Stationary Gas Dynamics and Heat Transfer of Turbulent Gas Flow in the Cylinder and Exhaust System of a Reciprocating Engine
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-38126-3_33
Reference27 articles.
1. Reitz, R.D., Ogawa, H., Payri, R., Fansler, T., et al.: IJER editorial: The future of the internal combustion engine. Int. J. Engine Res. 21(1), 3–10 (2020)
2. Makartchouk, A.: Diesel Engine Engineering: Thermodynamics, Dynamics, Design, and Control. Basel, New York (2002)
3. Krastev, V.K., d’Adamo, A., Berni, F., Fontanesi, S.: Validation of a zonal hybrid URANS/LES turbulence modeling method for multi-cycle engine flow simulation. Int. J. Engine Res. 21(4), 632–648 (2020)
4. Ko, I., Rulli, F., Fontanesi, S., d’Adamo, A., Min, K.: Methodology for the large-eddy simulation and particle image velocimetry analysis of large-scale flow structures on TCC-III engine under motored condition. Int. J. Engine Res. 22(8), 2709–2731 (2021)
5. Dias Ribeiro, M., Mendonça Bimbato, A., Araújo Zanardi, M., Perrella Balestieri, J.A., Schmidt, D.P.: Large-eddy simulation of the flow in a direct injection spark ignition engine using an open-source framework. Int. J. Engine Res. 22(4), 1064–1085 (2020)
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1. Experimental Study of Gas Dynamics and Heat Transfer of a Stationary Flow in Exhaust Pipelines with Different Cross-Sectional Shapes;Lecture Notes in Mechanical Engineering;2024
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