Difference between revisions of "References - POLES"

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  |author=Organisation for Economic Co-operation and Development; Nuclear Energy Agency|+sep=;
 
  |author=Organisation for Economic Co-operation and Development; Nuclear Energy Agency|+sep=;
 
  |publisher=OECD
 
  |publisher=OECD
|month=
 
 
  |year=2014
 
  |year=2014
 
  |institution=OECD/NEA
 
  |institution=OECD/NEA
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  |subject=Energy(all);Management, Monitoring, Policy and Law|+sep=;
 
  |subject=Energy(all);Management, Monitoring, Policy and Law|+sep=;
 
  |issn=0301-4215
 
  |issn=0301-4215
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}}
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{{#scite:
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|reference=kriegler2015di
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|type=journal-article
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|title=Diagnostic indicators for integrated assessment models of climate policy
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|author=Elmar Kriegler;Nils Petermann;Volker Krey;Valeria Jana Schwanitz;Gunnar Luderer;Shuichi Ashina;Valentina Bosetti;Jiyong Eom;Alban Kitous;Aurélie Méjean;Leonidas Paroussos;Fuminori Sano;Hal Turton;Charlie Wilson;Detlef P. Van Vuuren|+sep=;
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|journal=Technological Forecasting and Social Change
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|publisher=Elsevier BV
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|year=2015
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|volume=90
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|pages=45-61
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|doi=10.1016/j.techfore.2013.09.020
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|subject=Management of Technology and Innovation;Applied Psychology;Business and International Management|+sep=;
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|issn=0040-1625
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}}
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{{#scite:
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|reference=kitous2010tr
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|type=journal-article
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|title=Transformation Patterns of the Worldwide Energy System - Scenarios for the Century with the POLES Model
 +
|author=Alban Kitous;Patrick Criqui;Elie Bellevrat;Bertrand Chateau|+sep=;
 +
|journal=The Energy Journal
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|publisher=International Association for Energy Economics (IAEE)
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|year=2010
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|volume=31
 +
|issue=01
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|doi=10.5547/issn0195-6574-ej-vol31-nosi-3
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|subject=Energy(all);Economics and Econometrics|+sep=;
 +
|issn=0195-6574
 +
}}
 +
{{#scite:
 +
|reference=EC 2006
 +
|type=report
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|title=World Energy Technology Outlook 2050: WETO H2. [http://bookshop.europa.eu/uri?target=EUB:NOTICE:KINA22038]
 +
|author=European Commission
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|year=2006
 +
|institution=European Commission
 +
|address=Brussels, Belgium
 +
}}
 +
{{#scite:
 +
|reference=EC 2003
 +
|type=report
 +
|title=World energy, technology and climate policy outlook 2030: WETO. [http://bookshop.europa.eu/uri?target=EUB:NOTICE:KINA20366]
 +
|author=European Commission
 +
|year=2006
 +
|institution=European Commission
 +
|address=Brussels, Belgium
 +
}}
 +
 +
{{#scite:
 +
|reference=kriegler2015ma
 +
|type=journal-article
 +
|title=Making or breaking climate targets: The AMPERE study on staged accession scenarios for climate policy
 +
|author=Elmar Kriegler;Keywan Riahi;Nico Bauer;Valeria Jana Schwanitz;Nils Petermann;Valentina Bosetti;Adriana Marcucci;Sander Otto;Leonidas Paroussos;Shilpa Rao;Tabaré Arroyo Currás;Shuichi Ashina;Johannes Bollen;Jiyong Eom;Meriem Hamdi-Cherif;Thomas Longden;Alban Kitous;Aurélie Méjean;Fuminori Sano;Michiel Schaeffer;Kenichi Wada;Pantelis Capros;Detlef P. van Vuuren;Ottmar Edenhofer|+sep=;
 +
|journal=Technological Forecasting and Social Change
 +
|publisher=Elsevier BV
 +
|year=2015
 +
|volume=90
 +
|pages=24-44
 +
|doi=10.1016/j.techfore.2013.09.021
 +
|subject=Management of Technology and Innovation;Applied Psychology;Business and International Management|+sep=;
 +
|issn=0040-1625
 +
}}
 +
{{#scite:
 +
|reference=criqui1999ma
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|type=journal-article
 +
|title=Marginal abatement costs of CO2 emission reductions, geographical flexibility and concrete ceilings: an assessment using the POLES model
 +
|author=Patrick Criqui;Silvana Mima;Laurent Viguier|+sep=;
 +
|journal=Energy Policy
 +
|publisher=Elsevier BV
 +
|year=1999
 +
|volume=27
 +
|issue=10
 +
|pages=585-601
 +
|doi=10.1016/s0301-4215(99)00051-8
 +
|subject=Energy(all);Management, Monitoring, Policy and Law|+sep=;
 +
|issn=0301-4215
 +
}}
 +
 +
{{#scite:
 +
|reference=rafaj2012co
 +
|type=journal-article
 +
|title=Co-benefits of post-2012 global climate mitigation policies
 +
|author=Peter Rafaj;Wolfgang Schöpp;Peter Russ;Chris Heyes;Markus Amann|+sep=;
 +
|journal=Mitigation and Adaptation Strategies for Global Change
 +
|publisher=Springer Nature
 +
|year=2012
 +
|volume=18
 +
|issue=6
 +
|pages=801-824
 +
|doi=10.1007/s11027-012-9390-6
 +
|subject=Ecology;Global and Planetary Change|+sep=;
 +
|issn=1381-2386;1573-1596|+sep=;
 +
}}
 +
{{#scite:
 +
|reference=markandya2009pu
 +
|type=journal-article
 +
|title=Public health benefits of strategies to reduce greenhouse-gas emissions: low-carbon electricity generation
 +
|author=Anil Markandya;Ben G Armstrong;Simon Hales;Aline Chiabai;Patrick Criqui;Silvana Mima;Cathryn Tonne;Paul Wilkinson|+sep=;
 +
|journal=The Lancet
 +
|publisher=Elsevier BV
 +
|year=2009
 +
|volume=374
 +
|issue=9706
 +
|pages=2006-2015
 +
|doi=10.1016/s0140-6736(09)61715-3
 +
|subject=Medicine(all)
 +
|issn=0140-6736
 
}}
 
}}

Revision as of 17:11, 2 February 2017

Model Documentation - POLES

Corresponding documentation
Previous versions
Model information
Model link
Institution JRC - Joint Research Centre - European Commission (EC-JRC), Belgium, http://ec.europa.eu/jrc/en/.
Solution concept Partial equilibrium (price elastic demand)
Solution method SimulationRecursive simulation
Anticipation Myopic

EDGAR 1 testing OECD/NEA 2014 2 testing











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References

  1. ^  |  Kitous A., Keramidas K. (2014). Analysis of scenarios integrating the INDCs. [1]. Seville, Spain: European Commission - Joint Research Centre.
  2. ^  |  Organisation for Economic Co-operation and Development, Nuclear Energy Agency (2014). Uranium 2014: Resources, Production and Demand. A Joint Report by the OECD Nuclear Energy Agency and the International Atomic Energy Agency. NEA No. 7209. [1]. Paris, France: OECD/NEA.