References |
Ozawa, H., Ohmura, A., Lorenz, R.D., Pujol, T., The second law of thermodynamics and the global climate system: A review of the maximum entropy production principle (2003) Rev. Geophys., 41, pp. 1018-1042; Martyushev, L.M., Seleznev, V.D., Maximum entropy production principle in physics, chemistry and biology (2006) Physics Reports, 426 (1), pp. 1-45. , DOI 10.1016/j.physrep.2005.12.001, PII S0370157305004813; Martyushev, L.M., The maximum entropy production principle: Two basic questions (2010) Philos. Trans. R. Soc. B, 365, pp. 1333-1334; Martyushev, L.M., Entropy and entropy production: Old misconceptions and new breakthroughs (2013) Entropy, 15, pp. 1152-1170; Andresen, B., Zimmermann, E.C., Ross, J., Objections to a proposal on the rate of entropy production in systems far from equilibrium (1984) J. Chem. Phys., 81, pp. 4676-4677; Ross, J., Corlan, A.D., Müller, S.C., Proposed principle of maximum local entropy production (2012) J. Phys. Chem. B, 116, pp. 7858-7865; Vellela, M., Qian, H., Stochastic dynamics and non-equilibrium thermodynamics of a bistable chemical system: The Schlögl model revisited (2009) J. R. Soc. Interface, 6, pp. 925-940; Nicolis, C., Nicolis, G.Q., Stability, complexity and the maximum dissipation conjecture (2010) J. R. Meteorol. Soc., 136, pp. 1161-1169; Meysman, F.J.R., Bruers, S., Ecosystem functioning and maximum entropy production: A quantitative test of hypotheses (2010) Philos. Trans. R. Soc. B, 365, pp. 1405-1416; Polettini, M., Fact-checking Ziegler's maximum entropy production principle beyond the linear regime and towards steady states (2013) Entropy, 15, pp. 2570-2584; Ziegler, H., Wehrli, C., Principle of maximal rate of entropy production (1987) Journal of Non-Equilibrium Thermodynamics, 12 (3), pp. 229-243; Paltridge, G.W., Climate and thermodynamic systems of maximum dissipation (1979) Nature, 279 (5714), pp. 630-631; Martyushev, L.M., Konovalov, M.S., Thermodynamic model of nonequilibrium phase transitions (2011) Phys. Rev. e, 84, p. 011113. , (7 page); Martyushev, L.M., Kuznetsova, I.E., Seleznev, V.D., Calculation of the complete morphological phase diagram for nonequilibrium growth of a spherical crystal under arbitrary surface kinetics (2002) J. Exp. Theor. Phys., 94, pp. 307-314; Martyushev, L.M., Chervontseva, E.A., On the problem of the metastable region at morphological instability (2009) Phys. Lett. A, 373, pp. 4206-4213; Anderson, P.W., More is different (1972) Science, 177, pp. 393-396; Corning, P.A., The Re-emergence of "Emergence": Λ Venerable Concept in Search of a Theory (2002) Complexity New York, 7 (6), pp. 18-30. , DOI 10.1002/cplx.10043; Bar-Yam, Y., A mathematical theory of strong emergence using multiscale variety (2004) Complexity, 9 (6), pp. 15-24. , DOI 10.1002/cplx.20029; Landauer, R., Inadequacy of entropy and entropy derivatives in characterizing the steady state (1975) Phys. Rev. A, 12, pp. 636-638; Landauer, R., Stability and entropy production in electrical circuits (1975) J. Stat. Phys., 13, pp. 1-16; Kawazura, Y., Yoshida, Z., Entropy production rate in a flux-driven self-organizing system (2010) Phys. Rev. e, 82, p. 066403; Kawazura, Y., Yoshida, Z., Comparison of entropy production rates in two different types of self-organized flows: Benard convection and zonal flow (2012) Phys. Plasmas, 19, p. 012305; Martyushev, L.M., Some interesting consequences of the maximum entropy production principle (2007) Journal of Experimental and Theoretical Physics, 104 (4), pp. 651-654. , DOI 10.1134/S1063776107040152; Niven, R.K., Simultaneous extrema in the entropy production for steady-state fluid flow in parallel pipes (2010) J. Non-Equilib. Thermodyn., 35, pp. 347-378; Paulus Jr., D.M., Gaggioli, R.A., Some observations of entropy extrema in fluid flow (2004) Energy, 29 (12-15 SPEC. ISS.), pp. 2487-2500. , DOI 10.1016/j.energy.2004.03.029, PII S0360544204001069; Robert, R., Sommeria, J., Relaxation towards a statistical equilibrium state in two-dimensional perfect fluid dynamics (1992) Phys. Rev. Lett., 69, pp. 2776-2779; Dewar, R.C., Maximum entropy production as an inference algorithm that translates physical assumptions into macroscopic predictions: Don't shoot the messenger (2009) Entropy, 11, pp. 931-944; Dyke, J., Kleidon, A., The maximum entropy production principle: Its theoretical foundations and applications to the earth system (2010) Entropy, 12, pp. 613-630 |