E3ME-FTT: Difference between revisions
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{{ModelInfoTemplate | |||
|Name=E3ME-FTT-GENIE | |||
|Version=6.2 | |||
|ModelLink=https://www.e3me.com/wp-content/uploads/2019/09/E3ME-Technical-Manual-v6.1-onlineSML.pdf | |||
|participation=full | |||
|processState=submitted | |||
}} | |||
{{InstitutionTemplate | |||
|abbr=CE | |||
|institution=Cambridge Econometrics | |||
|link=https://www.camecon.com/ | |||
|country=United Kingdom | |||
}} | |||
{{InstitutionTemplate | |||
|abbr=UNEXE | |||
|institution=Global System Institute, University of Exeter | |||
|link=https://www.exeter.ac.uk/gsi/ | |||
|country=United Kingdom | |||
}} | |||
{{InstitutionTemplate | |||
|abbr=OU | |||
|institution=School of Environment, Earth and Ecosystems Sciences, The Open University | |||
|link=http://www.open.ac.uk/science/environment-earth-ecosystems/ | |||
|country=United Kingdom | |||
}} | |||
{{ScopeMethodTemplate | |||
|ModelTypeOption=Integrated assessment model | |||
|GeographicalScopeOption=Global | |||
|Objective=E3ME is a macro-econometric model designed to assess global policy challenges. It is widely used for policy assessment, forecasting and research purposes. | |||
|SolutionConcept=Econometric | |||
|SolutionMethodOption=Simulation | |||
|BaseYear=2010 | |||
|TimeSteps=yearly | |||
|Horizon=2100 | |||
|Nr=61 | |||
|Region=BEL; DNK; DEU; GRC; ESP; FRA; IRL; ITA; LUX; NLD; AUT; PRT; FIN; SWE; GBR; CZE; EST; CYP; LVA; LTU; HUN; MLT; POL; SVN; SVK; BGR; ROU; NOR; CHE; ISL; HRV; TUR; MKD; USA; JPN; CAN; AUS; NZL; RUS; REST OF ANNEX I; CHN; IND; MEX; BRA; ARG; COL; REST OF LATIN AMERICA; KOR; TWN; IDN; ASEAN; OPEC; REST OF WORLD; UKR; SAU; NGA; ZAF; REST OF AFRICA; AFRICA OPEC; MYS; KAZ | |||
|SpatialText=The major economies are represented individually and all other regions are aggregated based on similarities. | |||
|TimeDiscountingTypeOption=Discount rate exogenous | |||
|PoliciesOption=Emission tax; Emission pricing; Cap and trade; Fuel taxes; Fuel subsidies; Feed-in-tariff; Portfolio standard; Capacity targets; Emission standards; Energy efficiency standards | |||
|Policies=Phase out regulations | |||
}} | |||
{{Socio-economicTemplate | |||
|PopulationOption=Yes (exogenous) | |||
|PopulationAgeStructureOption=Yes (exogenous) | |||
|EducationLevelOption=Yes (exogenous) | |||
|GDPOption=Yes (endogenous) | |||
|IncomeDistributionOption=Yes (endogenous) | |||
|EmploymentRateOption=Yes (endogenous) | |||
|LaborProductivityOption=Yes (endogenous) | |||
|TotalFactorProductivityOption=Yes (endogenous) | |||
|AutonomousEnergyEfficiencyImprovementsOption=Yes (endogenous) | |||
}} | |||
{{Macro-economyTemplate | |||
|TradeOption=Coal; Oil; Gas; Non-energy goods | |||
|Trade=All other major traded economic activities (70 economic sectors); Services | |||
|CostMeasureOption=GDP loss; Welfare loss; Consumption loss | |||
|CategorizationByGroupOption=Income; Age; Gender; Education level | |||
|InstitutionalAndPoliticalFactorsOption=Early retirement of capital allowed; Interest rates differentiated by country/region; Technology costs differentiated by country/region; Technological change differentiated by country/region; Behavioural change differentiated by country/region | |||
|CoalRUOption=Yes (supply curve) | |||
|ConventionalOilRUOption=Yes (supply curve) | |||
|UnconventionalOilRUOption=Yes (supply curve) | |||
|ConventionalGasRUOption=Yes (supply curve) | |||
|UnconventionalGasRUOption=Yes (supply curve) | |||
