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Work transfer theory for mechanical non-equilibrium, quasi-equilibrium, and equilibrium

机译:机械非平衡,准平衡和平衡的功转移理论

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摘要

Work transfer is the mechanical process of energy transfer, which attracts great attention in multidisci-plinary fields. A work transfer theory for mechanical non-equilibrium, quasi-equilibrium, and equilibrium is proposed as a special case of an internal energy transfer theory under a postulate that pressure, time, and displacement are independent and orthogonal variables in extended phase spaces. The statistical thermodynamic work transfer theory is applicable to providing the equation of state in various mechanical phenomena in nature, and the work fluxes are expressed as a function of pressure, time, and displacement The theory is the unification of internal convection and external diffusion work transfer, which is a non-equilibrium generalization beyond the quasi-equilibrium theories of isobaric and isochoric processes. Two internal phase space dimensions of pressure and volume are introduced for the intensive and extensive property dimensions. The theory explicitly demonstrates diffusion, convection, internal convection, and equilibrium work fluxes. The work transfer theory is applied to investigate the mechanical mechanisms in the liquid-vapor phase transition. Three variable separation constants infer particle number constants and play the major roles in describing the distinct phase transition mechanisms. Qualitative predictions of the work transfer theory in liquid-vapor phase transition are carried out, and comparisons between quasi-equilibrium and non-equilibrium processes are discussed. In the kinetics of work transfer, the four control mechanisms of forced convection, turbulence, transient, and film work are considered. The work fluxes in the phase transition are dynamically characterized and the corresponding equations of state are predicted.
机译:工作转移是能量转移的机械过程,在多学科领域引起了极大的关注。在假设压力,时间和位移是扩展相空间中独立且正交的变量的假设下,提出了一种用于机械非平衡,准平衡和平衡的功转移理论,作为内部能量转移理论的特例。统计热力学功传递理论适用于提供自然界中各种机械现象的状态方程,功通量表示为压力,时间和位移的函数。该理论是内部对流和外部扩散功传递的统一,这是等压和等速过程的准平衡理论之外的非平衡泛化。引入了压力和体积的两个内部相空间尺寸,以用于密集和广泛的特性尺寸。该理论明确证明了扩散,对流,内部对流和平衡功通量。应用功转移理论研究了液相-气相转变中的力学机理。三个变量分离常数推断粒子数常数,并在描述不同的相变机理中起主要作用。进行了液相汽相变过程中功转移理论的定性预测,并讨论了准平衡过程与非平衡过程的比较。在功传递的动力学中,考虑了对流,湍流,瞬态和薄膜功的四种控制机制。动态表征相变中的功通量,并预测相应的状态方程。

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