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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Minimization of a free-energy-like potential for non-equilibrium flow systems at steady state
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Minimization of a free-energy-like potential for non-equilibrium flow systems at steady state

机译:稳定状态下非平衡流系统的类自由能势最小

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摘要

This study examines a new formulation of non-equilibrium thermodynamics, which gives a conditional derivation of the 'maximum entropy production' (MEP) principle for flow and/or chemical reaction systems at steady state. The analysis uses a dimensionless potential function φs, for non-equilibrium systems, analogous to the free energy concept of equilibrium thermodynamics. Spontaneous reductions in φ_(asrise fromt increa)ses in the 'flux entropy' of system—a measure the variability of the fluxes—or in the local entropy production; conditionally, depending on the behaviour of the flux entropy, the formulation reduces to the MEP principle. The inferred steady state is also shown to exhibit high variability in its instantaneous fluxes and rates, consistent with the observed behaviour of turbulent fluid flow, heat convection and biological systems; one consequence is the coexistence of energy producers and consumers in ecological systems. The different paths for attaining steady state are also classified.
机译:这项研究研究了一种非平衡热力学的新公式,该公式为有条件的流动和/或化学反应系统的“最大熵产生”(MEP)原理提供了条件推导。对于非平衡系统,该分析使用无量纲势函数φs,类似于平衡热力学的自由能概念。在系统的“通量熵”中(即通量的可变性)或局部熵的产生,φ_(从增加的增加)的自发减少。有条件地,取决于通量熵的行为,该公式简化为MEP原理。推断的稳态也显示出瞬时通量和速率的高度可变性,这与观察到的湍流,热对流和生物系统的行为一致。后果之一是能源生产者和消费者在生态系统中并存。还对获得稳态的不同途径进行了分类。

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