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冯琛琛
日期: 2021-12-02 信息来源: 点击数:

冯琛琛,讲师,中共党员,工学博士(西安交通大学)。主要从事建筑节能、新能源技术、多相流体流动等方面的教学和科研工作。主讲《空气调节工程》《新能源利用》等课程。指导学生参加大学生创新创业大赛、全国制冷空调行业大学生科技竞赛、全国BIM毕业设计大赛等学科竞赛。

教育背景

2017.09-2021.09,西安交通大学,动力工程及工程热物理,工学博士

2018.11-2019.11Trinity College Dublin(QS世界大学排名98(2023)),联合培养博士

2010.09-2013.06,西安交通大学,土木工程(供热、供燃气、通风及空调工程),工学硕士

2006.09-2010.07,西安交通大学,建筑环境与设备工程,工学学士

工作经历

2024.09 至今, 西安交通大学城市学院,讲师

2021.12-2024.08, 西安科技大学, 讲师(师资博士后)

2013.08-2017.06, 中联西北工程设计研究院, 暖通工程师

研究方向

新能源技术、多相流动

科研项目

[1] 2025-2027, 西安市自然科学基金项目(在研), 项目负责人

[2] 2025-2027, 咸阳市重点研发计划(在研), 项目负责人

[3] 2022-2024, 中国博士后科学基金面上项目(结题), 项目负责人

[4] 2023-2024, 陕西省自然科学基金项目(在研), 项目负责人

论文

[1] Chenchen Feng, Zefeng Jing, Ying Li, Yu Zhang, Yifan Liu. Hydrogen loss pathways in the process of underground hydrogen storage [J]. Renewable and Sustainable Energy Reviews, 2026, 232: 116835.

[2] Chenchen Feng, Zefeng Jing, YanQing Kang, Ying Gao, Xueyan Wang. Influences of operational parameters on the feasibility and performance of underground hydrogen storage: A review [J]. Journal of Energy Storage, 2026, 142: 119666.

[3] Chenchen Feng, Zefeng Jing, Xurui Ma, Huaijiu Wang. Effect of finite contact angle on the structure and shear behavior of two-dimensional wet foam [J]. International Journal of Multiphase Flow, 2021, 143: 103782.

[4] Chenchen Feng, Xurui Ma, Zefeng Jing. Dynamic proppant-carrying performance of VES-CO2 foam fracturing fluid in the pipeline and the fracture [J]. Journal of Petroleum Science and Engineering, 2022, 210: 110034.

[5] Chenchen Feng, Huaijiu Wang and Zefeng Jing. Investigation of heat extraction with flowing CO2 from hot dry rock by numerical study [J]. Renewable Energy, 2021, 169: 242-253.

[6] Long Zheng, Zefeng Jing, Chenchen Feng, Lichao Wang, Yujuan Zhou, Mingzheng Qiao, Zhen Liu. Underground hydrogen storage (UHS): Comparative analysis of key performance metrics [J]. Renewable and Sustainable Energy Reviews, 2026, 226: 116446.

[7] Yujuan Zhou, Zefeng Jing, Cheng Chen, Chenchen Feng, Mingzheng Qiao. Numerical study on the dynamics and splitting behavior of bubble flow in the channel with an obstacle [J]. Chemical Engineering Science, 2026, 325: 123436.

[8] Zefeng Jing, Cheng Chen, Chenchen Feng, Xupeng Zou, Mingzheng Qiao. Deformation of bubbles in an inclined and liquid-filled circular tube [J]. Chemical Engineering Science, 2025, 318: 122154.

[9] Mingzheng Qiao, Yujuan Zhou, Zefeng Jing, Chenchen Feng, Long Zheng, Lichao Wang, Ruibin Xue. Heat extraction analysis of an innovative single-well open-loop geothermal system using scCO2 [J]. Energy, 2025, 328: 136502.

[10] Zefeng Jing, Xupeng Zou, Cheng Chen, Mingzheng Qiao, Shuzhong Wang, Chenchen Feng. Preparation and electrochemical properties of N, S co-doped paper fiber carbon foam (PFCF) electrode materials for supercapacitors [J]. Journal of Energy Storage, 2025, 112: 115538.

