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武汉 | 华中科技大学能源与动力工程学院 | 助理教授
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教育经历
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工作经历
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荣誉
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研究
1. Xu, M., Tu, Y.*, Zhou, A., Xu, H., Yu, W., Li, Z., & Yang, W.* (2019). Numerical study of HCN and NH3 reduction in a two-stage entrained flow gasifier by implementing MILD combustion. Fuel. (Accepted)
2. Tu, Y., Xu, M., Zhou D., Wang Q., Yang, W.*, & Liu, H.* (2019). CFD and kinetic modelling study of methane MILD combustion in O2/N2, O2/CO2 and O2/H2O atmospheres. Applied Energy. 240, 1003-1013.
3. Tu, Y., Zhou, A., Xu, M., Yang, W.*, Siah, K. B., & Subbaiah, P. (2017). NOX reduction in a 40 t/h biomass fired grate boiler using internal flue gas recirculation technology. Applied Energy. 220, 962-973.
4. Tu, Y., Yang, W.*, & Liu, H.* (2017). A Refined Global Reaction Mechanism for Gently Preheated MILD Combustion of Methane. Energy & Fuels, 31(9), 10144-10157.
5. Tu, Y., Su, K., Liu, H.*, Wang, Z., Xie, Y., Zheng, C., & Li, W. (2017). MILD combustion of natural gas using low preheating temperature air in an industrial furnace. Fuel Processing Technology, 156, 72-81.
6. Tu, Y., Liu, H., & Yang, W. (2017). Flame characteristics of CH4/H2 on a jet-in-hot-coflow burner diluted by N2, CO2, and H2O. Energy & Fuels, 31(3), 3270-3280.
7. Tu, Y., Su, K., Liu, H.*, Chen, S., Liu, Z., & Zheng, C. (2016). Physical and chemical effects of CO2 addition on CH4/H2 flames on a Jet in Hot Coflow (JHC) burner. Energy & Fuels, 30(2), 1390-1399.
8. Tu, Y., Liu, H.*, Su, K., Chen, S., Liu, Z., Zheng, C., & Li, W. (2015). Numerical study of H2O addition effects on pulverized coal oxy-MILD combustion. Fuel Processing Technology, 138, 252-262.
9. Tu, Y., Liu, H.*, Chen, S., Liu, Z., Zhao, H., & Zheng, C. (2015). Numerical study of combustion characteristics for pulverized coal under oxy-MILD operation. Fuel Processing Technology, 135, 80-90.
10. Tu, Y., Liu, H., Chen, S., Liu, Z., Zhao, H., & Zheng, C. (2015). Effects of furnace chamber shape on the MILD combustion of natural gas. Applied Thermal Engineering, 76, 64-75.
技能
Ansys Fluent, UDF, OpenFOAM, Chemkin-Pro, Chemkin II
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