Author institution
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CIRED +
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Authors
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Behrang Shirizadeh, Philippe Quirion +
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Citation doi
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10.1016/j.eneco.2020.105004 +
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Citation references
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Shirizadeh, B. & Quirion, P. (2020). Low-carbon options for French power sector: What role for renewables, nuclear energy and carbon capture and storage? Energy Economics, 105004.
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Contact email
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shirizadeh@centre-cired.fr +
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Contact persons
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Behrang Shirizadeh +
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Data availability
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all +
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Decisions
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dispatch +
, investment +
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Deterministic
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Deterministic; Perfect foresight; Sensitivity analysis ; +
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Full Model Name
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Energy Optimization for Low Emission Systems - electricity +
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Georesolution
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Country level +
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Is suited for many scenarios
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false +
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License
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Creative Commons Attribution Share-Alike 4.0 (CC-BY-SA-4.0) +
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Math modeltype
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Optimization +
, Simulation +
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Math modeltype shortdesc
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Simultaneous optimization of dispatch and investment (linear programming), solved in CPLEX solver of GAMS +
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Math objective
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investment cost and operational costs (fixed and variable) minimization +
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Model class
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Electricity System Model +
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Model source public
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true +
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Modelling software
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GAMS +
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Network coverage
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transmission +
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Open future
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false +
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Open source licensed
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true +
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Sectors
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Electricity Sector +
, Carbon Market +
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Technologies
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Renewables +
, Conventional Generation +
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Text description
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The EOLES family of models optimizes the i … The EOLES family of models optimizes the investment and operation of an energy system
in order to minimize the total cost while satisfying energy demand. EOLES_elec is the
electricity version of this family of models. It minimizes the annualized power generation
and storage costs, including the cost of connection to the grid. It includes eight power
generation technologies: offshore and onshore wind power, solar photovoltaics (PV), runof-river and lake-generated hydro-electricity, nuclear power (EPR, i.e. third generation
European pressurized water reactors), open-cycle gas turbines and combined-cycle gas
turbines equipped with post-combustion carbon capture and storage. The latter two
generation technologies burn methane which can come from three sources: fossil natural
gas, biogas from anaerobic digestion and renewable gas from power-to-gas technology
(methanation). EOLES_elec also includes four energy storage technologies: pumped hydro storage (PHS), Li-Ion batteries and two types of methanation (with and without CCS).pes of methanation (with and without CCS).
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Timeresolution
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Hour +
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Website
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http://www.centre-cired.fr/fr/behrang-shirizadeh/ +
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Creation dateThis property is a special property in this wiki.
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26 May 2020 15:35:41 +
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Has improper value forThis property is a special property in this wiki.
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Source download +
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Categories |
Model +
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Last editor isThis property is a special property in this wiki.
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User:Behrang Shirizadeh +
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Modification dateThis property is a special property in this wiki.
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31 December 2020 10:54:13 +
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Is a new pageThis property is a special property in this wiki.
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false +
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