IP Library Granted Patent US 8,147,575
Granted Patent B2
US 8,147,575 · App. 12/556,212 · Granted Apr 3, 2012

Multi-stage oil separation system including a cyclonic separation stage

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Quick Facts
Patent No.
US 8,147,575
App. No.
12/556,212
Granted
Apr 3, 2012
Kind
B2
Abstract

A separator for separating a liquid-gas flow into a liquid and a compressed gas includes a housing that defines an inner space and that is adapted to contain the full pressure of the compressed gas. The housing includes a liquid-gas inlet, a liquid outlet, and a gas outlet. A first stage separator is positioned to receive the liquid-gas flow from the inlet. The first stage separator is operable to separate a first portion of the liquid from the liquid-gas flow. A second stage separator includes a swirl vane separator and is positioned to receive the liquid-gas flow from the first stage separator and is operable to separate a second portion of the liquid from the liquid-gas flow. A third stage separator is positioned to receive the liquid-gas flow from the swirl vane separator and is operable to separate a third portion of the liquid from the liquid-gas flow. The first stage separator, the second stage separator, and the third stage separator are completely contained within the housing.

Claims (42)

1. A separator for separating a liquid-gas flow into a liquid and a compressed gas, the separator comprising:

a housing defining an inner space and adapted to contain the full pressure of the compressed gas, the housing including a liquid-gas inlet, a liquid outlet, and a gas outlet;

a first stage separator positioned to receive the liquid-gas flow from the inlet, the first stage separator operable to separate a first portion of the liquid from the liquid-gas flow;

a second stage separator including a swirl vane separator positioned to receive the liquid-gas flow from the first stage separator and operable to separate a second portion of the liquid from the liquid-gas flow; and

a third stage separator positioned to receive the liquid-gas flow from the swirl vane separator and operable to separate a third portion of the liquid from the liquid-gas flow, the third stage separator including an individual cyclone separator having an inlet, a gas outlet, a liquid outlet, and a frustoconical portion extending between the inlet and the liquid outlet, wherein the first stage separator, the second stage separator, and the third stage separator are completely contained within the housing.

2. The separator of claim 1 , wherein the first portion of the liquid, the second portion of the liquid, and the third portion of the liquid exit the separator through the liquid outlet.

3. The separator of claim 1 , wherein the first stage separator includes a cyclonic separator at least partially formed as part of the housing.

4. The separator of claim 1 , further comprising a divider plate positioned to divide the inner space into a first space and a second space, the first separator positioned within the first space, the third separator positioned within the second space, and the swirl vane separator positioned to direct the liquid-gas flow from the first space to the second space.

5. The separator of claim 4 , further comprising a vortex isolation plate positioned within the first space to divide the first space into an upper first space and a lower first space.

6. The separator of claim 1 , wherein the third stage separator includes a coalescing filter.

7. The separator of claim 1 , wherein the third stage separator includes a plurality of individual cyclone separators, wherein each of the cyclone separators includes a liquid-gas inlet, a liquid outlet, and a gas outlet, the liquid-gas inlet arranged to induce a cyclonic flow within each individual cyclone separator.

8. The separator of claim 7 , further comprising an enclosed collector including a collector outlet, the enclosed collector positioned to receive a flow of liquid from each of the individual cyclone separators and to direct that flow to the liquid outlet via the collector outlet.

9. The separator of claim 7 , further comprising a fourth stage separator positioned within the housing to receive the liquid-gas flow from the third stage separator and operable to separate a fourth portion of the liquid from the liquid-gas flow, wherein the fourth stage separator includes a coalescing filter.

10. A separator for separating a liquid-gas flow into a liquid and a compressed gas, the separator comprising:

a housing defining an inner space and adapted to contain the full pressure of the compressed gas, the housing including a liquid-gas inlet, a liquid outlet, and a gas outlet;

a first stage separator positioned to receive the liquid-gas flow from the inlet, the first stage separator operable to separate a first portion of the liquid from the liquid-gas flow;

a second stage separator including a swirl vane separator positioned to receive the liquid-gas flow from the first stage separator and operable to separate a second portion of the liquid from the liquid-gas flow;

a third stage separator positioned to receive the liquid-gas flow from the swirl vane separator and operable to separate a third portion of the liquid from the liquid-gas flow, wherein the first stage separator, the second stage separator, and the third stage separator are completely contained within the housing

a divider plate positioned to divide the inner space into a first space and a second space, the first separator positioned within the first space, the third separator positioned within the second space, and the swirl vane separator positioned to direct the liquid-gas flow from the first space to the second space;

a vortex isolation plate positioned within the first space to divide the first space into an upper first space and a lower first space; and

a center body that extends between the swirl vane separator and the vortex isolation plate.

