-
NETLThe objectives of the project is to collect stress profiles in three wells in the Marcellus gas system, interpret them employing a full suite of lag and core based petrophysical...
-
Dataset Size: 310.464 KB
Resource List
View within SubmissionGathering Resources...NETLThe overall objective of this project is to develop and validate the performance and cost-effectiveness of the integrated precipitative supercritical (IPSC) process to convert...-
Dataset Size: 286.598 KB
Resource List
View within SubmissionGathering Resources...NETLThe main objective of the research is to delineate stratigraphic controls on the location and character of higher-than-average permeability zones in tight-gas reservoirs in the...-
Dataset Size: 2.813 MB
Resource List
View within SubmissionGathering Resources...NETLDevelop and implement an integrated methodology for building geomechanical models of tight gas systems (shale) that include knowledge of important characteristics of the native...-
Dataset Size: 299.552 KB
Resource List
View within SubmissionGathering Resources...NETLThe objective of this project is to determine the degree to which fracture systems induced prior to production form a network of connected flow pathways that access the...-
Dataset Size: 3.061 MB
Resource List
View within SubmissionGathering Resources...NETLThe objective of this research is to improve the understanding of the Mancos Shale play in Utah, specifically preferred target intervals and the best drilling, completion, and...-
Dataset Size: 312.05 KB
Resource List
View within SubmissionGathering Resources...NETLhe overall objective of the project was to develop an integrated plasma water treatment system for improved water management for frac/produced water. The approach to accomplish...-
Dataset Size: 30.337 MB
Resource List
View within SubmissionGathering Resources...NETLThe objective of this project is to increase gas recovery from the tight gas formations in the Ulinta Basin, Utah by creating tools/mechanisms to superpose complex...-
Dataset Size: 9.182 MB
Resource List
View within SubmissionGathering Resources...NETL4D Integrated Study Using Geology, Geophysics, Reservoir Modeling & Rock Mechanics to Develop Assessment Models for Potential Induced Seismicity Risk-
Dataset Size: 238.341 KB
Resource List
View within SubmissionGathering Resources... -