OB体育, OB体育官网,OB体育官方网站入口,OB体育比分,OB体育体育资讯

Shoutao Hu



 Shoutao Hu, male, born in July 1986, from Xinyang, Henan Province, Ph.D. in Engineering, Associate Professor, and Master’s Supervisor. He graduated from Beijing University of Technology, currently serving as the Deputy Director of the Academic Affairs Office.

He is engaged in research on industrial explosion prevention and control technology, emergency management, and other related fields. Currently, he is a registered safety engineer in China, a member of the Crisis Management Standard Working Group under the National Public Security Basic Standardization Technical Committee, and an assessment expert for the safety production standardization of hazardous chemical operation units. He was awarded the "Outstanding Young Engineer of Beijing City" in 2020. He serves as a reviewer for journals such as Fuel, Energy, Powder Technology, and Chinese Journal of High Pressure Physics. He has led key scientific and technological projects for the prevention and control of major accidents in national safety production and Beijing Municipal Education Commission scientific and technological planning projects. He has also participated in multiple National Natural Science Foundation and Beijing Natural Science Foundation projects. He has published more than 30 academic papers, with more than 10 papers indexed in SCI/EI databases. He holds 1 authorized national invention patent, 8 authorized utility model patents, participated in drafting 2 local standards. And his achievements, as a key researcher and developer, have been widely applied.

 

I. Research directions

1. Industrial explosion prevention and control technology;

2. Emergency management in megacities.

 

II. Awards and honors

1. Outstanding Young Engineer of Beijing, 2020;

2. Certified Safety Engineer, 2018;

3. Research and Application of Recycling Technology for Built-in Aluminum Alloy Barrier Explosion-proof Materials in Oil Storage Tanks, Third Prize of the Second China Association of Work Safety Safety Science and Technology Progress Award, 2021;

4. Second Prize of Outstanding Educational and Teaching Achievements of China Petroleum and Chemical Industry, 2022;

5. Outstanding Young Scientific and Technological Paper in the Field of Emergency Management in Beijing, 2023;

6. Outstanding Teaching Award of Beijing Institute of Petrochemical Technology, 2023.

 

III. Projects

1. Beijing Municipal Education Commission Science and Technology Program Project: Research on the Influence of External Magnetic Field on the Explosion Characteristics of Premixed Gases (Project No. : KM201910017001), Project Leader, 2019.1-2021.12.

2. Project of "Double Hundred Action Plan" for Teachers and Students of Beijing Universities to Serve the Functional Construction of the "Four Centers" of the Capital: Investigation and Research on Fire Risk and the Construction and Operation Status of Micro Fire Stations in Daxing District, Project Leader, 2019.5-2019.12.

3. National Key Technology Project for the Prevention and Control of Major and Extremely Serious Accidents in Work Safety in 2018: Experimental and Mechanism Research on the Effect of Metal Magnetism on Suppressing Gas Explosions (Project No. : Beijing-0015-2018AQ), Project Leader, 2018.1-2019.12.

4. Shunyi District Emergency Management Bureau Project: Revision and Drill of the Overall Emergency Response Plan for Sudden Incidents in Shunyi District, Project Leader.

5. Dongcheng District Emergency Management Bureau Project: Revision of the Overall Emergency Response Plan for Sudden Incidents in Dongcheng District, Project Leader.

6. Project of Daxing District Emergency Management Bureau: Revision of the Overall Emergency Response Plan for Sudden Incidents in Daxing District, Project Leader.

7. Project of China Coal Science and Technology Research Institute Co., LTD. : Analysis of Spontaneous Combustion Characteristics of Coal under Different Oxygen Concentrations, Project Leader.

8. Beijing Science and Technology Plan Major Scientific and Technological Achievement Transformation and Landing Cultivation Project: Research on Regeneration and Detection Technology of Aluminum Alloy Barrier and Explosion-proof Materials Inside Oil Storage Tanks (Z151100002815006), Project Participant, 2015.1-2017.6.

9. Beijing Natural Science Foundation General Project: Research on the Free Radical Mechanism of Explosion Suppression Performance of Barrier Explosion-proof Materials (2162016), Project Participant, 2016.1-2018.6.

 

IV. Academic paper

1. Shoutao Hu*, Zhiwei Zhang, Hao Gong, et al. Effect of mesh aluminum alloy on hydrogen and propane explosion characteristics[J]. Process Safety and Environmental Protection, 2024, 192: 946-959.

2. Shoutao Hu, Ruxia Li, Baisheng Nie, et al. Study on the thermodynamic mechanism of external magnetic field on gas explosion characteristics[J]. Chemical Engineering Journal, 2024, 496: 153920.

3. Shoutao Hu, Ruxia Li, Jiancun Gao*, et al. Study on influence of magnetic field on ethane explosion mechanism[J]. Fuel, 2024, 356: 129580.

4. Jiancun Gao, Le Wang, Shoutao Hu*, et al. The free radical mechanism of electromagnetic field affecting explosion of premixed methane[J]. Combustion and Flame, 2021, 234: 111649.

5. Shoutao Hu, Zijin Hong, Jiancun Gao*, et al. Effect of magnetic field on alkane gas explosions [J]. Combustion and Flame, 2022, 246: 112427.

