Earth system economics: a biophysical approach to the human component of the Earth system

E. Galbraith
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引用次数: 2

Abstract

Abstract. The study of humans has largely been carried out in isolation from the study of the non-human Earth system. This isolation has encouraged the development of incompatible philosophical, aspirational, and methodological approaches that have proven very difficult to integrate with those used for the non-human remainder of the Earth system. Here, an approach is laid out for the scientific study of the global human system that is intended to facilitate seamless integration with non-human processes by striving for a consistent physical basis, for which the name Earth system economics is proposed. The approach is typified by a foundation on state variables, central among which is the allocation of time amongst activities by human populations, and an orientation towards considering human experience. A framework is elaborated which parses the Earth system into six classes of state variables, including a neural structure class that underpins many essential features of humanity. A working example of the framework is then illustrated with a simple numerical model, considering a global population that is engaged in one of two waking activities: provisioning food or doing something else. The two activities are differentiated by their motivational factors, outcomes on state variables, and associated subjective experience. While the illustrative model is a gross simplification of reality, the results suggest how neural characteristics and subjective experience can emerge from model dynamics. The approach is intended to provide a flexible and widely applicable strategy for understanding the human–Earth system, appropriate for physically based assessments of the past and present, as well as contributing to long-term model projections that are naturally oriented towards improving human well-being.
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地球系统经济学:研究地球系统中人类组成部分的生物物理学方法
摘要对人类的研究在很大程度上是与对非人类的地球系统的研究分开进行的。这种孤立鼓励了不相容的哲学、理想和方法论方法的发展,这些方法已被证明很难与用于地球系统非人类剩余部分的方法相结合。在这里,为全球人类系统的科学研究提出了一种方法,旨在通过争取一致的物理基础来促进与非人类过程的无缝整合,为此提出了地球系统经济学的名称。该方法以状态变量为基础,其中的中心是人类在活动中分配时间,以及考虑人类经验的方向。详细阐述了将地球系统解析为六类状态变量的框架,其中包括支持人类许多基本特征的神经结构类。然后用一个简单的数值模型说明了该框架的一个工作示例,考虑到从事两种清醒活动之一的全球人口:提供食物或做其他事情。这两种活动由它们的动机因素、状态变量的结果和相关的主观经验来区分。虽然说明性模型是对现实的粗略简化,但结果表明神经特征和主观经验是如何从模型动力学中产生的。这种方法的目的是提供一种灵活和广泛适用的战略,以了解人类-地球系统,适合于对过去和现在进行基于物理的评估,并有助于自然面向改善人类福祉的长期模式预测。
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