|
|
| Line 2: |
Line 2: |
| | |Full_Model_Name=CapacityExpansion | | |Full_Model_Name=CapacityExpansion |
| | |author_institution=Stanford University, RWTH Aachen | | |author_institution=Stanford University, RWTH Aachen |
| − | |authors=Elias Kuepper, Holger Teichgraeber, Patricia Levi, Ali Ramadhan | + | |authors=Lucas Elias Kuepper, Holger Teichgraeber, Patricia Levi, Ali Ramadhan |
| − | |contact_persons=Elias Kuepper | + | |contact_persons=Lucas Elias Kuepper |
| | |contact_email=elias.kuepper@rwth-aachen.de | | |contact_email=elias.kuepper@rwth-aachen.de |
| | |website=https://youngfaithful.github.io/CapacityExpansion.jl/stable/ | | |website=https://youngfaithful.github.io/CapacityExpansion.jl/stable/ |
| Line 9: |
Line 9: |
| | |logo=Cep text.svg | | |logo=Cep text.svg |
| | |text_description=CapacityExpansion is a julia implementation of an input-data-scaling capacity expansion modeling framework. | | |text_description=CapacityExpansion is a julia implementation of an input-data-scaling capacity expansion modeling framework. |
| − |
| |
| | |Primary outputs=interface between the optimization result and further analysis | | |Primary outputs=interface between the optimization result and further analysis |
| | |Framework=JUMP/julia | | |Framework=JUMP/julia |
Latest revision as of 08:30, 2 November 2020
|
CapacityExpansion
by Stanford University, RWTH Aachen
Authors: Lucas Elias Kuepper, Holger Teichgraeber, Patricia Levi, Ali Ramadhan
Contact: Lucas Elias Kuepper
|
CapacityExpansion is a julia implementation of an input-data-scaling capacity expansion modeling framework.
Based on Julia/JuMP. Using Julia for data processing.
Website / Documentation
Download
|
Open Source MIT license (MIT)
Directly downloadable
Input data shipped
|
| Model Scope |
Model type and solution approach |
| Model class
|
Capacity Expansion Problem
|
| Sectors
|
electricity, heat, gas
|
| Technologies
|
|
| Decisions
|
dispatch, investment
|
| Regions
|
input data dependent
|
| Geographic Resolution
|
input data dependent
|
| Time resolution
|
|
| Network coverage
|
|
|
| Model type
|
Optimization
|
|
|
Optimization, Linear optimization model input-data depending energy system
|
| Variables
|
input data dependent"input data dependent" is not a number.
|
| Computation time
|
minutes
|
| Objective
|
Total system cost
|
| Uncertainty modeling
|
|
| Suited for many scenarios / monte-carlo
|
Yes
|
|
References
Scientific references
https://joss.theoj.org/papers/10.21105/joss.02034#
https://dx.doi.org/https://doi.org/10.21105/joss.02034
Example research questions
CapacityExpansioncan be applied to plan and validate a variety of energy systems. Thefocus on time-series aggregation, storage modelling, and integration of multiple energy carriersmake it especially valuable for the planning and validation of future energy systems with highershares of non-dispatchable generation and sector coupling technologie
◀ back to model list