IP Library Patent Application 14195306
Patent Application
App. No. 14/195,306

DUAL INLET TURBINE PUMP

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Quick Facts
Patent No.
US None
App. No.
14/195,306
Abstract

A pump for providing a flow of fluid from a fluid source to a fluid destination. The pump includes a rotatable turbine, a first inlet port in fluid communication with the turbine, a first outlet port in fluid communication with the first inlet port, a second inlet port in fluid communication with the turbine, and a second outlet port in fluid communication with the second inlet port. The turbine pumps fluid from the fluid source into the first inlet port and out of the first inlet port into a reservoir. The turbine pumps fluid in the reservoir into the second inlet port and out of the second outlet port to the fluid destination.

Claims (42)

1 . A pump for pumping fluid from a fluid source to a fluid destination, the pump comprising:

a first inlet port adapted to be in fluid communication with the fluid source;

a turbine having a central axis, the turbine adapted to rotate about the central axis, the turbine being in fluid communication with the first inlet port;

a first outlet port in fluid communication with the turbine and the first inlet port, a first fluid flow path extending between the first inlet port and the first outlet port, the turbine adapted to cause fluid to flow through the first fluid flow path from the first inlet port to the first outlet port;

a second inlet port adapted to be in fluid communication with fluid discharged from the first outlet port, the turbine being in fluid communication with the second inlet port;

a second outlet port in fluid communication with the turbine and the second inlet port, a second fluid flow path extending between the second inlet port and the second outlet port, the second outlet port adapted to be placed in fluid communication with the fluid destination, the turbine adapted to cause fluid to flow through the second fluid flow path from the second inlet port to the second outlet port.

2 . The pump of claim 1 wherein the turbine includes a peripheral side wall, a disk located within and spaced apart from the side wall, and a plurality of outer blades located between the disk and the side wall, the outer blades are spaced apart from one another such that a fluid passage is formed between each adjacent pair of outer blades, each fluid passage formed by the outer blades adapted to be in intermittent fluid communication with the second fluid flow path as the turbine rotates.

3 . The pump of claim 2 wherein the disk of the turbine includes a plurality of inner blades that are spaced apart from one another in a generally circular manner about the central axis of the turbine.

4 . The pump of claim 3 wherein the disk of the turbine includes an exterior surface and an interior surface, each inner blade comprising a bore that extends from the exterior surface of the disk to the interior surface of the disk, each bore of an inner blade adapted to in intermittent fluid communication with the first fluid flow path as the turbine rotates.

5 . The pump of claim 4 wherein each bore of an inner blade is generally triangular shaped.

6 . The pump of claim 3 wherein the inner blades of the turbine are located at a first distance from the central axis of the turbine and the outer blades of the turbine are located outwardly from the inner blades at a second distance from the central axis of the turbine.

7 . The pump of claim 1 including an end cap, the end cap including the first inlet port, the first outlet port and the second inlet port.

8 . The pump of claim 7 wherein the end cap includes an inner groove having a first end in fluid communication with the first inlet port and a second end in fluid communication with the first outlet port, the inner groove being in fluid communication with the turbine.

9 . The pump of claim 8 wherein the end cap includes an outer groove having a first end in fluid communication with the second inlet port and a second end, the outer groove being in fluid communication with the turbine.

10 . The pump of claim 9 wherein the turbine includes a plurality of inner blades that are adapted to be in fluid communication with the inner groove as the turbine rotates and a plurality of outer blades that are adapted to be in fluid communication with the outer groove as the turbine rotates.

11 . The pump of claim 9 wherein the inner groove extends in a partial circular manner about the central axis of the turbine, and the outer groove extends in a partial circular manner about the central axis of the turbine, the outer groove being located radially outwardly from the inner groove.

12 . The pump of claim 1 including a collar having an exterior surface, an interior surface, and an inner groove formed in the exterior surface of the collar having a first end and a second end, the inner groove of the collar being in fluid communication with the turbine.

13 . The pump of claim 12 wherein the collar includes an outer groove formed in the exterior surface of the collar having a first end and a second end, and a bore extending through the collar from the exterior surface to the interior surface of the collar, the second end of the outer groove of the collar being in fluid communication with the bore of the collar, the bore of the collar being in fluid communication with the second outlet port.

14 . The pump of claim 13 wherein the collar includes a groove formed in the interior surface of the collar having a first end in fluid communication with the bore of the collar and a second end.

15 . The pump of claim 13 wherein the inner groove of the collar extends in a partial circular manner about the central axis of the turbine, and the outer groove of the collar extends in a partial circular manner about the central axis of the turbine, the outer groove of the collar being located radially outwardly from the inner groove of the collar.

16 . The pump of claim 1 including a housing having a first end and a second end, the housing including the second outlet port.

17 . The pump of claim 16 including a collar coupled to the first end of the housing, the collar being in fluid communication with turbine and the first fluid flow path and the second fluid flow path, and an end cap including the first inlet port, the first outlet port and the second inlet port, the end cap being in fluid communication with the turbine, the turbine being located between the collar and the end cap.

