1 / 12

15 MW Geothermal Energy Plant

15 MW Geothermal Energy Plant. Stephen Mc Loughlin Stephen Devlin Paul O Reilly Mark Flanagan. Benefits of Geothermal Energy. Not dependant on climate – Available 24/7 Secure, Reliable and Unlimited Energy Supply Decreases dependency on fossil fuels Price of energy will not change

Télécharger la présentation

15 MW Geothermal Energy Plant

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. 15 MW Geothermal Energy Plant Stephen Mc Loughlin Stephen Devlin Paul O Reilly Mark Flanagan

  2. Benefits of Geothermal Energy • Not dependant on climate – Available 24/7 • Secure, Reliable and Unlimited Energy Supply • Decreases dependency on fossil fuels • Price of energy will not change • Low Emissions and Visual impact • No Air or Water Pollution • Only small amount of land required • Running costs are very low

  3. Budget & Finance Figures not correct, this is just basic idea for the slide • Research , geophysical surveys and test drilling – 4 Million • Planning and consultations – 2 million • Cost of Transmission Line – 4Million. • Cost of plant build – 20 Million • Assumed Online Availability Factor = 95% • Operation and Maintenance Costs for Plant and Field in cents/kWh = 1c • Production prices of about 5-7 cent per KWh once running • Electricity Sales Price in cents/kWh = 12 cents • Money made from Electricity Sales Price in cents/kWh = 5 cents • Average Cost of Production Well = 10 million • Average Cost of Injection Well = 10 million • Total Capital Costs of the Geothermal Power Project per kW = 50M • Total Capital Costs of the Geothermal Power Project per kW – 3000Euro • Payback Period = 10 – 15 years

  4. Budget & Finance

  5. Risk – Barriers • High initial capital costs. • Environmental risk – fines and penalties. • Planning, permit and legislation – any changes hold up project. • Inappropriate funding schemes • Inappropriate legal framework • Geographical risk–Tremors, land subsidence, temperature decline • Pre build risks – survey errors and research oversight. • Failure of Equipment or injection/production Wells • Cost over runs over the life of the project.

  6. Risk Mitigation • Government cost sharing and grant schemes. • Large database of research and operation projects. • Be informed of up to date technical information and associated risk. • Tax incentives. • Funding From Sustainable Energy Authority (SEAI) • Having a Power Purchase Agreement in place - help to raise financial support • European geothermal fund scheme– GEOFUND • Guaranteed loan structure.

  7. Project plan & Timeline

  8. Project plan & Timeline

  9. Finding A Suitable Location • High Temperature Gradient • Possibly at a natural fault line (Fracture) • Near Transmission or a large Industry • Near Supply of Water for Cooling • Good Surrounding Infrastructure • Reasonably priced Land – Private • Local Community impacts and planning

  10. Temperature Gradient & Fault Lines

  11. Transmission & Available Land and Water

  12. Infrastructure

More Related