[11] Zefeng Jing, Chenchen Feng. Alternating advancing behavior of two-phase wet foam fluid in heterogeneous porous media [J]. Chemical Engineering Science, 2025, 308: 121405.

[12] Zefeng Jing, Chenchen Feng, John Ryan-Purcell, Stefan Hutzler. Equilibrium shape of a bubble in a liquid-filled horizontal capillary [J]. International Journal of Multiphase Flow, 2024, 172: 104729.

[13] Mingzheng Qiao, Zefeng Jing, Chenchen Feng, Minghui Li, Cheng Chen, Xupeng Zou, Yujuan Zhou. Review on heat extraction systems of hot dry rock: Classifications, benefits, limitations, research status and future prospects [J]. Renewable and Sustainable Energy Reviews, 2024, 196: 114364.

[14] Zefeng Jing and Chenchen Feng. Effect of polydispersity on the structural characteristics of two-phase foam [J]. International Journal of Multiphase Flow, 2023, 164: 104465.

[15] Cheng Chen., Zefeng Jing, Chenchen Feng, Xupeng Zou, et.al. Two-phase flow and morphology of the gas-liquid interface for bubbles or droplets in different microchannels [J]. Physics of Fluids, 2023, 35:091302.

[16] Xurui Ma, Zefeng Jing, Chenchen Feng, Mingzheng Qiao and Donghai Xu. Research and development progress of porous foam-based electrodes in advanced electrochemical energy storage devices: a critical review [J]. Renewable and Sustainable Energy Reviews, 2023, 173: 113111.

[17] Zefeng Jing, Chenchen Feng, Xurui Ma, Donghai Xu, Shuzhong Wang. Mechanical evolution of bubble structure and interactive migration behaviors of two particles in flowing wet foam [J]. Journal of Rheology, 2022, 66(2): 349-364.

[18] Zefeng Jing, Chenchen Feng. Influence mechanisms of several parameters on the interaction between flowing wet foam and settling particle [J]. International Journal of Multiphase Flow, 2022, 150: 104015.

[19] Zefeng Jing, Chenchen Feng. Variation of the lift force components of a settling particle caused by structural evolution of flowing foam [J]. Journal of Non-Newtonian Fluid Mechanics, 2022, 305: 104819.

[20] Zefeng Jing, Chenchen Feng, Xurui Ma, Mingzheng Qiao, Huaijiu Wang and Shuzhong Wang. Non-uniform heat transfer behavior of wet foam fluid in a narrow fracture channel [J]. Experimental Thermal and Fluid Science, 2022, 134: 110614.

[21] Zefeng Jing, Chenchen Feng, Simon Cox and Stefan Hutzler. Variation of average coordination number with liquid fraction for two-dimensional foams with finite contact angle [J]. Philosophical Magazine, 2021, 101(9): 1048-1060.

[22] Zefeng Jing, Huaijiu Wang, Chenchen Feng, Shuzhong Wang. Numerical study on the heat characteristics of a novel artificial seepage thermal storage based on the successive four seasons [J]. Renewable Energy, 2020, 160: 1185-1193.

[23] Zefeng Jing, Chenchen Feng, Shuzhong Wang, Donghai Xu. Effects of temperature and pressure on rheology and heat transfer among bubbles in waterless CO2-based foam fracturing fluid [J]. Journal of Natural Gas Science and Engineering, 2019, 63: 18-26.

[24] Zefeng Jing, Chenchen Feng, Shuzhong Wang, Donghai Xu. Stress and bubble pressure response of wet foam to continuous and oscillatory sinusoidal shear [J]. European Physical Journal E, 2018, 41:149.

[25] Zefeng Jing, Chenchen Feng, Shuzhong Wang, Donghai Xu. Origin of accelerated and hindered sedimentation of two particles in wet foam [J]. European Physical Journal E, 2018, 41:33.

[26] Zefeng Jing, Chenchen Feng, Shuzhong Wang, Donghai Xu, Guixi Xu. Effect of foam quality on flow behavior of liquid CO2-based foam fracturing fluid stabilized by hydrofluoroether [J]. Journal of Petroleum Science and Engineering, 2017, 159: 710-716.

 

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