11. A separator for separating a liquid-gas flow into a liquid and a compressed gas, the separator comprising:

a housing defining an inner space and adapted to contain the full pressure of the compressed gas, the housing defining a longitudinal axis and including a liquid-gas inlet, a liquid outlet, and a gas outlet, wherein the liquid-gas inlet is angled at an oblique angle with respect to the longitudinal axis;

a first stage separator including a cyclonic separator formed as part of the housing, the cyclonic separator operable to separate a first portion of the liquid from the liquid-gas flow;

a second stage separator including a swirl vane separator positioned to receive the liquid-gas flow from the first stage separator and operable to separate a second portion of the liquid from the liquid-gas flow; and

a third stage separator including a plurality of individual cyclone separators positioned to receive the liquid-gas flow from the swirl vane separator and operable to separate a portion of the liquid from the liquid-gas flow.

12. The separator of claim 11 , wherein the first stage separator, the second stage separator, and the third stage separator are completely contained within the housing.

13. The separator of claim 11 , wherein the first portion of the liquid, the second portion of the liquid, and the third portion of the liquid exit the separator through the liquid outlet.

14. The separator of claim 11 , further comprising a divider plate positioned to divide the inner space into a first space and a second space, the first separator positioned within the first space, the third separator positioned within the second space, and the swirl vane separator positioned to direct the liquid-gas flow from the first space to the second space.

15. The separator of claim 14 , further comprising a vortex isolation plate positioned within the first space to divide the first space into an upper first space and a lower first space.

16. The separator of claim 11 , wherein the third stage separator includes a plurality of individual cyclone separators, wherein each of the cyclone separators includes a liquid-gas inlet, a liquid outlet, and a gas outlet, the liquid-gas inlet arranged to induce a cyclonic flow within each individual cyclone separator.

17. The separator of claim 16 , further comprising an enclosed collector including a collector outlet, the enclosed collector positioned to receive a flow of liquid from each of the individual cyclone separators and to direct that flow to the liquid outlet via the collector outlet.

18. The separator of claim 16 , further comprising a fourth stage separator positioned within the housing to receive the liquid-gas flow from the third stage separator and operable to separate a fourth portion of the liquid from the liquid-gas flow, wherein the fourth stage separator includes a coalescing filter.

19. The separator of claim 11 , wherein the liquid-gas inlet is angled between about 10 and 30 degrees downward with respect to the longitudinal axis.

20. A separator for separating a liquid-gas flow into a liquid and a compressed gas, the separator comprising:

a housing defining an inner space and adapted to contain the full pressure of the compressed gas, the housing defining a longitudinal axis and including a liquid-gas inlet, a liquid outlet, and a gas outlet;

a first stage separator including a cyclonic separator formed as part of the housing, the cyclonic separator operable to separate a first portion of the liquid from the liquid-gas flow;

a second stage separator including a swirl vane separator positioned to receive the liquid-gas flow from the first stage separator and operable to separate a second portion of the liquid from the liquid-gas flow;

a third stage separator including a plurality of individual cyclone separators positioned to receive the liquid-gas flow from the swirl vane separator and operable to separate a portion of the liquid from the liquid-gas flow

a divider plate positioned to divide the inner space into a first space and a second space, the first separator positioned within the first space, the third separator positioned within the second space, and the swirl vane separator positioned to direct the liquid-gas flow from the first space to the second space;

a vortex isolation plate positioned within the first space to divide the first space into an upper first space and a lower first space; and

a center body that extends between the swirl vane separator and the vortex isolation plate.

Assignments (4)
RELEASE OF PATENT SECURITY INTEREST Recorded May 14, 2024
From: CITIBANK, N.A., AS COLLATERAL AGENT
To: HASKEL INTERNATIONAL, LLC; MILTON ROY, LLC; INGERSOLL-RAND INDUSTRIAL U.S., INC.
Reel/Frame 067401/0811 →
SECURITY INTEREST Recorded Mar 3, 2020
From: CLUB CAR, LLC; MILTON ROY, LLC; HASKEL INTERNATIONAL, LLC; INGERSOLL-RAND INDUSTRIAL U.S., INC.
To: CITIBANK, N.A., AS ADMINISTRATIVE AGENT AND COLLATERAL AGENT
Reel/Frame 052072/0381 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2019
From: INGERSOLL-RAND COMPANY
To: INGERSOLL-RAND INDUSTRIAL U.S., INC.
Reel/Frame 051315/0108 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2009
From: LUCAS, MICHAEL J.
To: INGERSOLL-RAND COMPANY
Reel/Frame 023207/0160 →