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Assessing the quality of alternative energy sources : Energy Return On the Investment (EROI), the metabolic pattern of societies and energy statistics

机译:评估替代能源的质量:投资的能源回报(EROI),社会的新陈代谢模式和能源统计

摘要

This paper presents an initial challenge to tackle the every so "tricky" points encountered when dealing with energy accounting, and thereafter illustrates how such a system of accounting can be used when assessing for the metabolic changes in societies. The paper is divided in four main sections. The first three, present a general discussion on the main issues encountered when conducting energy analyses. The last section, subsequently, combines this heuristic approach to the actual formalization of it, in quantitative terms, for the analysis of possible energy scenarios. Section one covers the broader issue of how to account for the relevant categories used when accounting for Joules of energy; emphasizing on the clear distinction between Primary Energy Sources (PES) (which are the physical exploited entities that are used to derive useable energy forms (energy carriers)) and Energy Carriers (EC) (the actual useful energy that is transmitted for the appropriate end uses within a society). Section two sheds light on the concept of Energy Return on Investment (EROI). Here, it is emphasized that, there must already be a certain amount of energy carriers available to be able to extract/exploit Primary Energy Sources to thereafter generate a net supply of energy carriers. It is pointed out that this current trend of intense energy supply has only been possible to the great use and dependence on fossil energy. Section three follows up on the discussion of EROI, indicating that a single numeric indicator such as an output/input ratio is not sufficient in assessing for the performance of energetic systems. Rather an integrated approach that incorporates (i) how big the net supply of Joules of EC can be, given an amount of extracted PES (the external constraints); (ii) how much EC needs to be invested to extract an amount of PES; and (iii) the power level that it takes for both processes to succeed, is underlined. Section four, ultimately, puts the theoretical concepts at play, assessing for how the metabolic performances of societies can be accounted for within this analytical framework.
机译:本文提出了一个最初的挑战,以解决在处理能源会计时遇到的每一个“棘手”问题,然后说明在评估社会代谢变化时如何使用这种会计系统。本文分为四个主要部分。前三个部分对进行能量分析时遇到的主要问题进行了一般性讨论。随后的最后一部分将这种启发式方法与定量化方法的实际形式化结合起来,以分析可能的能源情景。第一部分涵盖了更广泛的问题,即在考虑能量焦耳时如何考虑使用的相关类别;强调主要能源(PES)(用于获得可用能源形式(能源载体)的物理开发实体)和能源载体(EC)(为适当目的传输的实际有用能量)之间的明确区别在社会中使用)。第二部分阐明了能源投资回报率(EROI)的概念。这里要强调的是,必须已经有一定数量的能量载体可用,以便能够提取/利用一次能源,从而产生能量载体的净供应。需要指出的是,当前大量能源供应的趋势只有对化石能源的大量利用和依赖才有可能。第三部分是关于EROI的讨论的后续部分,该部分指出单个数字指标(例如输出/输入比率)不足以评估高能系统的性能。而是一种综合方法,其中包括:(i)给定提取的PES数量(外部约束),欧共体焦耳的净供应量可以达到多少; (ii)提取一定数量的PES需要投资多少EC? (iii)强调了两个过程成功所需的功率水平。最终,第四部分将理论概念发挥作用,评估在此分析框架内如何解释社会的代谢表现。

著录项

  • 作者

    Giampietro Mario;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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