Simulation of Performance and Emissions Related Parameters in a Thermal Engine Using a Deep Learning Approach

Author:

Issondj Banta Nelson JuniorORCID,Offole Florence,Essola Dieudonne,Tchato Yotchou Vidal Giovani,Ngayihi Abbe Claude Valery,Mouangue Ruben

Publisher

Springer Science and Business Media LLC

Reference43 articles.

1. Wada Y, Nakano K, Mochizuki K, Hata R (2016) Development of a New 15L I4 turbocharged gasoline direct injection engine. SAE Tech Paper. 10:4271/2016-01-1020.

2. Lu X, et al. Effect of port fuel injection of methanol on the combustion characteristics and emissions of gas-to-liquid-fueled engines. Energy Fuels. 2009;23(2):719–24.

3. Najafi G, Yusaf T. Experimental investigation of using methanol-diesel blended fuels in diesel engine. In: Proceedings of the 4th International Conference on Thermal Engineering Theory and Applications, (2009).

4. Köten H. Performance analysis of a diesel engine within a multi-dimensional framework. J Therm Eng. 2018. https://doi.org/10.18186/journal-of-thermal-engineering.414153.

5. Sahbaz M, Kentli A, Koten H. Thermal analysis and optimization of high power led armature. Thermal Sci. 2019;23(2):637–46.

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