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Status ETSAP_TIAM Git project and starting up ETSAP-TIAM update

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Status ETSAP_TIAM Git project and starting up ETSAP-TIAM update

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Status ETSAP_TIAM Git project and starting up ETSAP-TIAM update

  1. 1. Status of the ETSAP_TIAM Git project and starting up the ETSAP-TIAM update Olexandr Balyk and Kenneth Karlsson Energy Systems Analysis Group Systems Analysis Division
  2. 2. DTU Management Engineering, Technical University of Denmark 10 July 2017 ETSAP_TIAM Git project (I) • Enhance collaboration on ETSAP_TIAM by using version control software – GIT – Najub – git hooks for application with FE • Project deliverables – Installation and configuration of VCS and support throughout the project – 2 days workshop in the use of VCS and documentation – Test of the system (participants push improvements) – Updated running version of the model
  3. 3. DTU Management Engineering, Technical University of Denmark 10 July 2017 ETSAP_TIAM Git project (II) • Reviewer group and review protocol – Sandrine (CMA) – James (UCC) – Tamaryn (ICL) – Olexandr (DTU) – Maurizio (E4SMA) • Pushed updates – Added TIAM Macro Functionality (James, UCC) 3
  4. 4. DTU Management Engineering, Technical University of Denmark 10 July 2017 ETSAP_TIAM Update Project (I) • Partners: UCC, CRES, DTU, Najub, E4SMA… open all ETSAP members • Duration: 2 years (from Spring 2017) • Objectives: – Ensure the relevance of the model for analysing e.g. deep cut scenarios – Ensure the quality of the model to enable trustworthy policy analysis – Strengthen the collaboration between ETSAP-TIAM members via joint development of the model – Ensure the competitiveness of ETSAP-TIAM – Lower the start-up costs for new teams 4
  5. 5. DTU Management Engineering, Technical University of Denmark 10 July 2017 ETSAP_TIAM Update Project (II) Deliverables 1. Workshops involving ETSAP-TIAM users for determining needed areas to update in the model and e.g., the number of regions wanted in the model 2. Report with analysis of needed changes in the model 3. Updated data, energy balances, technology SubRES, macroeconomic outlook and trade matrixes 4. Re-calibration of the model and set up of a VEDA-BE database for results analysis, and documentation of ETSAP-TIAM. This includes also minimum two standard scenarios: Reference and a Policy scenario 5
  6. 6. DTU Management Engineering, Technical University of Denmark 10 July 2017 Questions? Thank you for attention! 6
  7. 7. DTU Management Engineering, Technical University of Denmark 10 July 2017 Version controlled ETSAP-TIAM 7 Climate Module Atm. Conc. ΔForcing ΔTemp Used for reporting & setting targets Biomass Potential Renewable Potential Nuclear Fossil Fuel Reserves (oil, coal, gas) Extraction Upstream Fuels Trade Secondary Transformation OPEC/ NON-OPEC regrouping Electricity Fuels Electricity Cogeneration Heat Hydrogen production and distribution End Use Fuels Industrial Service Composition Auto Production Cogeneration Carbon capture CH4 options Carbon sequestration Terrestrial sequestration Landfills Manure Bio burning, rice, enteric ferm Wastewater CH4 options N2O options CH4 options OI**** GA**** CO**** Trade ELC*** WIN SOL GEO TDL BIO*** NUC HYD BIO*** HETHET ELC ELC SYNH2 BIO*** CO2 ELC GAS*** COA*** Industrial Tech. Commercial Tech. Transport Tech. Residential Tech. Agriculture Tech. I*** I** (6) T** (16)R** (11)C** (8)A** (1) INDELC INDELC IS** Demands IND*** COM***AGR*** TRA***RES*** Non-energy sectors (CH4) OIL*** Climate Module Atm. Conc. ΔForcing ΔTemp Used for reporting & setting targets Biomass Potential Renewable Potential Nuclear Fossil Fuel Reserves (oil, coal, gas) Extraction Upstream Fuels Trade Secondary Transformation OPEC/ NON-OPEC regrouping Electricity Fuels Electricity Cogeneration Heat Hydrogen production and distribution End Use Fuels Industrial Service Composition Auto Production Cogeneration Carbon capture CH4 options Carbon sequestration Terrestrial sequestration Landfills Manure Bio burning, rice, enteric ferm Wastewater CH4 options N2O options CH4 options OI**** GA**** CO**** Trade ELC*** WIN SOL GEO TDL BIO*** NUC HYD BIO*** HETHET ELC ELC SYNH2 BIO*** CO2 ELC GAS*** COA*** Industrial Tech. Commercial Tech. Transport Tech. Residential