, S. Zhang, Q. Zhang, S. Su, Residual stress analysis of a micro-tubular solid oxide fuel cell, International Journal of Hydrogen Energy, 41 (2016) 16173-16180.

      [2] S. Su, Q. Zhang, X. Gao, V. Periasamy, W. Kong*, Effects of changes in solid oxide fuel cell electrode thickness on ohmic and concentration polarizations, International Journal of Hydrogen Energy, 41 (2016) 16181-16190.(通讯作者)

      [3] W. Kong, Q. Zhang, X. Xu, D. Chen, A Simple Expression for the Tortuosity of Gas Transport Paths in Solid Oxide Fuel Cells’ Porous Electrodes, Energies, 8 (2015) 13953-13959.

      [4] S. Su, H. He, D. Chen*, W. Zhu, Y. Wu, W. Kong*, B. Wang, L. Lu, Flow distribution analyzing for the solid oxide fuel cell short stacks with rectangular and discrete cylindrical rib configurations, International Journal of Hydrogen Energy, 40 (2015) 577-592. (通讯作者)

      [5] W. Kong, Q. Zhang, X. Gao, J. Zhang, D. Chen, S. Su, A Method for Predicting the Tortuosity of Pore Phase in Solid Oxide Fuel Cells Electrode, INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 10 (2015) 5800-5811.

      [6] W. Kong, X. Gao, S. Liu, S. Su, D. Chen, Optimization of the interconnect ribs for a cathode-supported solid oxide fuel cell, Energies, 7 (2014) 295-313.

      [7] W. Kong, H. Zhu, Z. Fei, Z. Lin, A modified dusty gas model in the form of a Fick's model for the prediction of multicomponent mass transport in a solid oxide fuel cell anode, Journal of Power Sources, 206 (2012) 171-178.

      [8] W. Kong, J. Li, S. Liu, Z. Lin, The influence of interconnect ribs on the performance of planar solid oxide fuel cell and formulae for optimal rib sizes, Journal of Power Sources, 204 (2012) 106-115.

      [9] J. Li, W. Kong, Z. Lin, Theoretical studies on the electrochemical and mechanical properties and microstructure optimization of micro-tubular solid oxide fuel cells, Journal of Power Sources, 232 (2013) 106-122.

      [10] D. Chen, L. Lu, J. Li, Z. Yu, W. Kong, H. Zhu, Percolation micro-model to predict the effective properties of the composite electrode with poly-dispersed particle sizes, Journal of Power Sources, 196 (2011) 3178-3185.

      [11] D. Chen, W. Kong, Z. Lin, Equivalent circuit model for the determination of the inter-layer thickness of SOFC composite electrode,  American Institute of Physics Conference Series, 2011, pp. 1051-1052.

      [12] D. Chen, W. Bi, W. Kong, Z. Lin, Combined micro-scale and macro-scale modeling of the composite electrode of a solid oxide fuel cell, Journal of Power Sources, 195 (2010) 6598-6610.

      [13] S. Liu, W. Kong, Z. Lin, Three-dimensional modeling of planar solid oxide fuel cells and the rib design optimization, Journal of Power Sources, 194 (2009) 854-863.

      [14] S. Liu, W. Kong, Z. Lin, A microscale modeling tool for the design and optimization of solid oxide fuel cells, Energies, 2 (2009) 427-444.

      教材

       [1]. 苏石川,孔为,陈代芬编著《热能工程与先进能源技术仿真与设计》,化学工业出版社,2015ISBN9787122219428




    • 科研项目

      [1] 2015.012017.12 :固体氧化物燃料电池电极无规则微结构对气体传质及电池性能作用机理的分形研究,国家自然科学青年基金(21406095) 25万,主持

      [2] 2016.072016.12 磁控溅射阴极磁场设计(横向课题),40万,第二负责人

      [3] 2016.032016.12 :低成本-小型化-防腐蚀的第二代太阳能制氢-燃料电池供电系统样机,海洋装备研究院资助项目(HZ2016016) 53万,第二负责人

