Microseismic Monitoring of the B-Sand Hydraulic-Fracture Experiment at the Doe/Gri Multisite Project
Author:
Affiliation:
1. SPE, Sandia Natl. Laboratories
2. SPE, Resources Engineering Systems
3. Sandia Natl. Laboratories
4. SPE
5. SPE, Branagan & Assocs. Inc.
Publisher
Society of Petroleum EngineersRichardson, Texas, USA
Link
https://onepetro.org/books/book/chapter-pdf/3004408/vol_2_chapter06.pdf
Reference21 articles.
1. Albright, J. N. and Pearson, C. F. 1982. Acoustic Emissions as a Tool for Hydraulic Fracture Location: Experience at the Fenton Hill Hot Dry Rock Site. SPE J. 22 (4). SPE-9509-PA. 10.2118/9509-PA.
2. Branagan, P. T., Peterson, R. E., Warpinski, N. R., and Wright, T. 1997. Results of Multi-Site Project Experimentation in the B-Sand Interval: Fracture Diagnostics and Hydraulic Fracture Intersection. Gas Research Institute Topical Report, GRI-96/0225 (December 1997).
3. Branagan, P. T., Peterson, R. E., Warpinski, N. R. et al. 1996a. The Characterization of Remotely Intersected Set of Hydraulic Fractures: Results of Intersection Well No. 1: GRI/DOE Multi-Site Project. Presented at the SPE Annual Technical Conference and Exhibition Denver, Colorado, 6–9 October. SPE-36452-MS. 10.2118/36452-MS.
4. Branagan, P. T., Warpinski, N. R., Engler, B. P. et al. 1996b. Measuring the Hydraulic Fracture-Induced Deformation of Reservoirs and Adjacent Rocks Employing a Deeply Buried Inclinometer Array: GRI/DOE Multi-Site Project. Presented at the SPE Annual Technical Conference and Exhibition, Denver, Colorado, 6–9 October. SPE-36451-MS. 10.2118/36451-MS.
5. Crockett, A. R., Willis, R. M., and Cleary, M. P. 1989. Improvement of Hydraulic Fracture Predictions by Real-Time History Matching on Observed Pressures. SPE Prod Eng 4 (4). SPE-15264-PA. 10.2118/15264-PA.
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