Tech. Agriculture Tech. I*** I** (6) T** (16)R** (11)C** (8)A** (1) INDELC INDELC IS** Demands IND*** COM***AGR*** TRA***RES*** Non-energy sectors (CH4) OIL*** Climate Module Atm. Conc. ΔForcing ΔTemp Used for reporting & setting targets Biomass Potential Renewable Potential Nuclear Fossil Fuel Reserves (oil, coal, gas) Extraction Upstream Fuels Trade Secondary Transformation OPEC/ NON-OPEC regrouping Electricity Fuels Electricity Cogeneration Heat Hydrogen production and distribution End Use Fuels Industrial Service Composition Auto Production Cogeneration Carbon capture CH4 options Carbon sequestration Terrestrial sequestration Landfills Manure Bio burning, rice, enteric ferm Wastewater CH4 options N2O options CH4 options OI**** GA**** CO**** Trade ELC*** WIN SOL GEO TDL BIO*** NUC HYD BIO*** HETHET ELC ELC SYNH2 BIO*** CO2 ELC GAS*** COA*** Industrial Tech. Commercial Tech. Transport Tech. Residential Tech. Agriculture Tech. I*** I** (6) T** (16)R** (11)C** (8)A** (1) INDELC INDELC IS** Demands IND*** COM***AGR*** TRA***RES*** Non-energy sectors (CH4) OIL*** Climate Module Atm. Conc. ΔForcing ΔTemp Used for reporting & setting targets Biomass Potential Renewable Potential Nuclear Fossil Fuel Reserves (oil, coal, gas) Extraction Upstream Fuels Trade Secondary Transformation OPEC/ NON-OPEC regrouping Electricity Fuels Electricity Cogeneration Heat Hydrogen production and distribution End Use Fuels Industrial Service Composition Auto Production Cogeneration Carbon capture CH4 options Carbon sequestration Terrestrial sequestration Landfills Manure Bio burning, rice, enteric ferm Wastewater CH4 options N2O options CH4 options OI**** GA**** CO**** Trade ELC*** WIN SOL GEO TDL BIO*** NUC HYD BIO*** HETHET ELC ELC SYNH2 BIO*** CO2 ELC GAS*** COA*** Industrial Tech. Commercial Tech. Transport Tech. Residential Tech. Agriculture Tech. I*** I** (6) T** (16)R** (11)C** (8)A** (1) INDELC INDELC IS** Demands IND*** COM***AGR*** TRA***RES*** Non-energy sectors (CH4) OIL*** Climate Module Atm. Conc. ΔForcing ΔTemp Used for reporting & setting targets Biomass Potential Renewable Potential Nuclear Fossil Fuel Reserves (oil, coal, gas) Extraction Upstream Fuels Trade Secondary Transformation OPEC/ NON-OPEC regrouping Electricity Fuels Electricity Cogeneration Heat Hydrogen production and distribution End Use Fuels Industrial Service Composition Auto Production Cogeneration Carbon capture CH4 options Carbon sequestration Terrestrial sequestration Landfills Manure Bio burning, rice, enteric ferm Wastewater CH4 options N2O options CH4 options OI**** GA**** CO**** Trade ELC*** WIN SOL GEO TDL BIO*** NUC HYD BIO*** HETHET ELC ELC SYNH2 BIO*** CO2 ELC GAS*** COA*** Industrial Tech. Commercial Tech. Transport Tech. Residential Tech. Agriculture Tech. I*** I** (6) T** (16)R** (11)C** (8)A** (1) INDELC INDELC IS** Demands IND*** COM***AGR*** TRA***RES*** Non-energy sectors (CH4) OIL*** Climate Module Atm. Conc. ΔForcing ΔTemp Used for reporting & setting targets Biomass Potential Renewable Potential Nuclear Fossil Fuel Reserves (oil, coal, gas) Extraction Upstream Fuels Trade Secondary Transformation OPEC/ NON-OPEC regrouping Electricity Fuels Electricity Cogeneration Heat Hydrogen production and distribution End Use Fuels Industrial Service Composition Auto Production Cogeneration Carbon capture CH4 options Carbon sequestration Terrestrial sequestration Landfills Manure Bio burning, rice, enteric ferm Wastewater CH4 options N2O options CH4 options OI**** GA**** CO**** Trade ELC*** WIN SOL GEO TDL BIO*** NUC HYD BIO*** HETHET ELC ELC SYNH2 BIO*** CO2 ELC GAS*** COA*** Industrial Tech. Commercial Tech. Transport Tech. Residential Tech. Agriculture Tech. I*** I** (6) T** (16)R** (11)C** (8)A** (1) INDELC INDELC IS** Demands IND*** COM***AGR*** TRA***RES*** Non-energy sectors (CH4) OIL*** Version X Version ETSAP-TIAM Master Review process …….……. Modelling groups Version ETSAP-TIAM Developer Improvements ….
  8. 8. DTU Management Engineering, Technical University of Denmark 10 July 2017 Brief follow-up of the different versions of TIAM (Maryse) Name of the model Institution Contact (name, email) Number of regions in the model List of regions in the model Base year Main changes made in the model (other than regions and base year) Most recent applications Most recent publications 8

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