Energy Analysis of Two Stroke Engines with a Quasi-Realistic Thermodynamic Model Approach
Referanslar
Pulkrabek, W. W. (2004). Engineering fundamentals of the internal combustion engine.
Van Basshuysen, R., & Schäfer, F. (2004). Internal combustion engine handbook-basics, components, systems and perspectives (Vol. 345).
Stone, R. (1999). Introduction to internal combustion engines (Vol. 3). London: Macmillan.
Blair, G. P. (1990). Two-Stroke Engines. Society of Automobile Engineering.
Heywood, J. B., & Sher, E. (2017). The two-stroke cycle engine: its development, operation, and design. Routledge.
Blair, G. P. (1999). Design and simulation of four-stroke engines (Vol. 186). SAE Technical Paper.
Ge, Y., Chen, L., & Sun, F. (2008). Finite-time thermodynamic modelling and analysis of an irreversible Otto-cycle. Applied Energy, 85(7), 618-624.
Chen, L. (2004). Advances in finite time thermodynamics: analysis and optimization. Nova Publishers.
Zhao, J., & Xu, F. (2018). Finite-time thermodynamic modeling and a comparative performance analysis for irreversible Otto, Miller and Atkinson Cycles. Entropy, 20(1), 75.
Wu, C. (1999). Recent advances in finite-time thermodynamics.
Kaushik, S. C., Tyagi, S. K., & Kumar, P. (2017). Finite time thermodynamics of power and refrigeration cycles. Springer International Publishing.
Bejan, A. (2013). Entropy generation minimization: the method of thermodynamic optimization of finite-size systems and finite-time processes. CRC press.
Arabaci, E. (2020). Performance analysis of a novel six-stroke otto cycle engine. Thermal Science, (00), 144-144.
Arabacı, E. (2021). Simulation and performance analysis of a spark ignition engine using gasoline and LPG as fuel. Journal of the Faculty of Engineering and Architecture of Gazi University, 36(1), 447-457.