|UraniumRUOption=Yes (supply curve) | |||
|BioenergyRUOption=Yes (supply curve) | |||
|RawMaterialsRUOption=Yes (process model) | |||
|IndustryESOption=Yes (physical & economic) | |||
|EnergyESOption=Yes (physical & economic) | |||
|TransportationESOption=Yes (physical & economic) | |||
|ResidentialAndCommercialESOption=Yes (physical & economic) | |||
|AgricultureESOption=Yes (economic) | |||
|ForestryESOption=Yes (economic) | |||
|EconomicSector=Services - Yes (Economic); Services (physical); Construction; Manufactures | |||
|EnergyConversionTechnologyTCOption=Endogenous technological change | |||
|EnergyEnd-useTCOption=Endogenous technological change | |||
|TechnologicalChange=Technological progress indicators are used to mimic learning by doing | |||
}} | |||
{{EnergyTemplate | |||
|Behaviour=For specific sectors, FTT is used to estimate investor decision making regarding technology choices. | |||
|EnergyTechnologyChoiceOption=Logit choice model | |||
|EnergyTechnologyChoiceText=Only for power generation sector, residential heat passenger vehicles and iron and steel industry. | |||
|EnergyTechnologySubstitutabilityOption=Mixed high and low substitutability | |||
|EnergyTechnologyDeploymentOption=Expansion and decline constraints; System integration constraints | |||
|ElectricityTechnologyOption=Coal w/o CCS; Coal w/ CCS; Gas w/o CCS; Gas w/ CCS; Oil w/o CCS; Bioenergy w/o CCS; Bioenergy w/ CCS; Geothermal power; Nuclear power; Solar power-CSP; Wind power-onshore; Wind power-offshore; Hydroelectric power; Ocean power | |||
|ElectricityTechnology=Solar power PV | |||
|HeatGenerationOption=Coal heat; Natural gas heat; Oil heat; Biomass heat; Solarthermal heat; CHP (coupled heat and power) | |||
|ElectricityGIOption=Yes (aggregate) | |||
|PassengerTransportationOption=Light Duty Vehicles (LDVs); Electric LDVs; Hybrid LDVs; Gasoline LDVs; Diesel LDVs | |||
|PassengerTransportation=Gasoline Two-wheelers; LPG/CNG LDVs | |||
|IndustryOption=Steel production | |||
|ResidentialAndCommercialOption=Space heating | |||
|ResidentialAndCommercial=Water heating | |||
}} | |||
{{Land-useTemplate | |||
|AgricultureAndForestryDemandsOption=Agriculture food | |||
}} | |||
{{EmissionClimateTemplate | |||
|GHGOption=CO2 fossil fuels; CO2 cement; CH4 energy; CH4 other; N2O energy; N2O other; CFCs; HFCs; SF6; PFCs | |||
|PollutantOption=CO energy; CO other; NOx energy; NOx other; VOC energy; VOC other; SO2 energy; SO2 other; BC energy; BC other; NH3 energy; NH3 other | |||
|Pollutant=PM energy; PM other | |||
|CarbonDioxideRemovalOption=Bioenergy with CCS | |||
|Co-LinkagesOption=Energy security: Fossil fuel imports & exports (region); Air pollution & health: Health impacts of air Pollution | |||
}} |
Latest revision as of 17:44, 26 August 2020
The reference card is a clearly defined description of model features. The numerous options have been organized into a limited amount of default and model specific (non default) options. In addition some features are described by a short clarifying text.
Legend:
- not implemented
- implemented
- implemented (not default option)
A page refresh may be needed after modifying data.
About
Name and version
E3ME-FTT-GENIE 6.2
Institution
Global System Institute, University of Exeter (UNEXE), United Kingdom, https://www.exeter.ac.uk/gsi/., School of Environment, Earth and Ecosystems Sciences, The Open University (OU), United Kingdom, http://www.open.ac.uk/science/environment-earth-ecosystems/., Cambridge Econometrics (CE), United Kingdom, https://www.camecon.com/.
