Page 30 - European Energy Innovation - winter 2019 publication
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30  Winter 2019 European Energy Innovation

    COMMUNICATION

Solutions to Materials
Challenges in Geothermal
Geothermal energy – energy
               right beneath our feet –   resources continues to remain a           in renewables. The calls to date have
               has an enormous potential  challenge, often due to the high          concentrated on developing the
               with a proven reliability  investment and operational costs of       next generation of renewable energy
to meet heating, cooling and flexible     geothermal power plants. The Secure,      technologies through innovative
electricity generation demands. With      clean and efficient energy work           materials (corrosion-/temperature-/
                                          programme within Horizon 20201            wear-resistant, enhanced heat

a low carbon footprint, this largely      supports research, demonstration,         transfer), increased performance
untapped natural and renewable            innovation and market-uptake              (drilling), improved cost effectiveness
energy resource has the capacity to       actions across different low-carbon       (plant flexibility), optimisation
offer a sustainable and clean energy      energy sectors including the Deep         of plant operations (geo-fluid
future. Despite the opportunities         geothermal energy as part of its          characterisation) and the reduction
offered, exploitation of geothermal       strategy to make the EU global leader     of emissions.

Addressing materials challenges in geothermal: Collaborative Initiatives As Part of EC H2020 programme.

GeoCoat2: Developing Next                 Geo-Drill3: Holistic Drilling             GeoSmart4: Towards Flexible and
Generation Coatings for Geothermal        Solutions for Cheaper Geothermal          Efficient Geothermal Systems
Power Plant                               Power                                     GeoSmart aims to optimise and
The project is developing novel high      The project aims to reduce the high       demonstrate innovations to improve
performance, specialised corrosion-       costs associated with drilling by         the flexibility and efficiency of
and erosion-resistant coatings for        addressing the materials challenges       geothermal heat and power systems,
geothermal applications. These            associated with the wear and fracture     by developing a suite of equipment
high performance corrosion and            of drilling components. The Geo-Drill     and tools including a) Energy storage
erosion resistant coatings are based      concept is based on three technology      and power block management
on selected high entropy alloys           pillars a) Reduced drilling cost through  innovations to provide daily flexibility
(HEAs) and ceramic/metal mixtures         hydraulic DownTheHolefluid/mud            b) Integrate more flexible Organic
(Cermets) to be applied through high      hammer b) Advanced drill monitoring       Rankine Cycle (ORC) systems that can
velocity oxy fuel (HVOF) thermal          through low-cost and robust               cope with variations in needs in the
spray, electro spark deposition (ESD),    3D printed sensors c) Improved            electricity markets c) Combine Heat
electroless plating, and laser cladding.  component life through advanced           and Power (CHP) supplier to extract
The novel materials are being tested      materials and coatings.The strength of    more heat from the post-generator
both in both simulated and real           these technologies will be combined       ("waste" heat) brine outflows when
geothermal environment at the             to meet the unified objective of          required for increased heating supply
Hellisheiði geothermal power plant.       developing novel drilling technologies    during colder weather
                                          that will significantly reduce the cost
                                          of deep geothermal drilling, with a
                                          targeted depth of 5 km and high
                                          temperatures of 250°C and above.

1 https://www.h2020.md/en/content/secure-clean-and-efficient-energy
2 http://www.geo-coat.eu/
3 https://www.geodrillproject.eu/
4 https://www.geosmartproject.eu/
5 http://science4cleanenergy.eu/
6 https://www.twi-global.com/media-and-events/press-releases/2019/geohex-towards-enhanced-heat-exchangers-performance
7 https://www.twi-global.com/media-and-events/press-releases/2019/geopro-understanding-geofluid-chemistry

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