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Thermodynamic analysis and performance maps for the irreversible Dual-Atkinson cycle engine (DACE) with considerations of temperature-dependent specific heats, heat transfer and friction losses
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G. GONCA, "Thermodynamic analysis and performance maps for the irreversible Dual-Atkinson cycle engine (DACE) with considerations of temperature-dependent specific heats, heat transfer and friction losses," ENERGY CONVERSION AND MANAGEMENT , vol.111, pp.205-216, 2016

GONCA, G. 2016. Thermodynamic analysis and performance maps for the irreversible Dual-Atkinson cycle engine (DACE) with considerations of temperature-dependent specific heats, heat transfer and friction losses. ENERGY CONVERSION AND MANAGEMENT , vol.111 , 205-216.

GONCA, G., (2016). Thermodynamic analysis and performance maps for the irreversible Dual-Atkinson cycle engine (DACE) with considerations of temperature-dependent specific heats, heat transfer and friction losses. ENERGY CONVERSION AND MANAGEMENT , vol.111, 205-216.

GONCA, Güven. "Thermodynamic analysis and performance maps for the irreversible Dual-Atkinson cycle engine (DACE) with considerations of temperature-dependent specific heats, heat transfer and friction losses," ENERGY CONVERSION AND MANAGEMENT , vol.111, 205-216, 2016

GONCA, Güven. "Thermodynamic analysis and performance maps for the irreversible Dual-Atkinson cycle engine (DACE) with considerations of temperature-dependent specific heats, heat transfer and friction losses." ENERGY CONVERSION AND MANAGEMENT , vol.111, pp.205-216, 2016

GONCA, G. (2016) . "Thermodynamic analysis and performance maps for the irreversible Dual-Atkinson cycle engine (DACE) with considerations of temperature-dependent specific heats, heat transfer and friction losses." ENERGY CONVERSION AND MANAGEMENT , vol.111, pp.205-216.

@article{article, author={Güven GONCA}, title={Thermodynamic analysis and performance maps for the irreversible Dual-Atkinson cycle engine (DACE) with considerations of temperature-dependent specific heats, heat transfer and friction losses}, journal={ENERGY CONVERSION AND MANAGEMENT}, year=2016, pages={205-216} }