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西北工业大学动力与能源学院导师教师师资介绍简介-白晓辉

本站小编 Free考研考试/2021-06-29


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基本信息 The basic information
白晓辉

动力与能源学院


博士研究生毕业

工学博士


副教授







xiaohui.bai.19@nwpu.edu.cn




工作经历 Work Experience
2019年5月至今,西北工业大学,动力与能源学院,副教授,硕士生导师
2019年7月至今,西北工业大学,动力与能源学院,F1辅导员




教育经历 Education Experience
2016年4月-2019年3月,日本静冈大学,获工学博士学位




教育教学 Education And Teaching
本科生课程《多孔介质传热传质》

研究生英文课程《Numerical heat transfer and fluid flow》
研究生英文课程《Advanced heat transfer》




招生信息 Admission Information
本人招收工程热物理、热能工程专业的硕士研究生,研究方向为多孔介质传热传质,包括复杂结构的流动特性及强化传热技术、航空发动机热端部件高效冷却技术。
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荣誉获奖 Awards Information
2020年西北工业大学暑期社会实践优秀指导教师

指导学生获“赛迪环保杯”第十三届全国大学生节能减排社会实践与科技竞赛一等奖

指导学生获西北工业大学第十八届“三航杯”大学生课外学术科技作品竞赛二等奖
指导学生获第六届中国国际“互联网+”大学生创新创业比赛西北工业大学校赛二等奖

第十八届全国计算流体力学会议青年优秀论文奖,2019年6月, 西安
2019年度军训“优秀政工干部”





科学研究 Scientific Research
研究领域
1. 多孔介质传热传质基础理论研究
2. 复杂结构流动特性及强化传热研究
3. 新型高效紧凑型换热器设计

4. 流体与传热数值仿真方法
承担项目
1. 日本丰田汽车公司合作项目“三次元乱流(機械的混合)解析を用いた革新的放熱構造の検討“,2017.5-2019.5 主要完成人
2. 国家自然科学基金青年项目,2021.1-2023.12,项目负责人




学术成果 Academic Achievements
期刊论文

1. X Bai, Z Zheng, C Liu, A Nakayama. Metal frame structures with controlled anisotropic thermal conductivity. International Journal of Heat and Mass Transfer 148, 2020, 119064
2. X Bai, Z Zheng, A Nakayama. Heat transfer performance analysis on lattice core sandwich panel structures. International Journal of Heat and Mass Transfer 143, 2019, 118525
3. X Bai, A Nakayama. A local thermal non-equilibrium integral analysis for forced convective thermal boundary development in a channel filled with a fluid-saturated porous medium. International Journal of Heat and Mass Transfer 142, 2019, 118446
4. X Bai, A Nakayama. Quick estimate of effective thermal conductivity for fluid-saturated metal frame and prismatic cellular structures. Applied Thermal Engineering 160, 2019, 114011
5. X Bai, A Nakayama. An analytical and numerical estimation of the effective thermal conductivity of complex metal frame core structures.Journal of Heat Transfer 141 (2) 2019
6. W Zhang, X Bai, M Bao, A Nakayama. Heat transfer performance evaluation based on local thermal non-equilibrium for air forced convection in channels filled with metal foam and spherical particles. Applied Thermal Engineering 145, 2018, 735-742
7. X Bai, A Nakayama. A numerical investigation of charged ion transport in electrodialyzers with spacers. Desalination 445, 2018, 29-39

8. X Bai, F Kuwahara, M Mobedi, A Nakayama. Forced convective heat transfer in a channel filled with a functionally graded metal foam matrix. Journal of Heat Transfer 140 (11) 2018

9. X Bai, Y Sano, S Amagai, A Nakayama. An experimental study on the performance of an electro-dialysis desalination using hollow cubic assembled porous spacers fabricated by a 3D printer. Desalination 445, 2018, 6-14

10. Y Sano, X Bai, S Amagai, A Nakayama. Effect of a porous spacer on the limiting current density in an electro-dialysis desalination. Desalination 444, 2018, 151-161

11. X Bai, C Hasan, M Mobedi, A Nakayama. A general expression for the stagnant thermal conductivity of stochastic and periodic structures. Journal of Heat Transfer 140 (5) 2018
12. A Nakayama, Y Sano, X Bai, K Tado. A boundary layer analysis for determination of the limiting current density in an electrodialysis desalination. Desalination 404, 2017, 41-49

13. K Tado, Y Sano, X Bai, A Nakayama. A GENERAL ANALYTIC EXPRESSION BASED ON THE LOCAL ELECTRICAL NEUTRALITY DESCRIBING ION TRANSPORT THROUGH AN ION-EXCHANGE MEMBRANE. JP Journal of Heat and Mass Transfer 13 (3),2016, 303
会议论文
1. X Bai, Y Sano, F Kuwahara, A NakayamaTHREE-DIMENSIONAL NUMERICAL SIMULATION OF IONIC MECHANICAL DISPERSION IN AN ELECTRODIALYZER WITH NET-LIKE SPACERS. The 16th International Heat Transfer Conference, 2019, Beijing



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