Professor

Ma Lei

Date:2023-08-07       Click:

      

Ma Lei, Associate Professor

Academic Background:

2009 - 2014:   Huazhong University of Science and Technology, School of Energy and Power Engineering, successive postgradaute and doctoral program

2011 - 2013:   Massachusetts Institute of Technology (MIT), School of Mechanical Engineering, Joint training doctorate program

2005 - 2009:   Huazhong University of Science and Technology, School of Energy and Power Engineering, undergraduate program


Work Experience:

2014 - 2015: China Aerospace Science and Industry Corporation, Engineer

2015 - 2017: Shenzhen University, Postdoctoral

2017 - 2022: Shenzhen Technology University, Assistant Professor

2022 - Present: Shenzhen Technology University, Associate Professor


Research Interests:

Industrial energy-saving technology, new energy technology, heat dissipation technology for electronic devices, thermal analysis of materials and other related fields


Research Papers:

[1] L. Ma, J.J. Wang, A. Marconnet, A. Barbati, G. McKinley, W. Liu, G. Chen, Viscosity and thermal conductivity of stable graphite suspension near percolation,Nano Letters, 15(1): 127–133, 2015.

[2] L. Ma, J. Yang, W. Liu, X.Y. Zhang, Physical quantity synergy analysis and efficiency criterion of heat transfer enhancement, International Journal of Thermal Sciences, 80:23-32, 2014.

[3] L. Ma, X. Zhao, Q. Wu, H. Song, W. Liu, A closed-loop cooling system with integrated mini-channel heat sink, Entropy,18(6), 2016.

[4] L. Ma, R. Mei, M. Liu, X. Zhao, Q. Wu, H. Sun, Monte Carlo Study of Temperature-dependent Non-diffusive Thermal Transport in Si Nanowires, Applied Thermal Engineering, 124:17-21, 2017.

[5] L. Ma, R. Mei, X. Zhao, H. Sun, Monte Carlo Simulation of Single-CrystallinePbSeNanowire Thermal Conductivity, Semiconductor Science and Technology, 32(9), 2017.

[6] R. Mei, L. Ma(并列), L. An, F. Wang, J. Xi, H. Sun, Z. Luo, Q. Wu, Layered Spongy-like O-Doped g-C3N4: An Efficient Non-Metal Oxygen Reduction Catalyst for Alkaline Fuel Cells, Journal of the Electrochemical Society,164 (4), 2017.

[7] R. Ma, Q. Li, L. Wang, X. Zhang, L. Fang, Z. Luo, B. Xue, L. Ma, Mechanical properties and in vivo study of modified-hydroxyapatite/polyetheretherketonebiocomposites, Materials Science and Engineering: C, 73:429-439, 2017.

[8] J. Yang, L. Ma, J. Bock, A. M. Jacobi, W. Liu, A comparison of four numerical modeling approaches for enhanced shell-and-tube heat exchangers with experimental validation, Applied Thermal Engineering, 65(1): 369-383, 2014.

[9] J. YangL. MaJ. LiuW. Liu, Thermal–hydraulic performance of a novel shell-and-tube oil cooler with multi-fields synergy analysis,International Journal of Heat and Mass Transfer, 77: 928-939, 2014.

[10] W. Liu, Z.C. Liu, L. Ma, Application of a multi-field synergy principle in the performance evaluation of convective heat transfer enhancement in a tube, Chinese Science Bulletin, 57(13): 1600-1607, 2012.

[11] H. Fu, X. Zhao, L. Ma, T. Zhang, Q. Wu, H. Sun, A comparative study on three types of solar utilization technologies for buildings: Photovoltaic, solar thermal and hybrid photovoltaic/thermal systems, Energy Conversion and Management, 140: 1-13, 2017.

[12] Ma Lei, Wang Yingshuang, Yang Jie, Liu Zhichun, Liu Wei, Numerical simulation and optimal design of a folded rod heat exchanger, Journal of Engineering Thermophysics, 32(3) 462 - 464, 2011.

