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首页> 外文期刊>Energy Policy >The role of the power/efficiency misconception in the rebound effect's size debate: Does efficiency actually lead to a power enhancement?
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The role of the power/efficiency misconception in the rebound effect's size debate: Does efficiency actually lead to a power enhancement?

机译:权力/效率误解在反弹效应的规模争论中的作用:效率实际上会导致权力增强吗?

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摘要

This paper addresses the question of whether the rebound effect's size is bigger or smaller than one. After a brief review of the related economic literature, a thermodynamic perspective tackles this topic by demonstrating that the dispute over the size of the rebound effect relies on a misconception of the thermodynamic nature of energy efficiency. The dichotomy, in fact, concerns the relationship between efficiency and power output rather than the scale of the economic side effects generated by energy efficiency mutations. Early intuitions of the dichotomy efficiency/power belong to the pioneering works of Stanley Jevons, in the field of economics, and Alfred Lotka in that of biology. Their findings are here approached using the basis of finite-time thermodynamics with a simple amendment, the addition of the time variable to the Carnot machinery. The model shows how a process of power maximization always leads to a sub-optimal efficiency level and additionally, that any efficiency improvement, in the context of low energy costs, will shift the power output of the machine instead of reducing energy consumption. A case study taken from the transport system is presented to elucidate this argument.
机译:本文讨论的是反弹效果的大小是大于还是小于一个的问题。在简要回顾了相关的经济文献之后,热力学观点通过证明回弹效应的大小之争取决于对能源效率的热力学性质的误解来解决这个问题。实际上,二分法涉及效率与功率输出之间的关系,而不是能源效率突变所产生的经济副作用的规模。对二分法效率/权力的早期直觉属于斯坦利·杰文斯(Stanley Jevons)在经济学领域的开创性研究,而阿尔弗雷德·洛特卡(Alfred Lotka)在生物学领域的开创性研究。他们的发现是在有限时间热力学的基础上进行简单的修正,即在卡诺(Carnot)机械上增加时间变量。该模型显示了功率最大化的过程如何始终导致次优效率水平,此外,在低能源成本的情况下,任何效率的提高都将改变机器的功率输出,而不是降低能耗。提出了一个从运输系统中提取的案例研究来阐明这一论点。

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