A Concise Guide To Geopressure

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A Concise Guide to Geopressure

Author: Peter B. Flemings
language: en
Publisher: Cambridge University Press
Release Date: 2021-03-25
A concise guide to the origins and prediction of subsurface fluid pressures, emphasizing the interactions with geological processes.
Integrated Aquifer Characterization and Modeling for Energy Sustainability

The greatest challenge facing humanity today is the transition to a more sustainable energy infrastructure while reducing greenhouse gas emissions. Meeting this challenge will require a diversified array of solutions spanning across multiple industries. One of the solutions rising to the fore is the potential to rapidly build out carbon sequestration, which involves the removal of CO2 from the atmosphere and its storage in the subsurface. Integrated Aquifer Characterization and Modeling for Energy Sustainability: Key Lessons from the Petroleum Industry provides a comprehensive and practical technical guide into the potential that aquifers hold as sites for carbon and energy storage. Aquifers occupy a significant part of the Earth’s available volume in the subsurface and thus hold immense potential as sites for carbon storage. Many aquifers have been studied extensively as part of oil and gas energy development projects and, as such, they represent an opportunity to sequester carbon within existing areas of infrastructure that have already been impacted by, and integrated into, an inherited energy framework. Moreover, future efforts to reconfigure the landscape of our national and global energy systems can extract valuable lessons from this existing trove of data and expertise. From a multidisciplinary perspective, this book provides a valuable and up-to-date overview of how we can draw on the wealth of existing technologies and data deployed by the petroleum industry in the transition to a more sustainable future. Integrated Aquifer Characterization and Modeling for Energy Sustainability will be of value to academic, professional and business audiences who wish to evaluate the potential underground storage of carbon and/or energy, and for policy makers in developing the right policy tools to further the goals of a sustainable energy transition.
Salt in the Earth Sciences

A comprehensive review of giant salt basins, salt tectonic events, and their global implications Salt is formed when water rich in evaporite minerals accumulates on the Earth’s surface and then evaporates. Over time, pressure and tectonics change the structure and shape of salt layers. Recent technological advances have improved the interpretation and modeling of subsurface salt structures. Salt in the Earth Sciences: Basin Analysis and Salt Tectonics presents a global overview of giant salt basins formed under diverse tectonic settings, connecting salt deposition with tectonic events, climate change, and more. Volume highlights include: Stratigraphic and structural features of giant salt basins Theories for the origin of salt giants and their deep crustal architecture Accumulations of hydrocarbon resources in salt basins Global examples of giant salt basins Salt and shale tectonic models, including salt and mud diapirism, magmatism, and salt dissolution Correlations with plate tectonics, climate changes, global glaciations, and major volcanic events Extreme environments associated with evaporite deposition on Earth and other planets of the solar system Browse the other volume in this set, Salt in the Earth Sciences: Evaporite Rocks and Salt Deposition. The American Geophysical Union promotes discovery in Earth and space science for the benefit of humanity. Its publications disseminate scientific knowledge and provide resources for researchers, students, and professionals.