Shallow-Geothermal sourced Low-Temperature District Heating

S-GeoHeat

Next

Call 2 2019

This project will focus on directly utilising shallow-geothermal energy sources via low-temperature District Heating (DH) systems (without ground source heat pump units). 

Technical and economic analyses will be conducted for two case studies with geothermal sources, one at the temperature level of 53 – 56 °C and the other at 28 – 38 °C. The latter will be heated to a higher temperature by integrating industrial waste heat from a nearby cement factory. The key activities will be based on building retrofitting strategies to be considered with blockchain-based performance measures of the indoor heating systems and the optimal operation of the DH system and the heat production site. 

Accordingly, the developed and demonstrated solutions throughout the project will form the basis for future studies on the direct and digitalized use of shallow geothermal sources. 

 

Main coordinator:

Hakan ibrahim Tol 

 

Total investment

501,734 €

Participant

Austria
Turkey

Final report

Call 1 project - report

Call 3

RECOIN

Real-time control and tuning of borehole heat exchanger fields for optimal integration in heating and cooling systems

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Call 2 2017

First series of funded projects

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HECTAPUS

HEating Cooling Transition and Acceleration with Phase change energy Utilisation Storage

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FLXenabler

Flexible heating and cooling and geothermal energy storage as an enabler for decarbonized integrated energy systems

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Galleries 2 Calories G2C

Galleries 2 Calories

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SORPTES

Pilot Testing Sorption based thermal energy storage

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DEPLOI

DEmonstrate Production enhancement through LOw cost dIrectional steel shot drilling for district HEATing

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PERFORM II

Improving Geothermal System Performance Through Filter Technology Development

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The CHANGE

The Cooling and Heating transition Acceleration via Network Geothermal Energy

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Call 2 2019

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DEMO FTES

Development, Monitoring, and Control of Fracture Thermal Energy Storage in Crystalline Rock Formations

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CO2inLoop

Extended sector coupling systems of district heating and cooling technology using CO2 as a heat transfer medium

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GOES

Geothermal-based Optimized Energy Systems

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MALEG

Machine Learning for Enhancing Geothermal energy production

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GeoCohort

Geothermal Community Heat Technology and Transfer

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Joint Call 2021

Accelerating the Heating and Cooling Transition.

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DEEPLIGHT

Novel concept to construct cost-effective geothermal wells with Electro Pulsed Power technolog

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PERFORM

Improving Geothermal System Performance by Scaling and Corrosion Prevention and Injectivity Enhancement

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DEEPEN

Understanding roots of magmatic geothermal systems and finding superhot resources

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GeConnect

Highlights improvements in well design to reduce the risk of casing failures due to thermal expansion in geothermal wells.

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SEE4GEO

Power of seismoelectric effects technology for geothermal resource assessment and monitoring development

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ZoDrEx

ZoDrEx project aims to demonstrate drilling, completion, and production of products and technologies that will increase the technical and economic chances of success in geothermal energy applications.

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GEO-URBAN

Identification and Assessment of Deep GEOthermal Heat Resources in Challenging URBAN Environments

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GRE-GEO

Power of seismoelectric effects technology for geothermal resource assessment and monitoring development

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RESULT

Developing advanced cement systems resistant to repeated thermo-mechanical cycling for a wide temperature range

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TEST-CEM

Developing advanced cement systems resistant to repeated thermo-mechanical cycling for a wide temperature range

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CAGE

Installing geothermal wells using crane-based casing while drilling Huisman Composite Tubulars with MaxFlow™ connections

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DEEP

Working towards reliable procedures to assess and reduce the seismic risk to maintain the social licenses to operate geothermal energy

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GEOFOOD

Greener way to a better world

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HEATSTORE

CAGE is a development and demonstration project of several cost-saving and output-improving installation technologies.

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Coseismiq

Working towards a reliable support tool controlling seismicity and managing induced earthquakes during geothermal operations

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SPINE

Developing tools for stress profiling in the crystalline rock to estimate stimulation efficiency and seismicity linked to subsurface heat exchangers

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Phone

+354 569 6000

Email

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The project has received funding from the European Union’s Horizon 2020 Research and Innovation Programme under grant agreement No 731117 between 2017-2022. Currently, project transitioned to GEOTHERMICA Initiaitive