Skip to content
EEEP
Menu
  • 2012
    • Volume 1
      • Number 1
      • Number 2
      • Number 3
  • 2013
    • Volume 2
      • Number 1
      • Number 2
  • 2014
    • Volume 3
      • Number 1
      • Number 2
  • 2015
    • Volume 4
      • Number 1
      • Number 2
  • 2016
    • Volume 5
      • Number 1
      • Number 2
  • 2017
    • Volume 6
      • Number 1
      • Number 2
  • 2018
    • Volume 7
      • Number 1
      • Number 2
  • 2019
    • Volume 8
      • Number 1
      • Number 2
  • 2020
    • Volume 9
      • Number 1
      • Number 2
  • 2021
    • Volume 10
      • Number 1
      • Number 2
    • Volume 9
      • Number 2
  • 2022
    • Volume 10
      • Number 2
    • Volume 11
      • Number 1
      • Number 2
  • 2023
    • Volume 11
      • Number 2
    • Volume 12
      • Number 1
      • Number 2
  • 2024
    • Volume 13
      • Number 1
      • Number 2
  • 2025
    • Volume 14
      • Number 1
  • 2026
    • Volume 15
      • Number 1
Menu

EEEP » 2020 » Volume 9 » Number 1 » Lessons from Modeling 100% Renewable Scenarios Using GENeSYS-MOD

Lessons from Modeling 100% Renewable Scenarios Using GENeSYS-MOD

Posted on February 4, 2026February 9, 2026 by admin

The main aim of models has never been to provide numbers, but insights. Still, challenges prevail for modelers to use the best configuration of their models to provide helpful insights. In the case of energy system modelling, this becomes even more complicated due to increasing complexity of the energy system transition through the potential and need for sector coupling. This paper therefore showcases specific characteristics and challenges for energy system modelling of 100% renewable scenarios. The findings are based on various applications and modifications of the framework GENeSYS-MOD examining different regional characteristics for high renewable configurations in the world, China, India, South-Africa, Mexico, Europe, Germany, and Colombia. The paper elaborates on our experiences of the last years of choosing the best, yet still computable, configuration of GENeSYS-MOD with respect to spatial and time resolution as well as sufficient detailed description of the energy system transition effects. The aim of this paper is therefore twofold, to better understand and interpret existing models as well as to improve future modeling exercises.

Authors: Pao-Yu Oei, Thorsten Burandt, Karlo Hainsch, Konstantin Löffler and Claudia Kemfert
DOI: 10.5547/2160-5890.9.1.poei
Keywords: Climate policy, Energy system, Energy transition, modeling, Renewables, Scenarios
🔐 Download PDF🔐 Executive Summary PDF

Account

  • Log in

Tags

Air pollution carbon emissions Carbon tax China Climate change Climate change mitigation Climate policy Coal computable general equilibrium Cost of Debt Decentralized energy governance Demand side difference-­in-­differences Electricity generation Electricity market design Electricity markets Energy Energy efficiency Energy Policy Energy R&D Energy security Energy transition environmental regulation Europe evaluation Geopolitics Introduction Investment Long-term contracts Middle East Natural gas Oil prices Regional markets Regulation Renewable energy Renewables Resilience Resource adequacy Scenario analysis Scenarios Sustainability sustainable development Techno-bias Transmission benefits willingness-to-pay

Archives

  • March 2026
  • February 2026
© 2026 EEEP | Powered by Minimalist Blog WordPress Theme