IP Library Granted Patent US 8,944,168
Granted Patent B2
US 8,944,168 · App. 13/353,353 · Granted Feb 3, 2015

High pressure multistage centrifugal pump for fracturing hydrocarbon reserves

Inventors: Dana Pettigrew (Airdrie, CA); Wojciech A. Limanowka (Sherwood Park, CA); Zoran Vukadin (Edmonton, CA)
Assignee: Nexen Energy ULC
F04D29/165E21B43/26F04D1/063F04D29/445
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Quick Facts
Patent No.
US 8,944,168
App. No.
13/353,353
Granted
Feb 3, 2015
Kind
B2
Abstract

The present invention relates to a multistage centrifugal pump design, which has the diffusers, impellors, and a shaft, inserted within a high pressure housing, such that this assembly is fully enclosed within the housing, and the housing is of sufficient strength to be suitable for safe pressure containment of the fluids being pumped. This invention describes the technical details used to reconfigure the multistage centrifugal pump design to increase the discharge pressure capabilities higher than the 6,000 psig of current designs.

Claims (21)

1. A multiple stage centrifugal pump for fracturing hydrocarbon deposits comprising;

a pump housing for primary pressure containment,

a housing seal located between a pump base and a pump head, and being a metal on metal type seal utilizing threads,

diffusers having openings to allow rapid pressure equalization across a diffuser outside edge to avoid failure from high differential pressure, each said diffuser having a seal located on an outside of each of the diffusers to prevent pressure communication and fluid flow between the outsides of the individual diffusers enclosed within the housing, wherein pump connections for pump intake and discharge include ring or gasket sealing, and wherein said pump delivers the discharge pressure or differential pressure between the pump internal and external pressure of up to substantially 10,000 psi or over.

2. The multistage centrifugal pump of claim 1 further comprising impellors and a shaft, inserted within said housing, wherein the diffusers, impellors, and shaft comprise an assembly enclosed within the housing, and the housing being of sufficient strength for safe pressure containment of fluids being pumped.

3. The pump of claim 2 further including a pressure sleeve located on top of a diffuser wall of said diffusers for improved wall strength, therby creating a compression fit formed between the sleeve and an outside diameter of the diffuser wall.

4. The pump of claim 1 or 3 further including: equalization openings formed in the diffuser wall, resulting in zero differential pressure across the diffuser wall which also allows for rapid depressurizing.

5. The pump of claim 4 wherein to prevent stages from collapsing due to pressure transfer from one pump stage to another, an o-ring style seal is utilized between each diffuser and said housing.

6. The pump of claim 1 wherein sealing between the pump housing and both the pump base and the pump head is by said metal on metal threads providing metal on metal sealing.

7. The pump of claim 1 further comprising:

equalization openings formed in the diffuser wall, resulting in substantially zero differential pressure across said diffuser wall thereby providing for rapid depressurizing.

8. The pump of claim 7 further comprising:

o-ring sealing located between each diffuser and said housing to prevent stages from collapsing due to pressure transfer from one pump stage to another.

9. A multistage centrifugal pump assembly comprising:

diffusers, impellers, and a shaft, inserted within a high pressure housing, said assembly being fully enclosed within the housing, and the housing being of sufficient strength for pressure containment of fluids being pumped and to enable increase of discharge pressure capabilities to greater than 6,000 psi discharge pressure thereby providing pressures suitable for fracturing formations penetrated by wellbores.

10. The pump of claim 9 wherein:

said centrifugal pump, operates at speeds of substantially 30 to 90 hz, (1800 to 5400 rpm), with discharge pressures of about 10,000 psi, and with a suction pressure of about 15-600 psi.

11. The pump of claim 10 further comprising:

a pressure sleeve located on top of a diffuser wall of said diffusers for improved wall strength creating a compression fit formed between the sleeve and an outside diameter of the diffuser wall.

12. The pump of claim 11 wherein:

sealing between said pump housing and said pump base, and between said pump head, includes threads providing metal on metal sealing.

Assignments (4)
CHANGE OF NAME Recorded Feb 19, 2019
From: NEXEN ENERGY ULC
To: CNOOC PETROLEUM NORTH AMERICA ULC
Reel/Frame 048366/0576 →
CHANGE OF NAME Recorded Nov 15, 2013
From: NEXEN ENERGY INC.
To: NEXEN ENERGY ULC
Reel/Frame 031611/0627 →
CERTIFICATE OF CONTINUATION Recorded Nov 15, 2013
From: NEXEN INC.
To: NEXEN ENERGY INC.
Reel/Frame 031644/0988 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2012
From: LIMANOWKA, WOJCIECH A.; VUKADIN, ZORAN; PETTIGREW, DANA
To: NEXEN INC.
Reel/Frame 027885/0722 →
Continuity (4)
Continuation In Part 13328245 · Dec 16, 2011
Provisional Application 61434167 · Jan 19, 2011
Provisional Application 61434171 · Jan 19, 2011
Related Publication 20120205112A1 · Aug 16, 2012