18 . The pump of claim 17 including a motor coupled to the turbine, the motor adapted to selectively rotate the turbine about the central axis of the turbine.

19 . The pump of claim 1 wherein the pump is located within a reservoir having a chamber adapted to contain fluid to be pumped to the fluid destination, the reservoir located within a chamber of a tank adapted to contain fluid comprising the fluid source, the first inlet port of the pump being in fluid communication with the chamber of the tank, the first outlet port of pump being in fluid communication with the chamber of the reservoir, and the second inlet port of the pump being in fluid communication with the chamber of the reservoir and the second outlet port of the pump, the turbine adapted to pump fluid from the fluid source located in the chamber of the tank into the first inlet port of the pump and out of the first outlet port of the pump into the chamber of the reservoir, and to pump fluid in the chamber of the reservoir into the second inlet port of the pump and out of the second outlet port of the pump to the fluid destination.

20 . A pump for pumping fluid from a fluid source to a fluid destination, the pump comprising:

a housing having an outlet port adapted to be placed in fluid communication with the fluid destination;

a collar coupled to the housing, the collar including a bore in fluid communication with the outlet port of the housing;

a turbine having a central axis, a plurality of inner bores in fluid communication with the collar, and a plurality outer fluid passages in fluid communication with the collar, the turbine being selectively rotatable about the central axis of the turbine;

an end cap having a first inlet port in fluid communication with one or more of the inner bores of the turbine as the turbine rotates, an outlet port in fluid communication with one or more of the inner bores of the turbine as the turbine rotates, and a second inlet port in fluid communication with one or more of the outer fluid passages of the turbine as the turbine rotates.

21 . The pump of claim 20 wherein the collar includes an inner groove having a first end and a second end, the inner groove of the collar being in fluid communication with one or more of the inner bores of the turbine as the turbine rotates, and an outer groove that is in fluid communication with the second outlet port and one or more of the outer fluid passages of the turbine as the turbine rotates.

22 . The pump of claim 20 wherein the end cap includes an inner groove having a first end in fluid communication with the first inlet port, the first outlet port and one or more of the inner bores of the turbine as the turbine rotates, and an outer groove that is in fluid communication with the second inlet port and one or more of the outer fluid passages of the turbine as the turbine rotates.

23 . A method for pumping fluid from a fluid source to a fluid destination, the method comprising:

providing a pump having a selectively rotatable turbine, a first inlet port in fluid communication with the turbine and adapted to be placed in fluid communication with the fluid source, a first outlet port in fluid communication with the turbine and the first inlet port, a second inlet port in fluid communication with the turbine, and a second outlet port in fluid communication with the turbine and the second inlet port and adapted to be placed in fluid communication with the fluid destination;

pumping fluid from the fluid source into the first inlet port of the pump and out of the first outlet port of the pump;

pumping the fluid discharged from the first outlet port of the pump into the second inlet port of the pump and out of the second outlet port of the pump.

24 . The method of claim 23 wherein fluid is pumped from the first inlet port to the first outlet port through a first fluid flow path, and fluid is pumped from the second inlet port to the second outlet port through a second fluid flow path, the second fluid flow path being separate from the first fluid flow path.

25 . The method of claim 24 wherein the turbine is in fluid communication with the first fluid flow path and the second fluid flow path.

26 . The method of claim 23 wherein the pump pumps fluid from a chamber of a tank that comprises the fluid source into the first inlet port of the pump and out of the first inlet port of the pump into a chamber of a reservoir.

27 . The method of claim 26 wherein the pump pumps fluid in the chamber of the reservoir into the second inlet port of the pump and out of the second outlet port of the pump to the fluid destination.

28 . The method of claim 24 wherein the turbine pumps fluid through the second fluid flow path at a pressure that is higher than the pressure at which the turbine pumps the fluid through the first fluid flow path.

29 . The method of claim 24 wherein the turbine pumps fluid through the first fluid flow path at a first flow rate and pumps fluid through the second fluid flow path at a second flow rate, the first flow rate being greater than the second flow rate.

30 . The method of claim 23 wherein the fluid comprises fuel.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Feb 1, 2019
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: AIRTEX PRODUCTS, LP
Reel/Frame 048215/0902 →
SECURITY AGREEMENT Recorded Jan 3, 2017
From: AIRTEX PRODUCTS, LP
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 041231/0765 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jan 3, 2017
From: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH
To: AIRTEX PRODUCTS, LP; CHAMPION LABORATORIES, INC.
Reel/Frame 041291/0741 →
SECURITY AGREEMENT Recorded Oct 15, 2015
From: AIRTEX PRODUCTS, LP; CHAMPION LABORATORIES, INC.
To: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH, AS COLLATERAL AGENT
Reel/Frame 036875/0663 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 21, 2014
From: BARNETT, ROBERT; STEPHENS, BRUCE
To: AIRTEX PRODUCTS, LP
Reel/Frame 032717/0105 →