Induced Seismicity Potential in Energy Technologies


Book Description

In the past several years, some energy technologies that inject or extract fluid from the Earth, such as oil and gas development and geothermal energy development, have been found or suspected to cause seismic events, drawing heightened public attention. Although only a very small fraction of injection and extraction activities among the hundreds of thousands of energy development sites in the United States have induced seismicity at levels noticeable to the public, understanding the potential for inducing felt seismic events and for limiting their occurrence and impacts is desirable for state and federal agencies, industry, and the public at large. To better understand, limit, and respond to induced seismic events, work is needed to build robust prediction models, to assess potential hazards, and to help relevant agencies coordinate to address them. Induced Seismicity Potential in Energy Technologies identifies gaps in knowledge and research needed to advance the understanding of induced seismicity; identify gaps in induced seismic hazard assessment methodologies and the research to close those gaps; and assess options for steps toward best practices with regard to energy development and induced seismicity potential.




Induced Seismicity Potential in Energy Technologies


Book Description

In the past several years, some energy technologies that inject or extract fluid from the Earth, such as oil and gas development and geothermal energy development, have been found or suspected to cause seismic events, drawing heightened public attention. Although only a very small fraction of injection and extraction activities among the hundreds of thousands of energy development sites in the United States have induced seismicity at levels noticeable to the public, understanding the potential for inducing felt seismic events and for limiting their occurrence and impacts is desirable for state and federal agencies, industry, and the public at large. To better understand, limit, and respond to induced seismic events, work is needed to build robust prediction models, to assess potential hazards, and to help relevant agencies coordinate to address them. Induced Seismicity Potential in Energy Technologies identifies gaps in knowledge and research needed to advance the understanding of induced seismicity; identify gaps in induced seismic hazard assessment methodologies and the research to close those gaps; and assess options for steps toward best practices with regard to energy development and induced seismicity potential.







Realizing the Potential of U.S. Unconventional Natural Gas


Book Description

The ability to access and economically develop vast amounts of America’s unconventional natural gas resources, especially large shale gas formations, has altered our national view on energy and has subsequently changed the discourse at the federal, state, and local levels. Since 2008, when the economic viability of shale gas resources first became widely recognized, policymakers and industry leaders have worked to better understand the nature of this resource; the risks and opportunities associated with its production, transport, and use; and the potential strategic implications of the United States’ new energy reality. The paradox of the U.S. unconventional gas story is that the technologies and industry practices that made it possible have been decades in the making; the public policy and commercial landscape is vastly different from just a few years ago; and the story of this remarkable resource development is still in its infancy. In an attempt to capture the current state of play with respect to resource development, operational practices, risk identification and mitigation, impacts assessment and identify strategies that allow this valuable resource to be prudently developed, the CSIS Energy and National Security Program undertook this Unconventional Gas Initiative. Over the course of the past year, the authors were able—in concert with industry and nongovernmental organization (NGO) supporters—to work with a wide array of regulators, policymakers, environmental, industry and financial groups, academics and community stakeholders to capture the latest understanding of the unconventional gas development picture and develop themes and findings in the hope of facilitating an informed discussion on a path forward.




Passive Seismic Monitoring of Induced Seismicity


Book Description

An introduction to the principles and applications of passive seismic monitoring, providing an accessible overview of current research and technology.




Earthquake-Resistant Structures


Book Description

Earthquake engineering is the ultimate challenge for structural engineers. Even if natural phenomena involve great uncertainties, structural engineers need to design buildings, bridges, and dams capable of resisting the destructive forces produced by them. These disasters have created a new awareness about the disaster preparedness and mitigation. Before a building, utility system, or transportation structure is built, engineers spend a great deal of time analyzing those structures to make sure they will perform reliably under seismic and other loads. The purpose of this book is to provide structural engineers with tools and information to improve current building and bridge design and construction practices and enhance their sustainability during and after seismic events. In this book, Khan explains the latest theory, design applications and Code Provisions. Earthquake-Resistant Structures features seismic design and retrofitting techniques for low and high raise buildings, single and multi-span bridges, dams and nuclear facilities. The author also compares and contrasts various seismic resistant techniques in USA, Russia, Japan, Turkey, India, China, New Zealand, and Pakistan. - Written by a world renowned author and educator - Seismic design and retrofitting techniques for all structures - Tools improve current building and bridge designs - Latest methods for building earthquake-resistant structures - Combines physical and geophysical science with structural engineering