Documentation
E3ME-FTT documentation consists of a referencecard and detailed model documentation
Process state
submitted
Model scope and methods
Model documentation: Model_scope_and_methods - E3ME-FTT
Model type
- Integrated assessment model
- Energy system model
- CGE
- CBA-integrated assessment model
Geographical scope
- Global
- Regional
Objective
E3ME is a macro-econometric model designed to assess global policy challenges. It is widely used for policy assessment, forecasting and research purposes.
Solution concept
- Partial equilibrium (price elastic demand)
- Partial equilibrium (fixed demand)
- General equilibrium (closed economy)
- Econometric
Solution horizon
- Recursive dynamic (myopic)
- Intertemporal optimization (foresight)
Solution method
- Simulation
- Optimization
Temporal dimension
Base year:2010, time steps:yearly, horizon: 2100
Spatial dimension
Number of regions:61
- USA
- CAN
- CHN
- IND
- BRA
- BEL
- DNK
- DEU
- GRC
- ESP
- FRA
- IRL
- ITA
- LUX
- NLD
- AUT
- PRT
- FIN
- SWE
- GBR
- CZE
- EST
- CYP
- LVA
- LTU
- HUN
- MLT
- POL
- SVN
- SVK
- BGR
- ROU
- NOR
- CHE
- ISL
- HRV
- TUR
- MKD
- JPN
- AUS
- NZL
- RUS
- REST OF ANNEX I
- MEX
- ARG
- COL
- REST OF LATIN AMERICA
- KOR
- TWN
- IDN
- ASEAN
- OPEC
- REST OF WORLD
- UKR
- SAU
- NGA
- ZAF
- REST OF AFRICA
- AFRICA OPEC
- MYS
- KAZ
Time discounting type
- Discount rate exogenous
- Discount rate endogenous
Policies
- Emission tax
- Emission pricing
- Cap and trade
- Fuel taxes
- Fuel subsidies
- Feed-in-tariff
- Portfolio standard
- Capacity targets
- Emission standards
- Energy efficiency standards
- Agricultural producer subsidies
- Agricultural consumer subsidies
- Land protection
- Pricing carbon stocks
- Phase out regulations
Socio-economic drivers
Model documentation: Socio-economic drivers - E3ME-FTT
Population
- Yes (exogenous)
- Yes (endogenous)
Population age structure
- Yes (exogenous)
- Yes (endogenous)
Education level
- Yes (exogenous)
- Yes (endogenous)
Urbanization rate
- Yes (exogenous)
- Yes (endogenous)
GDP
- Yes (exogenous)
- Yes (endogenous)
Income distribution
- Yes (exogenous)
- Yes (endogenous)
Employment rate
- Yes (exogenous)
- Yes (endogenous)
Labor productivity
- Yes (exogenous)
- Yes (endogenous)
Total factor productivity
- Yes (exogenous)
- Yes (endogenous)
Autonomous energy efficiency improvements
- Yes (exogenous)
- Yes (endogenous)
Macro-economy
Model documentation: Macro-economy - E3ME-FTT
Economic sector
Industry
- Yes (physical)
- Yes (economic)
- Yes (physical & economic)
Energy
- Yes (physical)
- Yes (economic)
- Yes (physical & economic)
Transportation
- Yes (physical)
- Yes (economic)
- Yes (physical & economic)
Residential and commercial
- Yes (physical)
- Yes (economic)
- Yes (physical & economic)
Agriculture
- Yes (physical)
- Yes (economic)
- Yes (physical & economic)
Forestry
- Yes (physical)
- Yes (economic)
- Yes (physical & economic)
Other economic sector
- Services - Yes (Economic)
- Services (physical)
- Construction
- Manufactures
Macro-economy
Trade
- Coal
- Oil
- Gas
- Uranium
- Electricity
- Bioenergy crops
- Food crops
- Capital
- Emissions permits
- Non-energy goods
- All other major traded economic activities (70 economic sectors)
- Services
Cost measures
- GDP loss
- Welfare loss
- Consumption loss
- Area under MAC
- Energy system cost mark-up
Categorization by group
- Income
- Urban - rural
- Technology adoption
- Age
- Gender
- Education level
