Exergy Analysis

Q3 Agricultural and Biological Sciences
Tejasvi Chauhan, V. Gaur
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引用次数: 0

Abstract

This paper argues for a continuing exploration of Nature’s organizing principles that sustain prolonged homeostasis of the earth’s ecosystems punctuated by forceful transitions to new emergent states. Ecosystems develop and maintain a dynamically stable state by transacting energy and materials with the surrounding flows to keep reversing their continual fall to the ground state. Conversely, the elevation of any component of the ecosystem above the ground level may be regarded as a measure of its functional efficiency. This measure, called exergy, can be calculated for an eco-subsystem based on knowledge of the energy and material fluxes that thread it and, most importantly, of where the ground level happens to be. Admittedly, it is not straightforward to quantify these figures, and the departure of assumptions from reality will inevitably translate into errors in the calculated exergy figures. However, the variance may be estimated by analysing the results of an ensemble...
(火用)分析
本文主张继续探索自然的组织原则,以维持地球生态系统的长期稳态,并通过向新出现状态的有力过渡而间断。生态系统通过与周围流动的能量和物质进行交易来不断逆转其不断下降到基态,从而发展并保持动态稳定状态。相反,生态系统的任何组成部分高于地面的高度可被视为其功能效率的衡量标准。这种被称为“火能”的测量方法,可以根据贯穿该系统的能量和物质通量的知识,以及最重要的是地面的位置,来计算生态子系统的能量和物质通量。诚然,要对这些数字进行量化并不是一件容易的事,而且假设与实际情况的背离将不可避免地导致计算出的能源消耗数字出现误差。然而,方差可以通过分析集合的结果来估计。
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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来源期刊
Ecology Economy and Society - The INSEE Journal
Ecology Economy and Society - The INSEE Journal Agricultural and Biological Sciences-Forestry
CiteScore
1.30
自引率
0.00%
发文量
24
审稿时长
14 weeks
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