Equilibrium Equation of Thermal Radiation of Earth and Solution

Tian-quan Yun
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Abstract

The Earth is isolate on its orbit motion around the Sun. The thermal radiation on Earth determines climate warmer or colder. By Kirchhoff’s law, the thermal radian on Earth must be in an equilibrium state. Which equivalents to an optimum problem. This paper establishes an equilibrium equation of thermal radiation of Earth, transmits it to an optimum problem, and proves that the equilibrium of thermal radiation of Earth is an indifferent equilibrium, neither stable, nor un-stable, based on the Stefan-Boltzmann law and the emissivity formula. The result means that the climate neither getting warmer and warmer, nor getting colder and colder.
地球热辐射平衡方程及其解
地球在绕太阳运行的轨道上是孤立的。地球上的热辐射决定了气候变暖或变冷。根据基尔霍夫定律,地球上的热弧度必须处于平衡状态。这相当于一个最优问题。本文建立了地球热辐射平衡方程,并将其转化为最优问题,根据斯蒂芬-玻尔兹曼定律和发射率公式,证明了地球热辐射平衡是一个既不稳定也不不稳定的非稳态平衡。这意味着气候既不会变得越来越暖,也不会变得越来越冷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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