- Household size
Institutional and political factors
- Early retirement of capital allowed
- Interest rates differentiated by country/region
- Regional risk factors included
- Technology costs differentiated by country/region
- Technological change differentiated by country/region
- Behavioural change differentiated by country/region
- Constraints on cross country financial transfers
Resource use
Coal
- Yes (fixed)
- Yes (supply curve)
- Yes (process model)
Conventional Oil
- Yes (fixed)
- Yes (supply curve)
- Yes (process model)
Unconventional Oil
- Yes (fixed)
- Yes (supply curve)
- Yes (process model)
Conventional Gas
- Yes (fixed)
- Yes (supply curve)
- Yes (process model)
Unconventional Gas
- Yes (fixed)
- Yes (supply curve)
- Yes (process model)
Uranium
- Yes (fixed)
- Yes (supply curve)
- Yes (process model)
Bioenergy
- Yes (fixed)
- Yes (supply curve)
- Yes (process model)
Water
- Yes (fixed)
- Yes (supply curve)
- Yes (process model)
Raw Materials
- Yes (fixed)
- Yes (supply curve)
- Yes (process model)
Land
- Yes (fixed)
- Yes (supply curve)
- Yes (process model)
Technological change
Energy conversion technologies
- No technological change
- Exogenous technological change
- Endogenous technological change
Energy End-use
- No technological change
- Exogenous technological change
- Endogenous technological change
Material Use
- No technological change
- Exogenous technological change
- Endogenous technological change
Agriculture (tc)
- No technological change
- Exogenous technological change
- Endogenous technological change
Other technological change
- Technological progress indicators are used to mimic learning by doing
Energy
Model documentation: Energy - E3ME-FTT
Behaviour
For specific sectors, FTT is used to estimate investor decision making regarding technology choices.
Energy technology substitution
Energy technology choice
- No discrete technology choices
- Logit choice model
- Production function
- Linear choice (lowest cost)
- Lowest cost with adjustment penalties
Note: Only for power generation sector, residential heat passenger vehicles and iron and steel industry.
Energy technology substitutability
- Mostly high substitutability
- Mostly low substitutability
- Mixed high and low substitutability
Energy technology deployment
- Expansion and decline constraints
- System integration constraints
Energy
Electricity technologies
- Coal w/o CCS
- Coal w/ CCS
- Gas w/o CCS
- Gas w/ CCS
- Oil w/o CCS
- Oil w/ CCS
- Bioenergy w/o CCS
- Bioenergy w/ CCS
- Geothermal power
- Nuclear power
- Solar power
- Solar power-central PV
- Solar power-distributed PV
- Solar power-CSP
- Wind power
- Wind power-onshore
- Wind power-offshore
- Hydroelectric power
- Ocean power
- Solar power PV
Hydrogen production
- Coal to hydrogen w/o CCS
- Coal to hydrogen w/ CCS
- Natural gas to hydrogen w/o CCS
- Natural gas to hydrogen w/ CCS
- Oil to hydrogen w/o CCS
- Oil to hydrogen w/ CCS
- Biomass to hydrogen w/o CCS
- Biomass to hydrogen w/ CCS
- Nuclear thermochemical hydrogen
- Solar thermochemical hydrogen
- Electrolysis
Refined liquids
- Coal to liquids w/o CCS
- Coal to liquids w/ CCS
- Gas to liquids w/o CCS
- Gas to liquids w/ CCS
- Bioliquids w/o CCS
- Bioliquids w/ CCS
- Oil refining
Refined gases
- Coal to gas w/o CCS
- Coal to gas w/ CCS
- Oil to gas w/o CCS
- Oil to gas w/ CCS
- Biomass to gas w/o CCS
- Biomass to gas w/ CCS
Heat generation
- Coal heat
- Natural gas heat
- Oil heat