6. Shoutao Hu, Zijin Hong, Jiancun Gao*, et al. The free radical mechanism of the effects of different metal materials on hydrogen explosion [J]. Sustainable Energy & Fuels, 2023, 7(6): 1544-1554.

7. Gao Jiancun, Yang Xigang, Hu Shoutao*, et al. Study of the Explosion Suppression Mechanism of Different Separate and Explosion-Proof Materials[J]. Combustion Science and Technology, 2024, 196(6): 795-819.

8. Gao Jiancun, Yang Xigang, Hu Shoutao*, et al. Effects of Magnetic Fields on Combustion and Explosion [J]. Chemistry and Technology of Fuels and Oils, 2022, 57(2): 379-390.

9. Gao Jiancun, Yang Xigang, Wang Le, Hong Zijin, Hu Shoutao*, et al. Mechanism of Magnetic Field Effect on Methane Explosion [J]. Explosion and Shock Waves, 2023, 43(01): 1-11.

10. Gao Jiancun, Yang Xigang, Hu Shoutao*, et al. Research on the Influence of External Magnetic Field on the Explosion Reaction of Acetylene Gas [J]. Explosion and Shock Waves, 2022, 42(6): 1-11.

11. Hu Shoutao, Li Ruxia, Nie Baisheng, et al. Mechanism of Magnetic field influence on explosion free radicals of ethylene premixed gas [J]. Chinese Journal of Energetic Materials, 2022, 30(12): 1252-1258.

12. Yang Xigang, Hu Shoutao*, Wang Le, et al. Effect of Magnetic Field on Dynamics of 5% Propane/Air Premixed Gases[C]. Journal of Physics: Conference Series, 2021, 1948(1): 012133.

13. Hu Shoutao, Hong Zijin, Yang Xigang, et al. Research on the Influence Mechanism of Different Magnetic Metal Wires on Hydrogen Explosion [J]. Chinese Journal of High Pressure Physics, 2023, 37(01): 151-160.

14. Hu Shoutao, Hong Zijin, Yang Xigang, et al. Research on the Influence Mechanism of Propane on the explosion of Methane-air premixed gas [J]. Journal of Safety and Environment, 2023, 223(07): 2312-2320.

15. Gao Jiancun, Wang Le, Hu Shoutao*, et al. Research on the Inhibition Mechanism of Propane Explosion Reaction by Different Magnetic Metal Wires [J]. Journal of Safety Science and Technology, 2020, 16(07): 125-131.

16. Gao Jiancun, Zhou Shangyong, Hu Shoutao*, et al. Study on the Flame Propagation Characteristics of Benzene Vapor Explosion/Combustion [J]. China Safety Science Journal, 2019, 29(3): 51-57.

17. Gao Jiancun, Zhou Shangyong, Hu Shoutao*, et al. Research on Benzene Vapor Explosion Phenomenon Based on High-Speed Photography Technology [J]. Industrial Safety and Environmental Protection, 2019, 45(3): 1-3.

18. Shangyong Zhou, Jiancun Gao*, Zhenmin Luo*, Shoutao Hu, et al. Role of ferromagnetic metal velvet and DC magnetic field on the explosion of a C3H8/air mixture-effect on reaction mechanism[J]. Energy, 2022, 239: 122218.

19. Shangyong Zhou, Jiancun Gao*, Zhenmin Luo*, Shoutao Hu, et al. Effects of mesh aluminium alloy and aluminium velvet on the explosion of H2/air, CH4/air and C2H2/air mixtures[J]. International Journal of Hydrogen Energy, 2021, 46(27): 14871-14880.

20. Le Wang, Jiancun Gao*, Shangyong Zhou, Shoutao Hu, et al. A product analysis-based study on the mechanism of inflammable gas explosion suppression[J]. Journal of Loss Prevention in the Process Industries, 2021, 69: 104311.

21. Nie Baisheng, Hu Shoutao, Li Xiangchun, et al. Experimental study of deformation rules during the process of gas adsorption and desorption in briquette coal[J]. International Journal of Mining Reclamation and Environment, 2014, 28(5): 277-286.

22. Baisheng Nie, Shoutao Hu, Longlong Yang, et al. Characteristics of flame velocity of gas explosion with obstruction in pipeline[J]. Perspectives in Science, 2015.12, (7): 277-281.

23. Safety Technical Specification for Cleaning of Aluminum Alloy Barrier and Explosion-proof Materials (DB11/T 1449-2017), Beijing Local Standard, 2017.

24. Technical Specifications for Safety Production Grade Evaluation - Part 90: Chemical Enterprises (DB11/T 1322.90-2020), Beijing Local Standard, 2020.

 

V. Book and Chapter

1. Introduction to Physical Hazard Detection and Identification of Chemicals, China Petrochemical Press, 2021.

 

VI. Requirement of postgraduate student

At present, I mainly recruit master's students in the professional degree of Resources and Environment (0857) (Safety Engineering Direction). We sincerely welcome students majoring in safety engineering, chemical Engineering and other fields who are down-to-earth, innovative, have strong abilities in gas explosion experiments and numerical calculations, as well as a high level of English to join our team.