      [4] 2015.092017.12 南京市“321人才引进计划”,100万,第二负责人

      [5] 2015.012015.12 :太阳能制氢-金属贮氢-燃料电池供电集成系统样机研发,海洋装备研究院资助项目(HZ2015003) 80万,第二负责人

      [6] 2013.082015.12 :研究电极无规则微结构对其宏观有效性质的作用机理,江苏省高校自然科学(13KJB480003) 主持

      [7] 2013.012014.12固体氧化物燃料电池堆优化设计,江苏科技大学能源与动力工程学院青年教师科研基金项目,主持

      [8] 2011.112013.05 :多套独立阴极保护系统间干扰模拟研究与开发,中油管道科技研究中心资助,(GDGS-KJZX-2011-JS-325) 40万,第二负责人

      [9] 2011.112014.12固体氧化物燃料电池理论分析与优化设计,江苏科技大学

      科技项目,(35321101) 6万,主持


    • 专利成果

      [1] 孔为,林子敬,李明,谢斌,王海千,姜友松,长江亦周,磁场发生装置、磁控管阴极及溅射装置,PCT/JP2010/065749,国际发明专利(中国,日本,香港已授权)

      [2] 孔为,张强,高祥,陈代芬,苏石川,平板式固体氧化物燃料电池电堆装置,发明专利,申请号:201410449780.8,申请日:2014-09-04,已授权

      [3] 孔为,张强,高祥,李渊,陈代芬,固体氧化物燃料电池电极气体传输曲率因子预测方法,申请号:201410419212.3,申请日:2014-08-22

      [4] 孔为,张强,许秀文,陈代芬,苏石川,固体氧化物燃料电池静电纺丝电极纳米颗粒逾渗几率计算方法,申请号:201510502608.9,申请日:2015-08-14

      [5] 孔为,高祥,张强,陈代芬,苏石川,一种平板式固体氧化物燃料电池,申请号:201510475325.X,申请日:2015-08-06

      [6] 孔为,张文轩,吴杰,张强,一种燃料电池尾气回收利用装置,申请号: 201610861120.8,申请日:2016-09-30

      [7] 杨兴林,吴杰,张文轩,张强,孔为,一种利用残余燃料自加热的固体氧化物燃料电池发电系统,申请号:201610867564.4,申请日:2016-09-29


    • 论文著作

      [1] W. Kong, W. Zhang, S. Zhang, Q. Zhang, S. Su, Residual stress analysis of a micro-tubular solid oxide fuel cell, International Journal of Hydrogen Energy, 41 (2016) 16173-16180.

      [2] S. Su, Q. Zhang, X. Gao, V. Periasamy, W. Kong*, Effects of changes in solid oxide fuel cell electrode thickness on ohmic and concentration polarizations, International Journal of Hydrogen Energy, 41 (2016) 16181-16190.(通讯作者)

      [3] W. Kong, Q. Zhang, X. Xu, D. Chen, A Simple Expression for the Tortuosity of Gas Transport Paths in Solid Oxide Fuel Cells’ Porous Electrodes, Energies, 8 (2015) 13953-13959.

      [4] S. Su, H. He, D. Chen*, W. Zhu, Y. Wu, W. Kong*, B. Wang, L. Lu, Flow distribution analyzing for the solid oxide fuel cell short stacks with rectangular and discrete cylindrical rib configurations, International Journal of Hydrogen Energy, 40 (2015) 577-592. (通讯作者)

      [5] W. Kong, Q. Zhang, X. Gao, J. Zhang, D. Chen, S. Su, A Method for Predicting the Tortuosity of Pore Phase in Solid Oxide Fuel Cells Electrode, INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 10 (2015) 5800-5811.

      [6] W. Kong, X. Gao, S. Liu, S. Su, D. Chen, Optimization of the interconnect ribs for a cathode-supported solid oxide fuel cell, Energies, 7 (2014) 295-313.

      [7] W. Kong, H. Zhu, Z. Fei, Z. Lin, A modified dusty gas model in the form of a Fick's model for the prediction of multicomponent mass transport in a solid oxide fuel cell anode, Journal of Power Sources, 206 (2012) 171-178.

      [8] W. Kong, J. Li, S. Liu, Z. Lin, The influence of interconnect ribs on the performance of planar solid oxide fuel cell and formulae for optimal rib sizes, Journal of Power Sources, 204 (2012) 106-115.

      [9] J. Li, W. Kong, Z. Lin, Theoretical studies on the electrochemical and mechanical properties and microstructure optimization of micro-tubular solid oxide fuel cells, Journal of Power Sources, 232 (2013) 106-122.

