The paper deals with numerical and experimental investigation of non-Newtonian flow of modeling drilling fluids in the annular channel. The Reynolds number was ranged from 100 to 1500. The parameters of the power-law model of drilling fluids were varied within the following ranges: n = 0.43-0.49, K = 0.22-0.89. The eccentricity was changed from 0 to 1. We have measured pressure drop in the annular channel and compared calculations with experimental data, achieving good agreement between calculations and experiment
An exact solution for calculating the frictional pressure losses of yield-power law (YPL) fluids flo...
The fluid flow in the annular gap in oilwells is a complex problem. The geometry of the annulus is c...
Experimental data are reported for fully developed laminar flow of a shear-thinning liquid through ...
Traditional annular laminar flow analysis method applied in drilling engineering has poor accuracy a...
During the exploration and exploitation phases of an oil field, it is necessary to drill wells at st...
A major concern in drilling operations is the proper determination of frictional pressure loss in or...
The prediction of accurate drilling fluids behavior inside an annulus is especially important in dri...
This investigation is concerned with the study of non-Newtonian flow through an annulus. The experim...
Helical flow in an annular space occurs during oil drilling operations. The correct prediction of fl...
The accurate prediction of the fluid dynamics and hydraulics of the axial or helical flow of non-New...
Narrow annular drilling such as casing-while-drilling technique is gaining popularity due to its abi...
This thesis presents the results of the investigations in two areas, i.e. non-Newtonian annular flo...
Accurate estimation of the frictional pressure losses for non-Newtonian drilling fluids inside annul...
Accurate numerical modeling of surge and swab pressures in concentric annuli is proposed. The numeri...
In the paper it is demonstrated how a Herschel-Bulkley fluid model, where the parameters are selecte...
An exact solution for calculating the frictional pressure losses of yield-power law (YPL) fluids flo...
The fluid flow in the annular gap in oilwells is a complex problem. The geometry of the annulus is c...
Experimental data are reported for fully developed laminar flow of a shear-thinning liquid through ...
Traditional annular laminar flow analysis method applied in drilling engineering has poor accuracy a...
During the exploration and exploitation phases of an oil field, it is necessary to drill wells at st...
A major concern in drilling operations is the proper determination of frictional pressure loss in or...
The prediction of accurate drilling fluids behavior inside an annulus is especially important in dri...
This investigation is concerned with the study of non-Newtonian flow through an annulus. The experim...
Helical flow in an annular space occurs during oil drilling operations. The correct prediction of fl...
The accurate prediction of the fluid dynamics and hydraulics of the axial or helical flow of non-New...
Narrow annular drilling such as casing-while-drilling technique is gaining popularity due to its abi...
This thesis presents the results of the investigations in two areas, i.e. non-Newtonian annular flo...
Accurate estimation of the frictional pressure losses for non-Newtonian drilling fluids inside annul...
Accurate numerical modeling of surge and swab pressures in concentric annuli is proposed. The numeri...
In the paper it is demonstrated how a Herschel-Bulkley fluid model, where the parameters are selecte...
An exact solution for calculating the frictional pressure losses of yield-power law (YPL) fluids flo...
The fluid flow in the annular gap in oilwells is a complex problem. The geometry of the annulus is c...
Experimental data are reported for fully developed laminar flow of a shear-thinning liquid through ...