Computational Rheology for Pipeline and Annular Flow

Computational Rheology for Pipeline and Annular Flow
Author :
Publisher : Elsevier
Total Pages : 271
Release :
ISBN-10 : 9780080502489
ISBN-13 : 0080502482
Rating : 4/5 (89 Downloads)

Book Synopsis Computational Rheology for Pipeline and Annular Flow by : Wilson C Chin

Download or read book Computational Rheology for Pipeline and Annular Flow written by Wilson C Chin and published by Elsevier. This book was released on 2001-07-30 with total page 271 pages. Available in PDF, EPUB and Kindle. Book excerpt: Computational Rheology for Pipeline and Annular Flow develops and applies modern analytical and computational finite difference methods for solving flow problems in drilling and production. It also provides valuable insights into flow assurance analysis in subsea pipeline design. Using modeling techniques that simulate the motion of non-Newtonian fluids, e.g., power law, Bingham plastic, and Herschel-Bulkley flows, this book presents proven annular flow methodologies for cuttings transport and stuck pipe analysis based on detailed experimental data obtained from highly deviated and horizontal wells. These methods are applied for highly eccentric borehole geometries to the design of pipeline bundles in subsea applications, where such annular configurations arise in velocity and thermal modeling applications.Also covered extensively are the design and modeling of pipelines having non-circular cross-sections, where deviations from ideal circular geometries arise from plugging due to wax deposition and the presence of hydrates and asphaltenes. As in the case of annular flows, the new algorithms apply to fluids with general rheological description; for example, the methods show very precisely how flow rate and pressure gradient vary nonlinearly in practical problem situations. - Provides valuable insights into flow assurance analysis. - Contains new algorithms on annular flows and fluids with general rheological descriptions supply solutions to practical problems.


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