      [10] D. Chen, L. Lu, J. Li, Z. Yu, W. Kong, H. Zhu, Percolation micro-model to predict the effective properties of the composite electrode with poly-dispersed particle sizes, Journal of Power Sources, 196 (2011) 3178-3185.

      [11] D. Chen, W. Kong, Z. Lin, Equivalent circuit model for the determination of the inter-layer thickness of SOFC composite electrode,  American Institute of Physics Conference Series, 2011, pp. 1051-1052.

      [12] D. Chen, W. Bi, W. Kong, Z. Lin, Combined micro-scale and macro-scale modeling of the composite electrode of a solid oxide fuel cell, Journal of Power Sources, 195 (2010) 6598-6610.

      [13] S. Liu, W. Kong, Z. Lin, Three-dimensional modeling of planar solid oxide fuel cells and the rib design optimization, Journal of Power Sources, 194 (2009) 854-863.

      [14] S. Liu, W. Kong, Z. Lin, A microscale modeling tool for the design and optimization of solid oxide fuel cells, Energies, 2 (2009) 427-444.

      教材

       [1]. 苏石川,孔为,陈代芬编著《热能工程与先进能源技术仿真与设计》,化学工业出版社,2015ISBN9787122219428




    • 科研项目

      [1] 2015.012017.12 :固体氧化物燃料电池电极无规则微结构对气体传质及电池性能作用机理的分形研究,国家自然科学青年基金(21406095) 25万,主持

      [2] 2016.072016.12 磁控溅射阴极磁场设计(横向课题),40万,第二负责人

      [3] 2016.032016.12 :低成本-小型化-防腐蚀的第二代太阳能制氢-燃料电池供电系统样机,海洋装备研究院资助项目(HZ2016016) 53万,第二负责人

      [4] 2015.092017.12 南京市“321人才引进计划”,100万,第二负责人

      [5] 2015.012015.12 :太阳能制氢-金属贮氢-燃料电池供电集成系统样机研发,海洋装备研究院资助项目(HZ2015003) 80万,第二负责人

      [6] 2013.082015.12 :研究电极无规则微结构对其宏观有效性质的作用机理,江苏省高校自然科学(13KJB480003) 主持

      [7] 2013.012014.12固体氧化物燃料电池堆优化设计,江苏科技大学能源与动力工程学院青年教师科研基金项目,主持

      [8] 2011.112013.05 :多套独立阴极保护系统间干扰模拟研究与开发,中油管道科技研究中心资助,(GDGS-KJZX-2011-JS-325) 40万,第二负责人

      [9] 2011.112014.12固体氧化物燃料电池理论分析与优化设计,江苏科技大学

      科技项目,(35321101) 6万,主持


    • 专利成果

      [1] 孔为,林子敬,李明,谢斌,王海千,姜友松,长江亦周,磁场发生装置、磁控管阴极及溅射装置,PCT/JP2010/065749,国际发明专利(中国,日本,香港已授权)

      [2] 孔为,张强,高祥,陈代芬,苏石川,平板式固体氧化物燃料电池电堆装置,发明专利,申请号:201410449780.8,申请日:2014-09-04,已授权

      [3] 孔为,张强,高祥,李渊,陈代芬,固体氧化物燃料电池电极气体传输曲率因子预测方法,申请号:201410419212.3,申请日:2014-08-22

      [4] 孔为,张强,许秀文,陈代芬,苏石川,固体氧化物燃料电池静电纺丝电极纳米颗粒逾渗几率计算方法,申请号:201510502608.9,申请日:2015-08-14

