空间,时间和机器

A. Annila
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引用次数: 12

摘要

热力学第二定律被用来解释当今宇宙学中的谜题。普遍规律,以运动方程的形式给出,描述了不同的系统通过不同的机制消耗自由能,在各自的环境中达到定态。我们发现宇宙的膨胀、星系的旋转和透镜以及红移谱线的聚束是满足能量守恒的最大能量耗散的自然结果,其形式为动能、势能和耗散。整个宇宙被描绘成一个巨大的黎曼谐振器,通过逐步自发地打破一个稳态对称到另一个,以减少相对于零密度“环境”的能量密度差异。证明了演化的连续统方程等价于纳维-斯托克斯方程。无处不在的流动方程没有解,因为当耗散过程有三个或更多的自由度时,力和流动是不可分割的。由于演化的系统没有范数,所以不存在一元变换来求解特征方程,但详细的轨迹仍然是固有的棘手问题。相反,静态轨迹可以求解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Space, Time and Machines
The 2nd law of thermodynamics is used to shed light on present-day puzzles in cosmology. The universal law, given as an equation of motion, describes diverse systems when consuming free energy via various mechanisms to attain stationary states in their respective surroundings. Expansion of the Universe, galactic rotation and lensing as well as clus- tering of red-shifted spectral lines are found as natural consequences of the maximal energy dispersal that satisfies the con- servation of energy, in the forms of kinetic, potential and dissipation. The Universe in its entirety is pictured as a giant Riemann resonator in evolution via step-by-step spontaneous breaking of one stationary-state symmetry to another to di- minish energy density differences relative to its zero-density "surroundings". The continuum equation of evolution is proven equivalent to the Navier-Stokes equation. The ubiquitous flow equation has no solution because the forces and flows are inseparable when the dissipative process has three or more degrees of freedom. Since an evolving system is without a norm, there is no unitary transformation to solve the characteristic equation, but detailed trajectories remain in- herently intractable. Conversely, stationary-state trajectories can be solved.
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