Computational Geotechnics

Storage of Energy Carriers

Nonfiction, Science & Nature, Technology, Power Resources, Science, Earth Sciences
Cover of the book Computational Geotechnics by Thomas Nagel, Norbert Böttcher, Uwe-Jens Görke, Olaf Kolditz, Springer International Publishing
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Author: Thomas Nagel, Norbert Böttcher, Uwe-Jens Görke, Olaf Kolditz ISBN: 9783319569628
Publisher: Springer International Publishing Publication: April 29, 2017
Imprint: Springer Language: English
Author: Thomas Nagel, Norbert Böttcher, Uwe-Jens Görke, Olaf Kolditz
ISBN: 9783319569628
Publisher: Springer International Publishing
Publication: April 29, 2017
Imprint: Springer
Language: English

In this book, effective computational methods to facilitate those pivotal simulations using open-source software are introduced and discussed with a special focus on the coupled thermo-mechanical behavior of the rock salt. A cohesive coverage of applying geotechnical modeling to the subsurface storage of hydrogen produced from renewable energy sources is accompanied by specific, reproducible example simulations to provide the reader with direct access to this fascinating and important field. Energy carriers such as natural gas, hydrogen, oil, and even compressed air can be stored in subsurface geological formations such as depleted oil or gas reservoirs, aquifers, and caverns in salt rock. Many challenges have arisen in the design, safety and environmental impact assessment of such systems, not the least of which is that large-scale experimentation is not a feasible option. Therefore, simulation techniques are central to the design and risk assessment of these and similar geotechnical facilities.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

In this book, effective computational methods to facilitate those pivotal simulations using open-source software are introduced and discussed with a special focus on the coupled thermo-mechanical behavior of the rock salt. A cohesive coverage of applying geotechnical modeling to the subsurface storage of hydrogen produced from renewable energy sources is accompanied by specific, reproducible example simulations to provide the reader with direct access to this fascinating and important field. Energy carriers such as natural gas, hydrogen, oil, and even compressed air can be stored in subsurface geological formations such as depleted oil or gas reservoirs, aquifers, and caverns in salt rock. Many challenges have arisen in the design, safety and environmental impact assessment of such systems, not the least of which is that large-scale experimentation is not a feasible option. Therefore, simulation techniques are central to the design and risk assessment of these and similar geotechnical facilities.

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