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Enhanced Geothermal Systems and other Deep Geothermal Applications throughout Europe: The MEET Project

Enhanced Geothermal Systems and other Deep Geothermal Applications throughout Europe: The MEET Project

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The MEET Special Issue aims at showing the gains in geothermal energy that can be achieved using a variety of techniques, depending on the geological setting of the underground. Among the list of exploitation concepts, enhanced geothermal systems (EGS) are particularly interesting, as their application is much less dependent of the underground setting, allowing, in turn, a large geographical deployment and market penetration in Europe. The challenges of EGS are multiple in terms of investment costs, the testing of novel reservoir exploitation approaches with an inherent risk of induced seismicity, and the presence of aggressive geothermal brines, damaging infrastructures. The conversion of oil wells or coproduction of heat or electricity together with oil is also addressed. This Special Issue summarizes the output of the H2020 MEET project based on laboratory experiments, geological field works on high-quality analogues, advanced reservoir modeling, the development of a decision-maker tool for investors and specific demonstration activities, such as chemical stimulation or the innovative monitoring of deep geothermal wells, and the production of electrical power via small-scale binary technology tested in various geological contexts in Europe.

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Keywords

  • As and Sb-bearing galena
  • autoclave experiments
  • blind geothermal system
  • claystone
  • Clustering
  • CO2 abatement cost
  • CO2 emissions
  • CO2-EGS
  • compositional anomalies
  • Conversion
  • core flooding experiments
  • Cornubian Batholith
  • Corrosion
  • Crystal growth
  • crystal shapes
  • Death Valley
  • deep geothermal energy
  • deep geothermal reservoir
  • discrete fracture networks
  • dissolution
  • district heating and cooling
  • Economic indicators
  • effective stress
  • EGS
  • Electricity
  • element variations
  • enhanced geothermal system
  • enhanced geothermal systems (EGS)
  • equivalent permeability field
  • exposed analogue
  • fault
  • fluid circulation
  • fluid pressure
  • fluid/rock interactions
  • fluid–rock interactions
  • Fracture
  • fracture intensity P10
  • fracture network
  • fracture network variability
  • fracture transmissivity
  • fractured granite
  • Fractures
  • fracturing
  • fracturing processes
  • fwi
  • Geology
  • geothermal
  • geothermal brine
  • geothermal derisking
  • geothermal reservoir
  • geothermal reservoir characterization
  • geothermal site
  • gouge
  • granite
  • granite alteration
  • graywacke
  • greywackes
  • Heat
  • heat exchanger
  • hierarchical clustering
  • hydraulic stimulation
  • hydro-thermal modeling
  • imaging
  • inversion
  • kinetics
  • LCOE
  • LCOH
  • low to moderate regional strain
  • MEET H2020 project
  • metal sulfides
  • metamorphic grade
  • Mohr diagrams
  • multiscale analysis
  • n/a
  • newly formed minerals
  • Noble Hills
  • Noble Hills granite
  • NPV
  • numerical modelling
  • oil
  • OVSP
  • Owlshead Mountains granite
  • Permeability
  • power law distribution
  • pressure solution
  • quartzite
  • Reference, information & interdisciplinary subjects
  • Research & information: general
  • scales
  • scaling
  • Scénarios
  • self-organizing maps
  • sensitivity analysis
  • slate
  • slates
  • Soultz-Sous-Forêts
  • spacing distribution
  • Stress
  • structural model
  • sulfates
  • sulfides
  • temperature
  • thermo-hydraulic simulations
  • thermodynamic
  • THM modeling
  • time-dependent
  • unconventional reservoirs
  • United Downs
  • Upper Rhine Graben
  • upscaling
  • Variscan fold-and-thrust belt
  • Variscan rocks
  • water-EGS
  • well placement
  • well seismic data

Links

DOI: 10.3390/books978-3-0365-6053-3

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