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Zeitschrift Der Deutschen Gesellschaft Fur Geowissenschaften | 2011

3D-Modellierung der tiefengeothermischen Potenziale von Hessen – Eingangsdaten und Potenzialausweisung [3D modelling of the deep geothermal potential of the Federal State of Hesse (Germany) – input data and identifi cation of potential.]

K. Bär; D. Arndt; J.-G. Fritsche; Annette E. Götz; M. Kracht; Andreas Hoppe

Within the scope of the research project “3D-modelling of the deep geothermal potentials of Hesse” the deep geothermal potential of the Federal State of Hesse was quantifi ed and assessed in a qualitative analysis. The quantifi cation of the heat stored under ground and the qualitative analysis was done for different geothermal systems. These are hydrothermal and petrothermal systems, as well as fault zones and deep borehole heat exchangers. For the assessment of the deep geothermal potential, knowledge of the geological structure and the geothermal properties of the potential reservoir rocks are indispensable. Therefore, a 3D model of the deep geothermal potential of the Federal State of Hesse (Germany) has been developed (cf. Arndt et al. 2011). Systematic measurements of thermophysical and hydraulic rock properties such as thermal conductivity, heat capacity and permeability of relevant geologic formations have been combined with in-situ temperature measurements, hydrothermal upwelling zones, characteristics of geological faults and were added to the 3D geological structural model. Using a multiple criteria approach, the various rock and reservoir properties were assessed incorporating their relevance for the different geothermal systems to allow the qualitative analysis. Therefore, threshold values for each parameter were defi ned specifying whether the potential is very high, high, medium, low or very low. This method was tested for the one-dimensional case (virtual drilling) and the two-dimensional case (geological-geothermical cross-sections) before being applied to the 3D model. The resulting geothermal model, which incorporates the quantifi cation and the qualitative analysis, is an important tool, which can be used at an early stage of the planning phase for the design of geothermal power plants. Furthermore, it allows quantifi cation of the deep geothermal potential and is intended to be an instrument for public information. Schlusselworter: Geothermie, geothermisches Potenzial, thermophysikalische Gesteinseigenschaften, hydraulische Kennwerte, geologisches 3D-Modell, Oberrheingraben, Hessen, Deutschland, GOCAD


Archive | 2011

3D-Modellierung der tiefengeothermischen Potenziale von Hessen — Eingangsdaten und Potenzialausweisung

K. Bär; D. Arndt; J.-G. Fritsche; M. Kracht; Andreas Hoppe


Zeitschrift Der Deutschen Gesellschaft Fur Geowissenschaften | 2011

3D structural model of the Federal State of Hesse (Germany) for geopotential evaluation Geologisches 3D-Modell von Hessen zur Bestimmung von Geo-Potenzialen.

D. Arndt; K. Bär; J.-G. Fritsche; Mattias Kracht; Andreas Hoppe


Energy Procedia | 2015

Heterogeneous crystalline crust controls the shallow thermal field – a case study of Hessen (Germany)

J. Freymark; Judith Sippel; Magdalena Scheck-Wenderoth; K. Bär; M. Stiller; M. Kracht; J.-G. Fritsche


Tectonophysics | 2017

The deep thermal field of the Upper Rhine Graben

J. Freymark; Judith Sippel; Magdalena Scheck-Wenderoth; K. Bär; M. Stiller; J.-G. Fritsche; M. Kracht


Archive | 2017

3D thermal modelling of the Upper Rhine Graben

J. Freymark; Judith Sippel; Magdalena Scheck-Wenderoth; K. Bär; M. Stiller; J.-G. Fritsche; M. Kracht


Archive | 2017

Regional 3D structural and (hydro)thermal modelling of the Upper Rhine Graben

J. Freymark; Judith Sippel; M. Cacace; Magdalena Scheck-Wenderoth; K. Bär; M. Ziegler; M. Stiller; J.-G. Fritsche; M. Kracht


Archive | 2017

From 3D gravity to coupled fluid and heat transport modelling - a case study from the Upper Rhine Graben

J. Freymark; Judith Sippel; Magdalena Scheck-Wenderoth; K. Bär; M. Stiller; J.-G. Fritsche; M. Kracht


Archive | 2016

The thermal field of the Upper Rhine Graben – Temperature predictions based on a 3D model

J. Freymark; Judith Sippel; Magdalena Scheck-Wenderoth; K. Bär; M. Stiller; J.-G. Fritsche; M. Kracht


Archive | 2016

3D structure and conductive thermal field of the Upper Rhine Graben

J. Freymark; Judith Sippel; Magdalena Scheck-Wenderoth; K. Bär; M. Stiller; J.-G. Fritsche; M. Kracht

Collaboration


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K. Bär

Technische Universität Darmstadt

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M. Kracht

Technische Universität Darmstadt

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J. Freymark

RWTH Aachen University

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Andreas Hoppe

Technische Universität Darmstadt

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D. Arndt

Technische Universität Darmstadt

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B. Welsch

Technische Universität Darmstadt

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D. O. Schulte

Technische Universität Darmstadt

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