Position: > English Version > Academics > Supervisors > Content

姓名:

Name:

杨敏林

Minlin YANG

职称:

Job Title:

教授

Professor

学历(学位)

Degree

博士研究生

Doctor

联系邮箱:

E-mail:

yangml@dgut.edu.cn


Engaged in research on distributed energy systems, membrane-based liquid dehumidification, and membrane heat pumps. Led three National Natural Science Foundation of China (NSFC) General Projects, one sub-project under an NSFC Key Project, and one sub-project under the National Key R&D Programme. Served as Deputy Project Leader for one National 863 Programme Target-Oriented Project and one Guangdong Provincial Major Science and Technology Special Project. Participated in multiple National 863 Key Projects and 973 Projects. Published over 70 research papers, with more than 50 indexed in SCI; obtained over 10 authorised invention patents; received one bronze award at the National Invention Exhibition; completed one provincial-level scientific and technological achievement appraisal.


主要研究方向及内容

Main Research area and subject

传热传质,热力学,动力学

Fluid flow and mass and heat transfer and thermodynamics and kinetics

学术成果

Academic Achievements

1. Zhang W K, Yang M (共同一作), Chen J C, et al. Quasi-counter flow parallel-plate membrane contactors (QCPMC) for liquid desiccant air dehumidification: Conjugate heat and mass transfer. International Journal of Thermal Sciences, 2018, 134: 665-672.

2. Xiao L, Yang M, Yuan W Z, et al. Macroporous ceramic membrane condenser for water and heat recovery from flue gas. Applied Thermal Engineering, 2021, 186: 116512.

3. Xiao L, Yang M, Zhao S, et al. Entropy generation analysis of heat and water recovery from flue gas by transport membrane condenser. Energy, 2019, 174: 835-847.

4. Xiao L, Yang M, Yuan W Z, et al. Performance characteristics of a novel internally-cooled plate membrane liquid desiccant air dehumidification system. Applied Thermal Engineering, 2020, 172: 115193.

5. Low E, Huang S M, Yang M, et al. Design of cascade analysis for renewable and waste heat recovery in a solar thermal regeneration unit of a liquid desiccant dehumidification system. Energy, 2021, 235: 121284.

6. Huang S M, Yuan W Z, Yang M. Advances in heat and mass transfer in the membrane-based dehumidifiers and liquid desiccant air dehumidification systems[J]. International Journal of Heat and Mass Transfer, 2019, 139: 881-906.



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