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[1]shenshuanglin,卓小玲,zhengkeqing,wangshaorong.催化层网格密度对固体氧化物燃料电池模拟结果影响研究,2022,43(05):889-898
[2]shenshuanglin,张小坤,万兴文,zhengkeqing,lingyihan,wangshaorong.固体氧化物燃料电池温升模拟中入口异常高温度梯度研究,2022,Vol. 71, No. 16 (2022) , 164401
[3]shenshuanglin,张小坤,zhengkeqing,lingyihan,wangshaorong.Wall-function method used to simplify the solid oxide fuel cell model,2021,卷: 510
[4]Li, Li,Xu, Qiang,Wang, Hongkang,Bei, Shaoyi,shenshuanglin,He, Yun,Zheng, Yan,Wang, Xiaochun,zhengkeqing.Boost performance of porous electrode for microfluidic fuel cells: electrochemical modification or structure optimization?,2021
[5]shenshuanglin,王梓轩,刘宇,张琦,zhengkeqing.A new experimental method to estimate the leakage current in the solid oxide fuel cell with a mixed ionic and electronic conducting electrolyte,2018,卷: 406页: 88-95
[6]shenshuanglin,匡勇,zhengkeqing,gaoqingyu.A 2D model for solid oxide fuel cell with a mixed ionic and electronic conducting electrolyte,2017,315
[7]shenshuanglin,Guo, Liejin,Liu, Hongtan.A polarization model for solid oxide fuel cells with a Bi-layer electrolyte,2016,卷: 41期: 5页: 3646-3654
[8]shenshuanglin,倪萌.2D segment model for a solid oxide fuel cell with a mixed ionic and electronic conductor as electrolyte,2015,40;15;
[9]shenshuanglin,倪萌.2D Segment Model for a Bi-Layer Electrolyte Solid Oxide Fuel Cell,2015,162;3;
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