IP Library › Granted Patent US 12,584,495
Granted Patent B2
US 12,584,495 · App. 18/140,487 · Granted Mar 24, 2026

Keyless nesting diffuser for centrifugal pumps

Inventors: Kyle Stephens (Claremore, OK); Brett Williams (Houston, TX)
Assignee: Baker Hughes Oilfield Operations LLC
F04D29/445F04D29/426F04D29/628F04D13/10
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Quick Facts
Patent No.
US 12,584,495
App. No.
18/140,487
Granted
Mar 24, 2026
Kind
B2
Abstract

Multistage centrifugal pumping systems include a plurality of pump stages contained within a pump housing. Each stage typically includes a stationary diffuser and a rotatable impeller. Each of the diffusers includes a projection and a receiver that cooperate with the corresponding projection and receiver on adjacent diffusers to form a nested relationship between the diffusers that prevents the diffusers from rotating inside the pump housing. The projections have a projection outer surface with a non-circular shape. The receivers include a receiver inner surface with a complementary non-circular shape. The engagement between the non-circular projection outer surface and the non-circular receiver inner surface locks the adjacent receivers in fixed rotational alignment.

Claims (41)

1 . A pumping system comprising:

a motor; and

a pump driven by the motor, wherein the pump comprises a housing and first and second pump stages inside the housing, wherein the pump further comprises:

a first impeller within the first pump stage;

a first diffuser within the first pump stage, wherein the first diffuser comprises a first end, a second end, and a projection on the second end, wherein the projection has a continuously curved projection outer surface that has a non-circular shape and a projection inner surface, wherein the projection has a variable thickness between the projection outer surface and the projection inner surface;

a second impeller within the second pump stage;

a second diffuser within the second pump stage, wherein the second diffuser comprises a first end, a second end, and a receiver on the first end, wherein the receiver comprises a receiver inner surface that has a continuously curved non-circular shape that is complementary to the continuously curved non-circular shape of the projection outer surface of the first diffuser; and

wherein the projection of the first diffuser nests within the receiver of the second diffuser in only a single orientation such that the first diffuser cannot rotate with respect to the second diffuser.

2 . The pumping system of claim 1 , wherein the first stage is upstream from the second stage inside the housing of the pump.

3 . The pumping system of claim 2 , wherein the first end of the first diffuser is an upstream end and the second end of the first diffuser is a downstream end.

4 . The pumping system of claim 2 , wherein the first end of the second diffuser is an upstream end and the second end of the second diffuser is a downstream end.

5 . The pumping system of claim 1 , wherein the non-circular shape is oblong.

6 . The pumping system of claim 1 , wherein the second diffuser is rotationally oriented with respect to the first diffuser such that the non-circular shape of the projection outer surface of the first diffuser is complementarily arranged with the non-circular shape of the receiver inner surface of the second diffuser.

7 . The pumping system of claim 1 , wherein the projection outer surface of the first diffuser has a maximum diameter (D max ).

8 . The pumping system of claim 7 , wherein the receiver inner surface of the second diffuser has a maximum diameter (D max ) that is the same as the maximum diameter (D max ) of the projection outer surface of the first diffuser.

9 . The pumping system of claim 8 , wherein the second diffuser is rotationally oriented with respect to the first diffuser such that maximum diameter (D max ) of the receiver inner surface of the second diffuser is aligned with the maximum diameter (D max ) of the projection outer surface of the first diffuser when the first and second diffusers are nested together.

10 . The pumping system of claim 1 , wherein the first and second diffusers each further comprise:

a shroud;

a hub; and

a vane assembly connected between the shroud and the hub.

11 . The pumping system of claim 1 , wherein the receiver of the second diffuser comprises a receiver outer surface that is in contact with the housing.

12 . The pumping system of claim 1 , wherein the pumping system is a submersible pumping system.

13 . The pumping system of claim 5 , wherein the non-circular shape of the axial flow diffuser receiver is not oblong.

14 . A pump for use within a pumping system, wherein the pump comprises:

a first stage that includes a first impeller and a first diffuser;

a second stage adjacent to the first stage, wherein the second stage includes a second impeller and a second diffuser;

wherein the first diffuser and second diffuser each include means for nesting the first diffuser and second diffuser together in a rotationally fixed arrangement;

a third stage that includes a third impeller and a third diffuser;

a fourth stage adjacent to the third stage, wherein the fourth stage includes a fourth impeller and a fourth diffuser; and

wherein the third diffuser and fourth diffuser each include means for nesting the third diffuser and fourth diffuser together in a rotationally fixed arrangement, wherein the means for nesting the third diffuser and fourth diffuser together prevent the third diffuser from nesting with the second diffuser.

15 . A pump for use in a pumping system, the pump comprising:

a pump housing;

a first diffuser inside the pump housing, wherein the first diffuser comprises:

a first end having a first diffuser receiver; and

a second end having a first diffuser projection, wherein the first diffuser projection has a non-circular first diffuser projection outer surface;

a second diffuser adjacent to the first diffuser inside the pump housing, wherein the second diffuser comprises:

a first end having a second diffuser receiver, wherein the second diffuser receiver has a non-circular second diffuser receiver inner surface that matches the non-circular first diffuser projection outer surface; and

a second end having a second diffuser projection; and

wherein the first diffuser projection nests within the second diffuser receiver to prevent the second diffuser from rotating with respect to the first diffuser; and

a third diffuser inside the pump housing, wherein the third diffuser comprises:

a first end having a third diffuser receiver, wherein the third diffuser receiver has a third diffuser receiver inner surface that does not match the non-circular first diffuser projection outer surface.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2023
From: STEPHENS, KYLE; WILLIAMS, BRETT
To: BAKER HUGHES OILFIELD OPERATIONS LLC
Reel/Frame 063656/0838 →
Continuity (1)
Related Publication 20240360841A1 · Oct 31, 2024
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