陶实

发布时间:2026-01-19

一、基本信息:

学位:博士研究生

职称:副教授、硕士生导师

电子邮箱:taoshi@dgut.edu.cn

联系方式:15992771138

招生专业:动力工程及工程热物理、能源动力

二、教育、工作经历:

2021年01月- 至今,东莞理工学院化学工程与能源技术学院,副教授

2017年07月-2020年12月,东莞理工学院化学工程与能源技术学院,讲师

2013年09月- 2017年06月,华中科技大学,热能工程专业,博士

2010年09月- 2013年06月,大连理工大学,船舶与海洋结构物设计制造专业,硕士

三、研究领域:

主要从事多相复杂流动、微尺度传热传质、流固耦合及介观数值方法等方面的研究工作。

累计主持国家自然科学基金面上/青年基金项目、省重点实验室攻坚项目、校科研启动项目各1项。已累计接收和发表SCI收录的学术论文50余篇,其中以第一/通讯作者在J. Comput. Phys.Int. J Heat Mass Tran.Phys. Rev. E等国际知名期刊上发表论文40余篇。申请发明/实用新型专利6项。SCI论文引用1000余次、H指数19,是国自然基金函评专家和多个国际知名期刊的审稿人。

四、代表性研究成果:

(一)代表性论文/论著

1. Tao, S.*, Wang, W., Lin, Y., Wu, H., He, Q., & Wang, L. (2025). Discrete unified gas kinetic scheme modeling for complex thermal flows using hierarchical Cartesian grids. Engineering Analysis with Boundary Elements, 179, 106443.

2. Tao, S.*, Lin, G., Wu, H., Hu, J., & He, Q. (2026). Numerical study of flow and heat transfer characteristics in a channel with tandem flexible vortex generators. International Journal of Thermal Sciences, On line.

3. Tao, S.*, Zhang, X., Wang, W., Wu, H., Wang, L., & He, Q. (2025). Moving multiblock lattice Boltzmann simulations of fluid-particle flows. Physics of Fluids, 37(3), 033306.

4. Tao, S.*, Zhang, X., Wang, W., Wang, L., He, Q., & Lin, Y. (2024). Bifurcate migration of neutrally buoyant particles in unilateral slippery channel flows. Physics of Fluids, 36(10), 103358.

5. Yan, X., Liu, Z., Lin, G., Wu, H., He, Q., & Tao, S*. (2026). Effects of protrusion geometry on thermally induced creep flows and Knudsen force acting on a particle. Powder Technology, 470, 121990.

(二)科研项目

1. 国家自然科学基金(面上项目):多气载微纳颗粒群热泳的气体动理论全解析建模及机理研究(52476148),48万,在研,主持

2. 国家自然科学基金(青年项目):基于离散统一气体动力学的纳米颗粒分形团聚体多尺度流动直接数值模拟 (51906044),24万,结题,主持。

3. 省重点实验室攻坚项目:生物质颗粒分形团聚体的多尺度流动及湍流燃烧特性(2020B1212060075-8),5万,结题,主持。

4. 校科研启动项目: 30万,结题,主持。

(三)专利

1. 何清,谢明亮,赵莉丽,葛亚,陶实,林有胜。一种颗粒群尺寸分布确定方法、系统、设备及存储介质。发明专利,申请号:CN202211155804.X;授权号:CN115436237A。

五、获奖、荣誉称号:

1. 东莞市特色人才(三类,2023年)

2. 校优秀班主任(2019年、2025年)、校优秀共产党员(2019年)

3. 指导学生获校优秀本科毕业论文十余人次。

4. 学生获评校优秀研究生(2025年)。




Tao Shi

Basic information

DegreePh.D.

