Author:
Jarvis A. J.,Jarvis S. J.,Hewitt C. N.
Abstract
Abstract. A key feature of the growth of industrial society is the acquisition of increasing quantities of resources from the environment and their distribution for end-use. With respect to energy, the growth of industrial society appears to have been near-exponential for the last 160 years. We provide evidence that indicates that the global distribution of resources that underpins this growth may be facilitated by the continual development and expansion of near-optimal directed networks (roads, railways, flight paths, pipelines, cables etc.). However, despite this continual striving for optimisation, the distribution efficiencies of these networks must decline over time as they expand due to path lengths becoming longer and more tortuous. Therefore, to maintain long-term exponential growth the physical limits placed on the distribution networks appear to be counteracted by innovations deployed elsewhere in the system, namely at the points of acquisition and end-use of resources. We postulate that the maintenance of the growth of industrial society, as measured by global energy use, at the observed rate of ~ 2.4 % yr−1 stems from an implicit desire to optimise patterns of energy use over human working lifetimes.
Funder
Engineering and Physical Sciences Research Council
Subject
General Earth and Planetary Sciences
Reference40 articles.
1. Ausbel, J.: Regularities in Technological Development: An Environmental View, in: Technology and Environment, edited by: Ausubel, J. H. and Sladovich, H. E., National Academies Press, Washington, D.C., 1989.
2. Ausbel, J. and Grübler, A.: Working less and living longer: Long-term trends in working time and time budgets, Tech. Forecast. Social Change, 50, 113–131, 1995.
3. Ayres, R. U.: Energy Inefficiency in the US Economy: A New Case for Conservation. IIASA Research Report RR-89-12, International Institute for Applied Systems Analysis, Laxenburg, 1989.
4. Banavar, J. R., Moses, M. E., Brown, J. H., Rinaldo, A., Sibly, R. M., and Maritan, A.: A general basis for quarter power scaling in animals, P. Natl. Acad. Sci. USA, 107, 15816–15820, 2010.
5. Bettencourt, L. M. A.: The origins of scaling in cities, Science, 340, 1438–1441, 2013.
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