Petrophysics: Theory and Practice of Measuring Reservoir by Djebbar Tiab, Erle C. Donaldson

By Djebbar Tiab, Erle C. Donaldson

Petrophysics: concept and perform of Measuring Reservoir Rock and Fluid delivery Properties, Fourth Edition offers clients with strategies that would aid them comprehend rock-fluid interplay, a primary step that's worthy for all reservoir engineers to understand that allows you to in attaining the top reservoir functionality.

The e-book brings the main complete insurance at the subject material, and is the one education device for all reservoir and construction engineers coming into the oil and fuel undefined. This newest version is improved with new real-world case reviews, the newest advances in reservoir characterization, and a brand new bankruptcy protecting unconventional oil and gasoline reservoirs, together with insurance on construction options, reservoir features, and the petrophysical houses of tight gasoline sands from NMR logs.

• bolstered with a brand new bankruptcy on shale oil and gasoline, including the newest technological advances within the box this present day
• Covers subject matters in terms of porous media, permeability, fluid saturation, good logs, Dykstra-Parson, capillary strain, wettability, Darcy's legislation, Hooke's legislation, reservoir characterization, filter-cake, and extra
• up to date with suitable functional case experiences to augment at the task education
• keeps its longstanding, 20-year background because the prime booklet on petrophysics

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Additional info for Petrophysics: Theory and Practice of Measuring Reservoir Rock and Fluid Transport Properties (4th Edition)

Sample text

I. Theodorovich, Expanded classification of sandstones based upon composition, Izv. Akad, Nauk, USSR Ser. Geol. 6 (1965) 75–95. V. H. ), In: Compaction of Coarse-Grained Sediments, vol. I, Elsevier Scientific Publ. , New York, 1975, p. 808. V. J. H. Rieke, Carbonate Reservoir Characterization, Part I, Elsevier Science, Amsterdam, 1992, 639 p, Part II, 1996: 994 p. [14] A. Cerepi, C. Durand, E. Brosse, Pore microgeometry analysis in low-resistivity sandstone reservoirs, J. Petrol. Sci. Eng. 35 (2002) 205–235.

Torsaeter, Reconstruction of chalk pore networks from 2D backscatter electron micrographs using a simulated annealing technique, J. Petrol. Sci. Eng. 33 (2002) 265–282. C. Carman, Some physical aspects of water flow in porous media, Discus. Faraday Soc. 3 (1948) 72. C. F. A. S. Manning, Surface-area measurement of geologic materials, Soc. Pet. Eng. J. 15 (1975) 111–116. C. Krumbein, Measurement and geologic significance of shape and roundness of sedimentary particles, J. Sediment. Petrol. 11 (1941) 64–72.

Freeman, Co, San Francisco, 1982, 731 pp. L. Bowen, The Evolution of Igneous Rocks, Princeton University Press, Princeton, NJ, 1928, 333 pp. V. H. Wolf, Diagenesis, Elsevier Science, Amsterdam, 1988, 591 pp. I. Theodorovich, Expanded classification of sandstones based upon composition, Izv. Akad, Nauk, USSR Ser. Geol. 6 (1965) 75–95. V. H. ), In: Compaction of Coarse-Grained Sediments, vol. I, Elsevier Scientific Publ. , New York, 1975, p. 808. V. J. H. Rieke, Carbonate Reservoir Characterization, Part I, Elsevier Science, Amsterdam, 1992, 639 p, Part II, 1996: 994 p.

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