IP Library Granted Patent US 8,997,450
Granted Patent B2
US 8,997,450 · App. 12/951,858 · Granted Apr 7, 2015

Filter cartridge assembly for use with turbine engine systems

Inventors: Etienne Rene Jarrier (Basingstoke, GB); Charles Brake (Alton, GB); Paul Sherwood Bryant (Amesbury, GB)
Assignee: BHA Altair, LLC
F02C7/055B01D46/002B01D46/0024B01D46/003B01D46/2407B01D2265/02B01D2275/201B01D2279/60F05D2250/232
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Quick Facts
Patent No.
US 8,997,450
App. No.
12/951,858
Granted
Apr 7, 2015
Kind
B2
Abstract

A filter cartridge assembly includes a first filter including a first cavity defined therein and a second filter coupled to the first filter. The second filter includes a second cavity defined therein in flow communication with first cavity. The filter cartridge assembly also includes at least one pre-filter extending about the first filter and the second filter such that a third cavity is defined between the at least one pre-filter and at least one of the first filter and the second filter.

Claims (31)

1. A filter cartridge assembly comprising:

a first filter including a first cavity defined therein;

a second filter coupled to said first filter, said second filter including a second cavity defined therein in flow communication with said first cavity;

at least one pre-filter extending about said first filter and said second filter such that a third cavity is defined between said at least one pre-filter and at least one of said first filter and said second filter, wherein air flow from the third cavity to the second cavity passes through at least one of said first filter and said second filter, wherein the pre-filter is a water coalescing filter configured to channel water away from the first filter and the second filter;

at least one spacer extending between said at least one pre-filter and at least one of said first filter and said second filter such that said third cavity is at least partially defined by said at least one spacer, said at least one pre-filter, and said at least one of said first and said second filter, wherein said at least one spacer is at the same axial location along a centerline of the filter cartridge assembly as a junction of said first filter and said second filter.

2. A filter cartridge assembly in accordance with claim 1 , wherein said first filter is substantially cylindrical.

3. A filter cartridge assembly in accordance with claim 1 , wherein said second filter is substantially frusto-conical.

4. A filter cartridge assembly in accordance with claim 1 , wherein at least one second spacer is coupled to an upstream end of said first filter.

5. A filter cartridge assembly in accordance with claim 1 , wherein said at least one spacer is helical, said at least one pre-filter is coupled to said at least one spacer such that said pre-filter is biased radially outward from said first filter and said second filter.

6. A filter cartridge assembly in accordance with claim 1 , wherein said at least one pre-filter comprises a first pre-filter and a second pre-filter, and wherein said at least one spacer comprises a first spacer coupled to said first pre-filter and a second spacer coupled to said second pre-filter.

7. A turbine engine system comprising:

a turbine;

a compressor coupled upstream from said turbine; and

an inlet filter house coupled upstream from said compressor and comprising at least one filter cartridge assembly configured to at least partially remove particulates and moisture from an inlet airflow channeled to said compressor, said at least one filter cartridge assembly comprising:

a first filter including a first cavity defined therein;

a second filter coupled to said first filter, said second filter including a second cavity defined therein in flow communication with said first cavity;

at least one pre-filter extending about said first filter and said second filter such that a third cavity is defined between said at least one pre-filter and at least one of said first filter and said second filter, wherein air flow from the third cavity to the second cavity passes through at least one of said first filter and said second filter, wherein the pre-filter is a water coalescing filter configured to channel water away from the first filter and the second filter;

at least one spacer extending between said at least one pre-filter and at least one of said first filter and said second filter such that said third cavity is at least partially defined by said at least one spacer, said at least one pre-filter, and said at least one of said first and said second filter, wherein said at least one spacer is at the same axial location along a centerline of the filter cartridge assembly as a junction of said first filter and said second filter.

8. A turbine engine system in accordance with claim 7 , wherein said first filter is substantially cylindrical.

9. A turbine engine system in accordance with claim 7 , wherein said second filter is substantially frusto-conical.

10. A turbine engine system in accordance with claim 7 , wherein at least one second spacer is coupled to an upstream end of said first filter.

11. A turbine engine system in accordance with claim 7 , wherein said at least one spacer is helical, said at least one pre-filter is coupled to said at least one spacer such that said pre-filter is biased radially outward from said first filter and said second filter.

12. A turbine engine system in accordance with claim 7 , wherein said at least one pre-filter comprises a first pre-filter and a second pre-filter, and wherein said at least one spacer comprises a first spacer coupled to said first pre-filter and a second spacer coupled to said second pre-filter.

13. A method of assembling the filter cartridge assembly of claim 1 , said method comprising:

providing a first filter including a first cavity defined therein;

providing a second filter including a second cavity defined therein;

coupling the first filter to the second filter to place the first cavity in flow communication with the second cavity;

coupling at least one spacer to an outer surface of at least one of the first filter and the second filter wherein said at least one spacer is at the same axial location along a centerline of the filter cartridge assembly as a junction of said first filter and said second filter; and

coupling at least one pre-filter to an outer surface of the at least one spacer such that a third cavity is defined between the at least one pre-filter and at least one of the first filter and the second filter, wherein air flow from the third cavity to the second cavity passes through at least one of said first filter and said second filter, wherein the pre-filter is a water coalescing filter configured to channel water away from the first filter and the second filter.

14. A method in accordance with claim 13 , further comprising the step of providing at least one second spacer coupled to an upstream end of said first filter.

15. A method in accordance with claim 13 , wherein coupling the at least one spacer to at least one of the first filter and the second filter comprises coupling a helical spacer to the first filter and the second filter such that the at least one pre-filter is biased radially outward from the first filter and the second filter.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2014
From: GENERAL ELECTRIC COMPANY; BHA GROUP, INC.; ALTAIR FILTER TECHNOLOGY LIMITED
To: BHA ALTAIR, LLC
Reel/Frame 031911/0797 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2010
From: JARRIER, ETIENNE RENE; BRAKE, CHARLES; BRYANT, PAUL SHERWOOD
To: GENERAL ELECTRIC COMPANY
Reel/Frame 025393/0400 →
Continuity (1)
Related Publication 20120124961A1 · May 24, 2012