[13] Ma Lei, Wang Yingshuang, Yang J, Liu Zhichun, Liu Wei, Flow and heat transfer analysis of a variable-section bent-rod heat exchanger, Journal of Engineering Thermophysics, 33(1) 113 - 116, 2012.

[14] Ma Lei, Wang Jianjian, Marconnet Amy, Liu Wei, Chen Gang, Thermal conductivity and viscosity analysis of graphite suspensions, Journal of Chemical Engineering, 65(S1) 206 - 210, 2014.

[15] Wang Yingshuang, Ma Lei, Wei Jie, Liu Zhichun, Huang Suyi, Liu Wei, Influence of folded rod shape on flow and heat transfer characteristics in a folded rod heat exchanger, Hydropower Energy Science, 28(11) 128 - 130, 2010.

[16] Rong Rui, Ma Lei, Liu Wei, Numerical simulation of heat sinking in interpolated porous media microchannels, Hydropower Energy Science, 29(11) 205 - 208, 2011.

[17] Liu Wei, Liu Zhichun, Ma Lei, Application of multi-field synergy principle in the evaluation of convection-enhanced heat transfer performance in tubes, Science Bulletin, 57(10) 867 - 874, 2012.


Conference Papers:

[1] L. Ma, W. Liu, J. Yang, X.Y. Zhang, Physical quantity synergy analysis and efficiency evaluation criteria of convective heat transfer enhancementInternational Workshop on Heat Transfer Advance for Energy conservation and Pollution Control, Xi’an, China, 2011.

[2] L. Ma, J.J. Wang, A. Marconnet, G. Chen, Viscosity and thermal conductivity of stable graphite suspension near percolation, The 4th International Symposium on Micro and Nano Technology, Shanghai, China, 2013.

[3] A. Marconnet, L. Ma, G. Chen, Impact of Phase Change on Thermal and Electrical Properties of Ionic Nanofluids, ASME Summer Heat Transfer Conference, Minneapolis, MN, USA, 2013.

[4] Ma Lei, J.J. Wang, A. Marconnet, Liu Wei, G. Chen, Thermal conductivity and viscosity analysis of graphite suspensions, Heat and Mass Transfer Academic Conference of the Chinese Society of Engineering Thermophysics, Chongqing, 2013.

[5] Ma Lei, Yang Jie, Liu Wei, Whole-field numerical simulation and efficiency analysis of folded-rod heat exchangers, Heat and Mass Transfer Conference of the Chinese Society of Engineering Thermophysics, Xi'an, 2011.

[6] Ma Lei, Wang Yingshuang, Liu Zhichun, Zhang Xiaoyu, Liu Wei, Numerical simulation of variable-section bent-rod heat exchanger, Heat and Mass Transfer Conference of the Chinese Society of Engineering Thermophysics, Shanghai, 2010.

[7] Ma Lei, Wang Yingshuang, Liu Zhichun, Liu Wei, Numerical Simulation and Optimization Design of Folded Rod Heat Exchangers, China Society of Engineering Thermophysics Heat Transfer Academic Conference, Qingdao, 2009.

[8]  Pan Yao, Ma Lei, Liu Wei, Numerical simulation and performance optimization of forked-row microchannels, Heat and Mass Transfer Conference of the Chinese Society of Engineering Thermophysics, Xi'an, 2011.

[9]  Yang Jie, Ma Lei, Liu Wei, Numerical simulation of different types of spiral sheet inserts in tubes, Heat and Mass Transfer Conference of the Chinese Society of Engineering Thermophysics, Xi'an, 2011.

[10] Li Lin, Ma Lei, Liu Wei, Characterization of heat sink flow and resistance in microchannels, Academic Conference on Heat and Mass Transfer, Chinese Society of Engineering Thermophysics, Xi'an, 2011.

[11] Rong Rui, Ma Lei, Liu Wei, Yang Jinguo, Numerical simulation of the flow and heat transfer characteristics of microchannel heat sink, China Society of Engineering Thermophysics, Xi'an, 2011.


Contact Information:

E-mail: malei@sztu.edu.cn

Office Tel. : 0755-23256175