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Featured researches published by Eric Edelman.


Rock Mechanics and Rock Engineering | 2014

Onset of Hydraulic Fracture Initiation Monitored by Acoustic Emission and Volumetric Deformation Measurements

Sergey Stanchits; A. Surdi; Patrick Gathogo; Eric Edelman; Roberto Suarez-Rivera

In this paper, the results of laboratory studies of fracture initiation, early propagation and breakdown are reported. Three experiments were conducted on a low permeability sandstone block, loaded in a polyaxial test frame, to representative effective in situ stress conditions. The blocks were instrumented with acoustic emission (AE) and volumetric deformation sensors. In two experiments, fluids of different viscosity were injected into the wellbore, fluid injection was interrupted soon after the breakdown pressure had been reached. This allowed us to investigate hydraulic fracture initiation. In the third test, fracture initiation criteria were applied to stop hydraulic fracture propagation significantly earlier, prior to breakdown, and as it propagated a short distance from the wellbore. The analysis of AE results shows an increase in AE activity and a change in the AE spatial correlation, during the fracture initiation. This early stage of fracturing correlates strongly with the onset of rock volumetric deformation, and is confirmed by the analysis of ultrasonic transmission monitoring. The rock microstructure, after the test, was investigated by analysis of scanning electron microscope images. These indicated the development of leak-off zone near the wellbore and a dry hydraulic fracture at the farther distance from the wellbore.


information processing and trusted computing | 2013

Understanding the Effect of Rock Fabric on Fracture Complexity for Improving Completion Design and Well Performance

Roberto Suarez-Rivera; J. Burghardt; Sergei Stanchits; Eric Edelman; A. Surdi

In the past, containment of hydraulic fracture height growth has been evaluated based on an assumption of rock formation layers with contrasting conditions of minimum horizontal stress, and to a lesser extent, Young’s modulus, leak off rates, and fracture toughness between adjacent rock layers. Most recently, large-block hydraulic fracturing experiments in the laboratory, and observations of fracture propagation (natural or induced) in core, have provided evidence that the rock fabric plays a significant role in arresting fracture height growth and also in promoting fracture complexity. In addition, unconventional reservoirs are often over-pressured. And, as the pore pressure increases, the stress contrast tends to be reduced, and the role of rock fabric becomes dominant. In this paper, we investigate the effect of weak interfaces on fracture geometry and height containment by conducting hydraulic fracturing tests on large blocks from tight shale outcrops, under simulated effective stress conditions. We define rock fabric as the presence, orientation and distribution of bed boundaries, lithologic contacts, mineralized fractures, and other type of weak interfaces. This rock fabric creates discontinuities in the stress and strain fields and affects the way the rock deforms and fails. Continuous monitoring of acoustic emissions and using acoustic transmission during fracturing, allows understanding the process of fracture initiation and fracture interaction with the weak interfaces. Post-test CT x-ray scanning and detailed dissection and photographic imaging provide a good record of the fractures. In addition, these post fracture measurements allow comparing the fractures created with results from acoustic emissions localization. The experimental results clearly demonstrate the importance of rock fabric to understand and predict fracture complexity and fracture height containment.


Unconventional Resources Technology Conference | 2013

Quantifying Fracturing Fluid Damage on Reservoir Rock to Optimize Production

Dean Willberg; Eric Edelman; William Zagorski; Joe Frantz.


45th U.S. Rock Mechanics / Geomechanics Symposium | 2011

Experimental Evaluation of Hydraulic Fracture Impairment In Shale Reservoirs

Raul Hugo Morales; Roberto Suarez-Rivera; Eric Edelman


47th U.S. Rock Mechanics/Geomechanics Symposium | 2013

Geomechanics Considerations for Hydraulic Fracture Productivity

Roberto Suarez-Rivera; J. Burghardt; Eric Edelman; Sergei Stanchits; A. Surdi


SPE Annual Technical Conference and Exhibition | 2013

Defining Three Regions Of Hydraulic Fracture Connectivity, In Unconventional Reservoirs, Help Designing Completions With Improved Long-term Productivity

Roberto Suarez-Rivera; Larry Amos Behrmann; Sid Green; J. Burghardt; Sergey Stanchits; Eric Edelman; A. Surdi


46th U.S. Rock Mechanics/Geomechanics Symposium | 2012

Acoustic Emission And Ultrasonic Transmission Monitoring of Hydraulic Fracture Propagation In Heterogeneous Rock Samples

Sergei Stanchits; A. Surdi; Eric Edelman; Roberto Suarez-Rivera


47th U.S. Rock Mechanics/Geomechanics Symposium | 2013

Monitoring the Early Onset of Hydraulic Fracture Initiation by Acoustic Emission and Volumetric Deformation Measurements

Sergei Stanchits; A. Surdi; Patrick Gathogo; Eric Edelman; Roberto Suarez-Rivera


SPWLA 53rd Annual Logging Symposium | 2012

Improving Geologic Core Descriptions And Heterogeneous Rock Characterization Via Continuous Profiles of Core Properties

Roberto Suarez-Rivera; Eric Edelman; David Handwerger; Ahmed Hakami; Patrick Gathogo


Archive | 2014

Rock Classification Based on Texture and Composition

Roberto Suarez-Rivera; Ahmed Hakami; Eric Edelman

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Sergei Stanchits

United States Geological Survey

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Mehdi Ghommem

American University of Sharjah

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