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Dive into the research topics where Kevin Ellett is active.

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Featured researches published by Kevin Ellett.


Ground Water | 2013

Hydrogeologic Controls on Induced Seismicity in Crystalline Basement Rocks Due to Fluid Injection into Basal Reservoirs

Yipeng Zhang; Mark Person; John A. Rupp; Kevin Ellett; Michael A. Celia; Carl W. Gable; Brenda Beitler Bowen; James P. Evans; Karl W. Bandilla; Peter S. Mozley; Thomas A. Dewers; Thomas R. Elliot

A series of Mb 3.8-5.5 induced seismic events in the midcontinent region, United States, resulted from injection of fluid either into a basal sedimentary reservoir with no underlying confining unit or directly into the underlying crystalline basement complex. The earthquakes probably occurred along faults that were likely critically stressed within the crystalline basement. These faults were located at a considerable distance (up to 10 km) from the injection wells and head increases at the hypocenters were likely relatively small (∼70-150 m). We present a suite of simulations that use a simple hydrogeologic-geomechanical model to assess what hydrogeologic conditions promote or deter induced seismic events within the crystalline basement across the midcontinent. The presence of a confining unit beneath the injection reservoir horizon had the single largest effect in preventing induced seismicity within the underlying crystalline basement. For a crystalline basement having a permeability of 2 × 10(-17)  m(2) and specific storage coefficient of 10(-7) /m, injection at a rate of 5455 m(3) /d into the basal aquifer with no underlying basal seal over 10 years resulted in probable brittle failure to depths of about 0.6 km below the injection reservoir. Including a permeable (kz  = 10(-13)  m(2) ) Precambrian normal fault, located 20 m from the injection well, increased the depth of the failure region below the reservoir to 3 km. For a large permeability contrast between a Precambrian thrust fault (10(-12)  m(2) ) and the surrounding crystalline basement (10(-18)  m(2) ), the failure region can extend laterally 10 km away from the injection well.


Computing and Visualization in Science | 2012

Modeling carbon sequestration in the Illinois Basin using a vertically-integrated approach

Karl W. Bandilla; Michael A. Celia; Thomas R. Elliot; Mark Person; Kevin Ellett; John Rupp; Carl W. Gable; Yipeng Zhang


Energy Procedia | 2013

Uncertainty in Regional-scale Evaluation of CO2 Geologic Storage Resources—comparison of the Illinois Basin (USA) and the Ordos Basin (China)

Kevin Ellett; Qian Zhang; Cristian Medina; John A. Rupp; Guochang Wang; Timothy R. Carr


Vadose Zone Journal | 2012

Modeling a thick unsaturated zone at San Gorgonio Pass, California: lessons learned after five years of artificial recharge

Alan L. Flint; Kevin Ellett; Allen H. Christensen; Peter Martin


Energy Procedia | 2017

Facilitating CCS Business Planning by Extending the Functionality of the SimCCS Integrated System Model

Kevin Ellett; Richard S. Middleton; Philip H. Stauffer; John A. Rupp


Energy Procedia | 2014

System integration linking CO2 Sources, Sinks, and Infrastructure for the Ordos Basin, China☆

Philip H. Stauffer; Richard S. Middleton; Bai Bing; Kevin Ellett; John A. Rupp; Li Xiaochun


Energy Procedia | 2017

Assessing the Utility of High-level CO2 Storage and Utilization Resource Estimates for CCS System Modelling

Shiyan Wang; Kevin Ellett; Arezoo M. Ardekani


publisher | None

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Scientific Investigations Report | 2018

Geohydrology, geochemistry, and numerical simulation of groundwater flow and land subsidence in the Bicycle Basin, Fort Irwin National Training Center, California

Jill N. Densmore; Linda R. Woolfenden; Diane L. Rewis; Peter Martin; Michelle Sneed; Kevin Ellett; Michael Solt; David M. Miller


Energy Procedia | 2017

Regional- to Reservoir-scale Evaluation of CO2 Storage Resource Estimates of Coal Seams

Qian Zhang; Kevin Ellett; John A. Rupp; Maria Mastalerz; C. Özgen Karacan

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John A. Rupp

Indiana Geological Survey

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Philip H. Stauffer

Los Alamos National Laboratory

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Richard S. Middleton

Los Alamos National Laboratory

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John Rupp

Indiana University Bloomington

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Carl W. Gable

Los Alamos National Laboratory

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Cristian R. Medina

Indiana University Bloomington

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David A. Barnes

Western Michigan University

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David Harris

Kentucky Geological Survey

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Mark Person

New Mexico Institute of Mining and Technology

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