Handbook of borehole acoustics and rock physics for reservoir characterization
Language: English Publication details: Elsevier 2018 AmsterdamDescription: xxvii, 455pISBN:- 9780128122044
- 627.86 Sa97h
Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
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PK Kelkar Library, IIT Kanpur | General Stacks | 627.86 Sa97h (Browse shelf(Opens below)) | Available | A184143 |
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627.83 Em12 EMBANKMENT-DAM ENGINEERING | 627.86 An72r RESERVOIR SEDIMENTATION | 627.86 M969 Theory of elastic thin shells | 627.86 Sa97h Handbook of borehole acoustics and rock physics for reservoir characterization | 627.882 Er19d2 Design of hydraulic gates | 628 AI71 AIR POLLUTION CONTROL ENGINEERING | 628 B63I ENVIRONMENTAL SCIENCE |
The Handbook of Borehole Acoustics and Rock Physics for Reservoir Characterization combines in a single useful handbook the multidisciplinary domains of the petroleum industry, including the fundamental concepts of rock physics, acoustic logging, waveform processing, and geophysical application modeling through graphical examples derived from field data. It includes results from core studies, together with graphics that validate and support the modeling process, and explores all possible facets of acoustic applications in reservoir evaluation for hydrocarbon exploration, development, and drilling support.
The Handbook of Borehole Acoustics and Rock Physics for Reservoir Characterization serves as a technical guide and research reference for oil and gas professionals, scientists, and students in the multidisciplinary field of reservoir characterization through the use of petrosonics. It overviews the fundamentals of borehole acoustics and rock physics, with a focus on reservoir evaluation applications, explores current advancements through updated research, and identifies areas of future growth.
Presents theory, application, and limitations of borehole acoustics and rock physics through field examples and case studies
Features "Petrosonic Workflows" for various acoustic applications and evaluations, which can be easily adapted for practical reservoir modeling and interpretation
Covers the potential advantages of acoustic-based techniques and summarizes key results for easy geophysical application
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