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MASS NATURE OF HEAT AND ITS APPLICATIONS I: MOTION OF THERMOMASS FLUID AND GENERAL HEAT CONDUCTION LAW

机译:传热的性质及其应用I:热质流体的运动和一般传热规律

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The concept of thermomass is defined as the equivalent mass of thermal energy according to the Einstein's mass-energy relation. Hence, the phonon gas in dielectrics can be regarded a weighty, compressible fluid. Heat conduction in the medium, where the rest mass lattices or molecules acts the porous framework, resembles the gas flow through the porous medium. Newton mechanics has been applied to establish the equation of state and the equation of motion for the phonon gas as in fluid mechanics, since the drift velocity of a phonon gas is normally much less than the speed of light. The momentum equation of the thermomass gas, including the driving, inertial and resistant forces, is a damped wave equation, which is in fact the general conduction law. This is because it reduces to the CV (Cattaneo-Vernotte ) model or the single phase-lag model as the heat flux related inertial terms are neglected, and reduces to Fourier's heat conduction law as all inertial terms are neglected. Therefore, the underlying physics of Fourier's heat conduction law is the balance between the driving force and the resistant force of the heat motion, and Fourier's law will break down when the inertial force is comparable to the resistant force, for instance, in the case of ultra-short pulse laser heating or heat conduction in carbon nanotubes at ultra-high heat flux.
机译:根据爱因斯坦的质量关系,温度的概念被定义为相当于热能的热能。因此,可以认为电介质中的声子气体是重量的可压缩流体。介质中的热传导,其余质量晶格或分子作用多孔框架,类似于通过多孔介质的气体流动。牛顿力学已被应用于建立状态的等式和作为流体力学中的声子气体的运动方程,因为声子气体的漂移速度通常小于光速。热量气体的动量方程,包括驱动,惯性和抗力,是阻尼波动方程,其实际上是一般的传导法。这是因为它减少到CV(Cattaneo-vernotte)模型或单相滞后模型,因为热通量相关的惯性术语被忽略,并且随着所有惯性术语被忽略而降低到傅里叶的热传导律。因此,傅里叶的热传导法的潜在物理学是动力与热运动的抗力之间的平衡,并且当惯性力与抗性力相当时,傅里叶的定律将分解为抗性力超高热通量的碳纳米管中的超短脉冲激光加热或导热。

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