Environmental Considerations Associated with Hydraulic Fracturing Operations


Book Description

A guide to environmental and communication issues related to fracking and the best approach to protect communities Environmental Considerations Associated with Hydraulic Fracturing Operations offers a much-needed resource that explores the complex challenges of fracking by providing an understanding of the environmental and communication issues that are inherent with hydraulic fracturing. The book balances the current scientific knowledge with the uncertainty and risks associated with hydraulic fracking. In addition, the authors offer targeted approaches for helping to keep communities safe. The authors include an overview of the historical development of hydraulic fracturing and the technology currently employed. The book also explores the risk, prevention, and mitigation factors that are associated with fracturing. The authors also include legal cases, regulatory issues, and data on the cost of recovery. The volume presents audit checklists for gathering critical information and documentation to support the reliability of the current environmental conditions related to fracking operations and the impact fracking can have on a community. This vital resource: Contains the technical information and mitigation recommendations for safety and environmental issues related to hydraulic fracturing Offers an historical overview of conventional and unconventional oil and gas drilling Explains the geologic and technical issues associated with fracking of tight sand and shale formulations Presents numerous case studies from the United States EPA and other agencies Discusses issues of co-produced waste water and induced seismicity from the injection of wastewater Written for environmental scientists, geologists, engineers, regulators, city planners, attorneys, foresters, wildlife biologists, and others, Environmental Considerations Associated with Hydraulic Fracturing Operations offers a comprehensive resource to the complex environmental and communication issues related to fracking.




Natural Disasters


Book Description

This book provides a detailed introduction to natural disasters and the ways in which they have had and continue to have, profound effects on human society. Natural Disasters: A Reference Handbook surveys the impact of these events on human civilization. The opening chapter provides a general history and background of the major types of natural disasters, including earthquakes, volcanic eruptions, severe storms, and forest fires. The information presented in this introduction allows the reader to better understand current issues, problems, and solutions related to natural disasters discussed in subsequent chapters. The book covers the role of natural disasters in human life from earliest recorded history (and, to some extent, even earlier) to the present day. It provides an extensive variety of resources that encourage readers to learn more about the topics discussed. The book is intended for readers in the late middle school to high school age range, as well as adults who may have a special interest in the subject.




Fluid-Induced Seismicity


Book Description

The characterisation of fluid transport properties of rocks is one of the most important, yet difficult, challenges of reservoir geophysics, but is essential for optimal development of hydrocarbon and geothermal reservoirs. This book provides a quantitative introduction to the underlying physics, application, interpretation, and hazard aspects of fluid-induced seismicity with a particular focus on its spatio-temporal dynamics. It presents many real data examples of microseismic monitoring of hydraulic fracturing at hydrocarbon fields and of stimulations of enhanced geothermal systems. The author also covers introductory aspects of linear elasticity and poroelasticity theory, as well as elements of seismic rock physics and mechanics of earthquakes, enabling readers to develop a comprehensive understanding of the field. Fluid-Induced Seismicity is a valuable reference for researchers and graduate students working in the fields of geophysics, geology, geomechanics and petrophysics, and a practical guide for petroleum geoscientists and engineers working in the energy industry.




Energy and Security


Book Description

For more than a century, energy and its procurement have been central to the U.S. position as a world power. How can U.S. relations with established producer nations ensure the stability of energy supplies? How can non-OPEC resources best be brought to the international marketplace? And what are the risks to international security of growing global reliance on imported oil? n Energy and Security: Toward a New Foreign Policy Strategy, Jan H. Kalicki and David L. Goldwyn bring together the topmost foreign policy and energy experts and leaders to examine these issues, as well as how the U.S. can mitigate the risks and dangers of continued energy dependence through a new strategic approach to foreign policy that integrates both U.S. energy and national security interests. Contributors include Abdullah bin Hamad Al-Attiyah, Kevin A. Baumert, Michelle Billig, Loyola de Palacio, Jonathan Elkind, Michelle Michot Foss, Leon Fuerth, Lee H. Hamilton, Evan M. Harrje, John P. Holdren, Paul F. Hueper, Amy Myers Jaffe, J. Bennett Johnston, Donald A. Juckett, Viktor I. Kalyuzhny, Melanie A. Kenderdine, William F. Martin, Charles McPherson, Kenneth B. Medlock III, Ernest J. Moniz, Edward L. Morse, Julia Nanay, Shirley Neff, Willy H. Olsen, Bill Richardson, John Ryan, James R. Schlesinger, Gordon Shearer, Adam E. Sieminski, Alvaro Silva-Calderón, Luis Téllez Kuenzler, J. Robinson (Robin) West, Daniel Yergin, and Keiichi Yokobori.