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基于热力学势的有限世界中的宏观经济动态。

Macroeconomic dynamics in a finite world based on thermodynamic potential.

作者信息

Herbert Éric, Giraud Gaël, Louis-Napoléon Aurélie, Goupil Christophe

机构信息

Université Paris Cité, CNRS, UMR 8236-LIED, 75013, Paris, France.

Environmental Justice Program, McCourt School of Public Policy, Georgetown University, Washington, DC, USA.

出版信息

Sci Rep. 2023 Oct 21;13(1):18020. doi: 10.1038/s41598-023-44699-y.

Abstract

This paper presents a conceptual model describing the medium and long term co-evolution of natural and socio-economic subsystems of Earth. An economy is viewed as an out-of-equilibrium dissipative structure that can only be maintained with a flow of energy and matter. The distinctive approach emphasized here consists in capturing the economic impact of natural ecosystems' depletion by human activities via a pinch of thermodynamic potentials. This viewpoint allows: (i) the full-blown integration of a limited quantity of primary resources into a non-linear macrodynamics that is stock-flow consistent both in terms of matter-energy and economic transactions; (ii) the inclusion of natural and forced recycling; (iii) the inclusion of a friction term which reflects the impossibility to produce (and recycle)goods and services without exuding energy and matter wastes, and (iv) the computation of the anthropically produced entropy as a function of metabolizing intensity and frictions. Analysis and numerical computations confirm the role played by intensity and frictions as key factors for sustainability by contrast with real GDP growth-as well as the interplay between resource scarcity, income inequality, and inflation. A more egalitarian society with moderate inflation turns out to be more sustainable than an unequal society with low inflation. Our approach is flexible enough to allow for various economic models to be embedded into our thermodynamic framework. Finally, we propose the open source ECODYCO software as a first complete realization implementing economic dynamics in a multi-resource environment.

摘要

本文提出了一个概念模型,描述了地球自然和社会经济子系统的中长期共同演化。经济被视为一种非平衡耗散结构,只有在能量和物质流动的情况下才能维持。这里强调的独特方法在于,通过少量热力学势来捕捉人类活动对自然生态系统消耗的经济影响。这种观点允许:(i)将有限数量的初级资源全面整合到一个非线性宏观动力学中,该动力学在物质 - 能量和经济交易方面都是存量 - 流量一致的;(ii)纳入自然和强制回收利用;(iii)纳入一个摩擦项,该摩擦项反映了在不排放能量和物质废物的情况下生产(和回收)商品和服务的不可能性;以及(iv)将人为产生的熵计算为代谢强度和摩擦的函数。分析和数值计算证实了强度和摩擦作为可持续性关键因素所起的作用,这与实际国内生产总值增长形成对比,同时也证实了资源稀缺、收入不平等和通货膨胀之间的相互作用。一个通货膨胀适度的更加平等的社会比一个通货膨胀低的不平等社会更具可持续性。我们的方法足够灵活,能够将各种经济模型嵌入到我们的热力学框架中。最后,我们提出开源的ECODYCO软件作为在多资源环境中实现经济动态的首个完整实例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d398/10590417/2864940a4fd1/41598_2023_44699_Fig1_HTML.jpg

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