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Fracturing in deep boreholes = stres...
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Stockinger, Georg Maximilian.
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Fracturing in deep boreholes = stress, structural and lithology-controlled fracture initiation and propagation in deep geothermal boreholes in the Upper Jurasic carbonate rocks of the North Alpine Foreland Basin /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Fracturing in deep boreholes/ by Georg Maximilian Stockinger.
其他題名:
stress, structural and lithology-controlled fracture initiation and propagation in deep geothermal boreholes in the Upper Jurasic carbonate rocks of the North Alpine Foreland Basin /
作者:
Stockinger, Georg Maximilian.
出版者:
Cham :Springer International Publishing : : 2022.,
面頁冊數:
xliii, 258 p. :ill., digital ;24 cm.
內容註:
Introduction -- Rock Mechanical Basics -- The Bmwi Project "Dolomitkluft" and the Study Site -- Sampling and Methodology -- Results -- Discussion -- Conclusions, Implementation and Outlook.
Contained By:
Springer Nature eBook
標題:
Carbonate rocks - Alps Region. -
電子資源:
https://doi.org/10.1007/978-3-030-94569-5
ISBN:
9783030945695
Fracturing in deep boreholes = stress, structural and lithology-controlled fracture initiation and propagation in deep geothermal boreholes in the Upper Jurasic carbonate rocks of the North Alpine Foreland Basin /
Stockinger, Georg Maximilian.
Fracturing in deep boreholes
stress, structural and lithology-controlled fracture initiation and propagation in deep geothermal boreholes in the Upper Jurasic carbonate rocks of the North Alpine Foreland Basin /[electronic resource] :by Georg Maximilian Stockinger. - Cham :Springer International Publishing :2022. - xliii, 258 p. :ill., digital ;24 cm. - Springer theses,2190-5061. - Springer theses..
Introduction -- Rock Mechanical Basics -- The Bmwi Project "Dolomitkluft" and the Study Site -- Sampling and Methodology -- Results -- Discussion -- Conclusions, Implementation and Outlook.
The development of the base-load capable, climate-friendly, and practically inexhaustible source of "geothermal energy" represents an important pillar of the energy supply of the future. If it were possible to expand geothermal energy production accordingly, Germany could generate 100% of its energy in a climate-neutral manner by 2050. The joint research project "Dolomitkluft," funded by the German Federal Ministry for Economic Affairs and Energy from 2016 to 2018, aims to establish a new and improved reservoir model for the Upper Jurassic carbonates of the Northern Alpine Foreland Basin for deep geothermal energy. Emerged from this project, the dissertation by Mr. Stockinger geomechanically and numerically characterizes the deep geothermal reservoir in carbonate rocks-limestones and dolomites-of the Upper Jurassic in the Northern Alpine Foreland Basin in over 4000 m depth. This book specifically addresses fracture initiation, propagation, and hydraulic conductivity around a borehole and their controlling factors such as the in situ stress, the existing discontinuity network, and the geomechanical rock properties. Mr. Stockinger has thus successfully addressed the most important aspects for the retrievability of deep geothermal energy at its point of origin-namely the (deep) borehole.
ISBN: 9783030945695
Standard No.: 10.1007/978-3-030-94569-5doiSubjects--Topical Terms:
3594957
Carbonate rocks
--Alps Region.
LC Class. No.: QE471.15.C3 / S76 2022
Dewey Class. No.: 552.58
Fracturing in deep boreholes = stress, structural and lithology-controlled fracture initiation and propagation in deep geothermal boreholes in the Upper Jurasic carbonate rocks of the North Alpine Foreland Basin /
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Introduction -- Rock Mechanical Basics -- The Bmwi Project "Dolomitkluft" and the Study Site -- Sampling and Methodology -- Results -- Discussion -- Conclusions, Implementation and Outlook.
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The development of the base-load capable, climate-friendly, and practically inexhaustible source of "geothermal energy" represents an important pillar of the energy supply of the future. If it were possible to expand geothermal energy production accordingly, Germany could generate 100% of its energy in a climate-neutral manner by 2050. The joint research project "Dolomitkluft," funded by the German Federal Ministry for Economic Affairs and Energy from 2016 to 2018, aims to establish a new and improved reservoir model for the Upper Jurassic carbonates of the Northern Alpine Foreland Basin for deep geothermal energy. Emerged from this project, the dissertation by Mr. Stockinger geomechanically and numerically characterizes the deep geothermal reservoir in carbonate rocks-limestones and dolomites-of the Upper Jurassic in the Northern Alpine Foreland Basin in over 4000 m depth. This book specifically addresses fracture initiation, propagation, and hydraulic conductivity around a borehole and their controlling factors such as the in situ stress, the existing discontinuity network, and the geomechanical rock properties. Mr. Stockinger has thus successfully addressed the most important aspects for the retrievability of deep geothermal energy at its point of origin-namely the (deep) borehole.
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