Job TitleAssociate Professor, Master's Supervisor

Email addresstaoshi@dgut.edu.cn

Contact number15992771138

Admission Majors: Power Engineering and Engineering Thermophysics, Energy Power

Ⅱ、Education and work experience:

Jan 2021 - Present: Associate Professor, School of Chemical Engineering and Energy Technology, Dongguan University of Technology

Jul 2017 - Dec 2020: Lecturer, School of Chemical Engineering and Energy Technology, Dongguan University of Technology

Sep 2013 - Jun 2017: Ph.D. in Thermal Engineering, Huazhong University of Science and Technology

Sep 2010 - Jun 2013: M.E. in Design and Construction of Naval Architecture and Ocean Structures, Dalian University of Technology

Ⅲ、Research Interests:

Mainly engaged in research work in multiphase complex flows, microscale heat and mass transfer, fluid-structure interaction, and mesoscopic numerical methods.

Tao has cumulatively presided over two National Natural Science Foundation General/Youth Projects, one Provincial Key Laboratory Project, and one University Scientific Research Startup Project. He has published over 50 SCI-indexed academic papers, with more than 40 as first/corresponding author in internationally renowned journals such as J. Comput. Phys., Int. J. Heat Mass Tran., and Phys. Rev. E. Has applied for 6 invention/utility model patents. SCI papers have been cited over 1000 times with an H-index of 19. He serves as a reviewer for the National Natural Science Foundation of China and for several prestigious international journals.

Ⅳ、Representative research achievements:

)Representative papers/books

1. Tao, S.*, Wang, W., Lin, Y., Wu, H., He, Q., & Wang, L. (2025). Discrete unified gas kinetic scheme modeling for complex thermal flows using hierarchical Cartesian grids. Engineering Analysis with Boundary Elements, 179, 106443.

2. Tao, S.*, Lin, G., Wu, H., Hu, J., & He, Q. (2026). Numerical study of flow and heat transfer characteristics in a channel with tandem flexible vortex generators. International Journal of Thermal Sciences, On line.

3. Tao, S.*, Zhang, X., Wang, W., Wu, H., Wang, L., & He, Q. (2025). Moving multiblock lattice Boltzmann simulations of fluid-particle flows. Physics of Fluids, 37(3), 033306.

4. Tao, S.*, Zhang, X., Wang, W., Wang, L., He, Q., & Lin, Y. (2024). Bifurcate migration of neutrally buoyant particles in unilateral slippery channel flows. Physics of Fluids, 36(10), 103358.

5. Yan, X., Liu, Z., Lin, G., Wu, H., He, Q., & Tao, S*. (2026). Effects of protrusion geometry on thermally induced creep flows and Knudsen force acting on a particle. Powder Technology, 470, 121990.

(Ⅱ)Scientific research project

1. National Natural Science Foundation of China (General Project): Fully resolved modeling and mechanism study of thermophoresis for multi-gas-carried micro/nano particle clusters using gas kinetic theory (52476148), 480,000 CNY, Ongoing, PI.

2. National Natural Science Foundation of China (Youth Project): Direct numerical simulation of multiscale flow of fractal aggregates of nanoparticles based on discrete      unified gas kinetic scheme (51906044), 240,000 CNY, Completed, PI.

3. Provincial Key Laboratory Project: Multiscale flow and turbulent combustion characteristics of biomass particle fractal aggregates (2020B1212060075-8), 50,000 CNY, Completed, PI.

4. University Scientific Research Startup Project: 300,000 CNY, Completed, PI.

(Ⅲ)Patents

1. He, Q., Xie, M., Zhao, L., Ge, Y., Tao, S., & Lin, Y. A method, system, device, and storage medium for determining particle size distribution. Invention Patent, Application No.: CN202211155804.X; Authorization No.:CN115436237A.

Ⅴ、Awards and honorary titles:

1. Dongguan Featured Talent (Category III, 2023)

2. University Outstanding Class Advisor (2019, 2025), University Outstanding Communist Party Member (2019)

3. Supervised over ten undergraduate students in receiving the University Outstanding Undergraduate Thesis Award.

4. Supervised a postgraduate student recognized as University Outstanding Postgraduate (2025).



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