- Biomass heat
- Geothermal heat
- Solarthermal heat
- CHP (coupled heat and power)
Grid Infra Structure
Electricity
- Yes (aggregate)
- Yes (spatially explicit)
Gas
- Yes (aggregate)
- Yes (spatially explicit)
Heat
- Yes (aggregate)
- Yes (spatially explicit)
CO2
- Yes (aggregate)
- Yes (spatially explicit)
Hydrogen
- Yes (aggregate)
- Yes (spatially explicit)
Energy end-use technologies
Passenger transportation
- Passenger trains
- Buses
- Light Duty Vehicles (LDVs)
- Electric LDVs
- Hydrogen LDVs
- Hybrid LDVs
- Gasoline LDVs
- Diesel LDVs
- Passenger aircrafts
- Gasoline Two-wheelers
- LPG/CNG LDVs
Freight transportation
- Freight trains
- Heavy duty vehicles
- Freight aircrafts
- Freight ships
Industry
- Steel production
- Aluminium production
- Cement production
- Petrochemical production
- Paper production
- Plastics production
- Pulp production
Residential and commercial
- Space heating
- Space cooling
- Cooking
- Refrigeration
- Washing
- Lighting
- Water heating
Land-use
Model documentation: Land-use - E3ME-FTT
Land cover
- Cropland
- Cropland irrigated
- Cropland food crops
- Cropland feed crops
- Cropland energy crops
- Forest
- Managed forest
- Natural forest
- Pasture
- Shrubland
- Built-up area
Agriculture and forestry demands
- Agriculture food
- Agriculture food crops
- Agriculture food livestock
- Agriculture feed
- Agriculture feed crops
- Agriculture feed livestock
- Agriculture non-food
- Agriculture non-food crops
- Agriculture non-food livestock
- Agriculture bioenergy
- Agriculture residues
- Forest industrial roundwood
- Forest fuelwood
- Forest residues
Agricultural commodities
- Wheat
- Rice
- Other coarse grains
- Oilseeds
- Sugar crops
- Ruminant meat
- Non-ruminant meat and eggs
- Dairy products
Emission, climate and impacts
Model documentation: Emissions - E3ME-FTT, Climate - E3ME-FTT, Non-climate sustainability dimension - E3ME-FTT
Greenhouse gases
- CO2 fossil fuels
- CO2 cement
- CO2 land use
- CH4 energy
- CH4 land use
- CH4 other
- N2O energy
- N2O land use
- N2O other
- CFCs
- HFCs
- SF6
- PFCs
Pollutants
- CO energy
- CO land use
- CO other
- NOx energy
- NOx land use
- NOx other
- VOC energy
- VOC land use
- VOC other
- SO2 energy
- SO2 land use
- SO2 other
- BC energy
- BC land use
- BC other
- OC energy
- OC land use
- OC other
- NH3 energy
- NH3 land use
- NH3 other
- PM energy
- PM other
Climate indicators
- Concentration: CO2
- Concentration: CH4
- Concentration: N2O
- Concentration: Kyoto gases
- Radiative forcing: CO2
- Radiative forcing: CH4
- Radiative forcing: N2O
- Radiative forcing: F-gases
- Radiative forcing: Kyoto gases
- Radiative forcing: aerosols
- Radiative forcing: land albedo
- Radiative forcing: AN3A
- Radiative forcing: total
- Temperature change
- Sea level rise
- Ocean acidification
Carbon dioxide removal
- Bioenergy with CCS
- Reforestation
- Afforestation
- Soil carbon enhancement
- Direct air capture
- Enhanced weathering
Climate change impacts
- Agriculture
- Energy supply
- Energy demand
- Economic output
- Built capital
- Inequality
Co-Linkages
- Energy security: Fossil fuel imports & exports (region)
- Energy access: Household energy consumption
- Air pollution & health: Source-based aerosol emissions
- Air pollution & health: Health impacts of air Pollution
- Food access
- Water availability
- Biodiversity
Note: The major economies are represented individually and all other regions are aggregated based on similarities.