Julián
González Ayala
Profesor Ayudante Doctor
Instituto Politécnico Nacional
Ciudad de México, MéxicoPublicaciones en colaboración con investigadores/as de Instituto Politécnico Nacional (13)
2018
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Ecological efficiency of finite-time thermodynamics: A molecular dynamics study
Physical Review E, Vol. 98, Núm. 2
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Link between optimization and local stability of a low-dissipation heat engine: Dynamic and energetic behaviors
Physical Review E, Vol. 98, Núm. 3
2017
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A graphic approach to include dissipative-like effects in reversible thermal cycles
European Physical Journal B, Vol. 90, Núm. 5
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Local-stability analysis of a low-dissipation heat engine working at maximum power output
Physical Review E, Vol. 96, Núm. 4
2016
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Is the (3 + 1)-d nature of the universe a thermodynamic necessity?
EPL, Vol. 113, Núm. 4
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On reversible, endoreversible, and irreversible heat device cycles versus the Carnot cycle: A pedagogical approach to account for losses
European Journal of Physics, Vol. 37, Núm. 4
2015
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A possible cosmological application of some thermodynamic properties of the black body radiation in n-dimensional Euclidean spaces
Entropy, Vol. 17, Núm. 7, pp. 4563-4581
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Equivalent norms in ℝn from thermodynamical laws
European Journal of Physics, Vol. 36, Núm. 6
2014
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Resemblance of the efficiencies between reversible Otto and Joule-Brayton-like cycles and finite-time Curzon-Ahlborn engines
27th International Conference on Efficiency, Cost, Optimization, Simulation and Environmental Impact of Energy Systems, ECOS 2014
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Restrictions on linear heat capacities from Joule-Brayton maximum-work cycle efficiency
Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, Vol. 89, Núm. 2
2013
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Connection between maximum-work and maximum-power thermal cycles
Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, Vol. 88, Núm. 5
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The universality of the Carnot theorem
European Journal of Physics, Vol. 34, Núm. 2, pp. 273-289
2012
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Some remarks on the Carnot's theorem
Proceedings of the 25th International Conference on Efficiency, Cost, Optimization and Simulation of Energy Conversion Systems and Processes, ECOS 2012