      [5] 孔为,高祥,张强,陈代芬,苏石川,一种平板式固体氧化物燃料电池,申请号:201510475325.X,申请日:2015-08-06

      [6] 孔为,张文轩,吴杰,张强,一种燃料电池尾气回收利用装置,申请号: 201610861120.8,申请日:2016-09-30

      [7] 杨兴林,吴杰,张文轩,张强,孔为,一种利用残余燃料自加热的固体氧化物燃料电池发电系统,申请号:201610867564.4,申请日:2016-09-29


    • 获奖动态

      研究生指导

      目前指导研究生4人,毕业1人。高祥2016年毕业,张强研三,张文轩和吴杰研二,张梦彤研一,其中与苏石川教授共同指导研究生3人。

      与苏教授共同指导研究生高祥获得了研究生校优秀毕业论文,发表SCI论文3篇,申请发明专利1

      与苏教授共同指导的研究生张强获得了研究生国家奖学金发表SCI论文4篇,申请发明专利3

      与苏教授共同指导的研究生张文轩,发表SCI论文1篇,申请发明专利1

      吴杰研二,申请发明专利1

      本科毕业设计指导

      2013年指导的高祥获得优秀毕业论文

      2014年指导的张强,唐维来获得校团队优秀毕业论文

      2015年指导的王克海和肖艳艳获得校优秀毕业论文

      2016年指导的李英旭获得优秀毕业论文

      2016年指导的李英旭、李明翰、高赟、孙文强获得校团队优秀毕业论文


    • 论文著作

      [1] W. Kong, W. Zhang, S. Zhang, Q. Zhang, S. Su, Residual stress analysis of a micro-tubular solid oxide fuel cell, International Journal of Hydrogen Energy, 41 (2016) 16173-16180.

      [2] S. Su, Q. Zhang, X. Gao, V. Periasamy, W. Kong*, Effects of changes in solid oxide fuel cell electrode thickness on ohmic and concentration polarizations, International Journal of Hydrogen Energy, 41 (2016) 16181-16190.(通讯作者)

      [3] W. Kong, Q. Zhang, X. Xu, D. Chen, A Simple Expression for the Tortuosity of Gas Transport Paths in Solid Oxide Fuel Cells’ Porous Electrodes, Energies, 8 (2015) 13953-13959.

      [4] S. Su, H. He, D. Chen*, W. Zhu, Y. Wu, W. Kong*, B. Wang, L. Lu, Flow distribution analyzing for the solid oxide fuel cell short stacks with rectangular and discrete cylindrical rib configurations, International Journal of Hydrogen Energy, 40 (2015) 577-592. (通讯作者)

      [5] W. Kong, Q. Zhang, X. Gao, J. Zhang, D. Chen, S. Su, A Method for Predicting the Tortuosity of Pore Phase in Solid Oxide Fuel Cells Electrode, INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 10 (2015) 5800-5811.

      [6] W. Kong, X. Gao, S. Liu, S. Su, D. Chen, Optimization of the interconnect ribs for a cathode-supported solid oxide fuel cell, Energies, 7 (2014) 295-313.

      [7] W. Kong, H. Zhu, Z. Fei, Z. Lin, A modified dusty gas model in the form of a Fick's model for the prediction of multicomponent mass transport in a solid oxide fuel cell anode, Journal of Power Sources, 206 (2012) 171-178.

      [8] W. Kong, J. Li, S. Liu, Z. Lin, The influence of interconnect ribs on the performance of planar solid oxide fuel cell and formulae for optimal rib sizes, Journal of Power Sources, 204 (2012) 106-115.

      [9] J. Li, W. Kong, Z. Lin, Theoretical studies on the electrochemical and mechanical properties and microstructure optimization of micro-tubular solid oxide fuel cells, Journal of Power Sources, 232 (2013) 106-122.

      [10] D. Chen, L. Lu, J. Li, Z. Yu, W. Kong, H. Zhu, Percolation micro-model to predict the effective properties of the composite electrode with poly-dispersed particle sizes, Journal of Power Sources, 196 (2011) 3178-3185.

      [11] D. Chen, W. Kong, Z. Lin, Equivalent circuit model for the determination of the inter-layer thickness of SOFC composite electrode,  American Institute of Physics Conference Series, 2011, pp. 1051-1052.

      [12] D. Chen, W. Bi, W. Kong, Z. Lin, Combined micro-scale and macro-scale modeling of the composite electrode of a solid oxide fuel cell, Journal of Power Sources, 195 (2010) 6598-6610.

      [13] S. Liu, W. Kong, Z. Lin, Three-dimensional modeling of planar solid oxide fuel cells and the rib design optimization, Journal of Power Sources, 194 (2009) 854-863.

      [14] S. Liu, W. Kong, Z. Lin, A microscale modeling tool for the design and optimization of solid oxide fuel cells, Energies, 2 (2009) 427-444.

      教材

       [1]. 苏石川,孔为,陈代芬编著《热能工程与先进能源技术仿真与设计》,化学工业出版社,2015ISBN9787122219428