An overview of salient factors, relationships and values to support integrated energy-economic systems dynamic modeling

Integrated energy-economic modelling is needed to support the development of energy and climate policies. This study asserts that it is important to consider a system dynamics modelling approach that includes dynamics, endogenous treatment of uncertainty and risks, and both aggregate economic and di...

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Main Authors: Martin De Wit, Matthew Heun, Douglas Crookes
Format: Article
Language:English
Published: University of Cape Town 2018-12-01
Series:Journal of Energy in Southern Africa
Subjects:
Online Access:https://journals.assaf.org.za/index.php/jesa/article/view/3417
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spelling doaj-5c99dfdfad3d41c3933119a91eb9a2032020-11-24T23:55:39ZengUniversity of Cape TownJournal of Energy in Southern Africa1021-447X2413-30512018-12-0129427363417An overview of salient factors, relationships and values to support integrated energy-economic systems dynamic modelingMartin De Wit0Matthew Heun1Douglas Crookes2University of StellenboschCalvin CollegeIndependent ResearcherIntegrated energy-economic modelling is needed to support the development of energy and climate policies. This study asserts that it is important to consider a system dynamics modelling approach that includes dynamics, endogenous treatment of uncertainty and risks, and both aggregate economic and disaggregate technical or engineering levels of analysis. The study examined the economic growth and the factors of production, elasticities, macro- and technical substitutability; energy cost shares, heat engine efficiencies and energy services efficiencies. Emphasis was laid on the support of the future development of integrated energy-economic models covering (a) the key factors or components; (b) the relationships among these components; (c) a quantification of parameters; and (d) the implications for the development of an integrated energy-economic system dynamics model. The study suggested the following: a non-linear relationship in production and consumption; large variations among price and income elasticity values across time frames, across countries and regions, and across energy goods; a far from perfect substitution among factors of production and among energy goods on a macro-level; technical/engineering limits to substitution on a micro-level; and engineering and behavioural limits on what can be achieved with increased efficiencies. The study argues that integrated energy-economic modelling intensifies the accounting for the factors, relationships, quantifications, and implications, and that this practice allows for such models to describe a complex, emergent energy-economic reality that informs better energy policy.https://journals.assaf.org.za/index.php/jesa/article/view/3417energy-economic modelingelasticitiestechnical substitutionenergy efficiencyenergy cost share
collection DOAJ
language English
format Article
sources DOAJ
author Martin De Wit
Matthew Heun
Douglas Crookes
spellingShingle Martin De Wit
Matthew Heun
Douglas Crookes
An overview of salient factors, relationships and values to support integrated energy-economic systems dynamic modeling
Journal of Energy in Southern Africa
energy-economic modeling
elasticities
technical substitution
energy efficiency
energy cost share
author_facet Martin De Wit
Matthew Heun
Douglas Crookes
author_sort Martin De Wit
title An overview of salient factors, relationships and values to support integrated energy-economic systems dynamic modeling
title_short An overview of salient factors, relationships and values to support integrated energy-economic systems dynamic modeling
title_full An overview of salient factors, relationships and values to support integrated energy-economic systems dynamic modeling
title_fullStr An overview of salient factors, relationships and values to support integrated energy-economic systems dynamic modeling
title_full_unstemmed An overview of salient factors, relationships and values to support integrated energy-economic systems dynamic modeling
title_sort overview of salient factors, relationships and values to support integrated energy-economic systems dynamic modeling
publisher University of Cape Town
series Journal of Energy in Southern Africa
issn 1021-447X
2413-3051
publishDate 2018-12-01
description Integrated energy-economic modelling is needed to support the development of energy and climate policies. This study asserts that it is important to consider a system dynamics modelling approach that includes dynamics, endogenous treatment of uncertainty and risks, and both aggregate economic and disaggregate technical or engineering levels of analysis. The study examined the economic growth and the factors of production, elasticities, macro- and technical substitutability; energy cost shares, heat engine efficiencies and energy services efficiencies. Emphasis was laid on the support of the future development of integrated energy-economic models covering (a) the key factors or components; (b) the relationships among these components; (c) a quantification of parameters; and (d) the implications for the development of an integrated energy-economic system dynamics model. The study suggested the following: a non-linear relationship in production and consumption; large variations among price and income elasticity values across time frames, across countries and regions, and across energy goods; a far from perfect substitution among factors of production and among energy goods on a macro-level; technical/engineering limits to substitution on a micro-level; and engineering and behavioural limits on what can be achieved with increased efficiencies. The study argues that integrated energy-economic modelling intensifies the accounting for the factors, relationships, quantifications, and implications, and that this practice allows for such models to describe a complex, emergent energy-economic reality that informs better energy policy.
topic energy-economic modeling
elasticities
technical substitution
energy efficiency
energy cost share
url https://journals.assaf.org.za/index.php/jesa/article/view/3417
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