Geothermal energy
Thermal soil parameters, thermal conductivity and borehole resistance are geothermal parameters that we determine with an EGRT. The evaluation of time-dependent temperature-depth profiles collected by means of fibre-optic temperature measurements yields the required parameters. Therefore, electrically generated heat is input in the ground during the measurements.
In addition, we offer economic feasibility and sensitivity analyses for the planning and operation of deep geothermal plants.
- EGRT
- Temperature monitoring of geothermal fields, energy park systems and geothermal probe fields (with automated alarm transmission)
- Profitability calculations for deep geothermal projects
Video geothermal project Soultz-sous-forets
MeSy and GTC were involved in the deep geothermal pioneer project.
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GTC Publications
- 2015 Temperature Monitoring of Multiple Borehole Heat Exchangers
- 2020_WaWi_2020_09_Rosshaupten
- 2017 DTS Fabritius
- 2016 Dornstädter, Retrofit
- 2015 Dornstädter, LEAKAGE DETECTION TEMPERATURE AS A TRACER
- 2015 Dornstädter, Temperaturmessung im Wasserbau – Sichere Überwachung von Dämmen und Deichen seit mehr als 60 Jahren
- 2014 Dornstädter, Full Automatic Leakage Detection at Ilisu Dam by the Use of Fibre Optics
- 2011 Aufleger, Distributed fiber optic temperature measurements in embankment dams with central core – new benchmark for seepage monitoring
- 2010 Heske Der Enhanced-Geothermal-ResponseTest als Auslegungsgrundlage und Optimierungstool
- 2010 Dornstädter In Situ Detection of Internal Erosion
- 2009 Aufleger DFOT monitoring in CFRDs – Technical gimmick or useful complementary monitoring system?
- 2021 New solutions for remote monitoring of pre-cast concrete service reservoir and sludge lagoon