反应焓在全球变暖过程中的作用:从基础热力学中学到什么

W. Vogelsberger
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引用次数: 1

摘要

在过去200年中,在大气中观测到二氧化碳含量的增加伴随着温度的升高。这种行为可以通过检查最近的三个普遍接受的数据集、世界人口、大气中的二氧化碳含量和全球温度随时间的上升之间的相关性来解释。没有必要回到距今十万年前的气候状况。世界气候是地球上所有能量产生过程,特别是太阳能量与向太空辐射能量之间的动态平衡。因为约。在过去的地质时代,化石能源载体的储存库又改变了200年的动态平衡,产生了气候扰动。研究表明,人类每年消耗的能源可使大气升温约一度。这个量在气候计算中是不能忽略的;因此,它是人类造成大气变暖的原因。这里提出的定性分析表明,使用所谓的可再生能源并不一定导致避免全球变暖。可以预见的是,一些技术将没有甚至很小的影响。特别是对风力发电机组运行及其对大气温度影响的模型计算表明,风力发电机组运行对大气温度的影响是难以估计和不可预知的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Role of Enthalpy of Reaction in the Process of Global Warming: What Can We Learn from Basic Thermodynamics*
An increase of carbon dioxide content accompanied by an increase of the temperature is observed in the atmosphere during the last 200 years. This behaviour can be explained by examination of correlations between tree generally accepted data sets of the recent past, world population, carbon dioxide content in the atmosphere, and rise of global temperature as function of time. No return to climate situations from hundred thousand of years before present is necessary. The world climate is a dynamic equilibrium between all energy generating processes on earth, especially sun energy, and the radiation of energy into space. Since approx. 200 years the dynamic equilibrium is changed additionally by means of fossil energy carriers, whose depots were put on in passed geological epochs, a climatic disturbance was produced. It is shown that the consumption of energy per year by the mankind can warm up the atmosphere by about one degree. This quantity cannot be neglected in climatic calculations; therefore it is the cause of mankind made warming of the atmosphere. The qualitative analyses presented here have shown that the use of so-called renewable energy sources does not necessarily lead to the avoidance of global warming. It can be expected that some techniques will have no or even small effect. Especially the model calculations to the operation of wind turbines and its influence on the temperature of the atmosphere show that it is difficult to estimate their influence and cannot be foreknown.
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