Modeling of Flow and Transport Induced by Production of Hydrofracture-Stimulated Gas Wells Near the Rulison Nuclear Test

Author:

Hodges Rex A.,Cooper Clay A.,Falta Ronald W.

Publisher

Springer Science and Business Media LLC

Subject

General Chemical Engineering,Catalysis

Reference19 articles.

1. Byrnes, A.P., Cluff, R.M.: Analysis of critical permeability, capillary pressure and electrical properties for Mesaverde tight gas sandstones from western U.S. basins. U.S. DOE contract number: DE-PS26-04NT42072 (2009)

2. Cole, R., Cumella, S.: Stratigraphic architecture and reservoir characteristics of the Mesaverde Group, southern Piceance Basin, Colorado. In: Peterson, K.M., Olson, T.M., Anderson, D.S. (eds.) Piceance Basin 2003 Guidebook, pp. 385–442. RMAG, Denver (2003)

3. Cole, R., Cumella, S.: Fluvial sand-body dimensions in the Lower Williams Fork Formation (Upper Cretaceous), Southwestern Piceance Basin, Colorado. In: Rocky Mountain Section AAPG Meeting, August 9–11, 2004, Abstracts, Denver, Colorado (2004)

4. Cooper, C.A., Ye, M., Chapman, J.: Tritium Transport at the Rulison Site, a Nuclear-Stimulated Low-Permeability Natural Gas Reservoir, Desert Research Institute, Report No. 45224 (2007)

5. Cooper, C.A., Ye, M., Chapman, J., Hodges, R.: Addendum: Tritium Transport at the Rulison Site, a Nuclear-Stimulated Low-Permeability Natural Gas Reservoir, Desert Research Institute (2009)

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