Image from Google Jackets

Radial flow of yield-power-law fluids Numerical analysis, experimental study and the application for drilling fluid losses in fractured formations

By: Publication details: feb. 2010Description: 10 p. ; 334-343 In: Journal of Petroleum Science & Engineering 70Summary: Transcripción del resumen del autor. A theoretical solution for radial flow of Yield-Power-Law (Herschel-Bulkley) fluids between two parallel disks is presented. The fundamental equations are based on momentum balance in radial coordinates. The solution encompasses the Newtonian, Bingham Plastic and Power-Law fluids as special cases. The numerical solution has been compared with experimental data obtained from radial flow between two parallel disks. Upon application of mathematical simplifications, a closed form expression for pressure drop for radial flow of Yield-Power-Law (YPL) fluids is obtained and presented as an "approximate analytical" solution. The validity of the approximate solution is examined versus numerical solution. The application of the approximate solution to the prediction of drilling fluid losses in fractured formations is discussed.
Item type: Artículo de Revista
Holdings
Current library Status Barcode
Biblioteca Alejandro Angel Bulgheroni Not for loan 200046028

Transcripción del resumen del autor. A theoretical solution for radial flow of Yield-Power-Law (Herschel-Bulkley) fluids between two parallel disks is presented. The fundamental equations are based on momentum balance in radial coordinates. The solution encompasses the Newtonian, Bingham Plastic and Power-Law fluids as special cases. The numerical solution has been compared with experimental data obtained from radial flow between two parallel disks. Upon application of mathematical simplifications, a closed form expression for pressure drop for radial flow of Yield-Power-Law (YPL) fluids is obtained and presented as an "approximate analytical" solution. The validity of the approximate solution is examined versus numerical solution. The application of the approximate solution to the prediction of drilling fluid losses in fractured formations is discussed.

3-4



Instituto Argentino del Petróleo y del Gas
Maipú 639 (C1006ACG) – Buenos Aires – Argentina
Tel: (54 11) 5277 IAPG (4274)
Lu - Vie 11 a 17 hs
Mail: biblio@iapg.org.ar


Copyright © 2026, Instituto Argentino del Petróleo y del Gas, todos los derechos reservados.

Protección de datos personales