Method for drilling and completing boreholes with electro-rheological fluids
First Claim
1. A method for drilling and completing a wellbore in a subterranean formation with the same drilling fluid, said method comprising:
- (a) employing an electrically non-conductive, oil based drilling fluid with Newtonian properties;
(b) real-time monitoring of the viscosity of said fluid;
(c) adjusting said viscosity of said fluid at desired times and locations in the wellbore by applying an electric potential to said fluid at said times and locations increased viscosity of the fluid is desired and ceasing or reducing said electric potential at times and locations decreased viscosity of the fluid is desired;
(d) adding at least one organometallic compound to said fluid to enhance the effects of the electrical potential for enhanced viscosity; and
(e) avoiding borchale occlusion by said real time monitoring and adjustment of the viscosity of said drilling fluid during drilling to keep said viscosity of said fluid constant and the flow velocity profile of the fluid flat.
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Abstract
In a method for drilling, completing and fracturing a subterranean formation, an electrical potential is applied to oil or synthetic based drilling fluid to increase the viscosity of the fluid and enable the fluid to entrain drill cuttings and proppant. The same base fluid may be used for drilling, completion and fracturing by adjusting the electrical potential and consequently the viscosity of the fluid for the particular application. In fracturing, little or no potential is applied until the fluid enters the zone of the formation to be fractured. High potential is then applied at the fracture point of the formation to effect fracturing and to enable the fluid to transport proppant into the fracture.
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Citations
2 Claims
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1. A method for drilling and completing a wellbore in a subterranean formation with the same drilling fluid, said method comprising:
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(a) employing an electrically non-conductive, oil based drilling fluid with Newtonian properties; (b) real-time monitoring of the viscosity of said fluid; (c) adjusting said viscosity of said fluid at desired times and locations in the wellbore by applying an electric potential to said fluid at said times and locations increased viscosity of the fluid is desired and ceasing or reducing said electric potential at times and locations decreased viscosity of the fluid is desired; (d) adding at least one organometallic compound to said fluid to enhance the effects of the electrical potential for enhanced viscosity; and (e) avoiding borchale occlusion by said real time monitoring and adjustment of the viscosity of said drilling fluid during drilling to keep said viscosity of said fluid constant and the flow velocity profile of the fluid flat.
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2. A method for drilling and completing a wellbore in a subterranean formation with the same drilling fluid, said method comprising:
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(a) employing an electrically non-conductive, oil based drilling fluid with Newtonian properties; (b) real-time monitoring of the viscosity of said fluid; (c) adjusting said viscosity of said fluid at desired times and locations in the wellbore by applying an electric potential to said fluid at said times and locations increased viscosity of the fluid is desired and ceasing or reducing said electric potential at times and locations decreased viscosity of the fluid is desired; and (d) adding at least one organometallic compound to said fluid to enhance the effects of the electrical potential for enhanced viscosity; wherein electrical potential is applied in different amounts at various locations in the wellbore at the same time.
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Specification