IP Library Granted Patent US 8,113,824
Granted Patent B2
US 8,113,824 · App. 11/444,779 · Granted Feb 14, 2012

Large diameter mid-zone air separation cone for expanding IRZ

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Quick Facts
Patent No.
US 8,113,824
App. No.
11/444,779
Granted
Feb 14, 2012
Kind
B2
Abstract

A large diameter mid-zone air separation cone is provided for decreasing NOx during burner operation by expanding the internal recirculation zone (IRZ) at the burner exit. The mid-zone air separation cone has a short cylindrical leading edge that fits in the outer air zone of a burner. The mid-zone air separation cone splits the outer air zone secondary air flow into two equal or unequal streams depending on the position of the air separation cone with respect to the outer air zone, and deflects a portion of the secondary air flow radially outward. Since the radial position of the air separation cone is farther from the burner centerline, the IRZ size is expanded and NOx emissions are minimized.

Claims (49)

1. A burner with low emissions and low unburned fuel losses, comprising:

a fuel nozzle means with an axis and an outlet;

at least one inner air zone with an outlet end concentrically surrounding said fuel nozzle means;

an outer air zone with an outlet end having a wall concentrically surrounding said inner air zone;

first means for imparting swirl positioned in said inner air zone;

second means for imparting swirl positioned in said outer air zone; and

an air separation cone for splitting secondary air flow in said outer air zone into two separate streams and deflecting a portion of said secondary air flow radially outward, wherein said imparted swirl produces internal recirculation zones, said air separation cone having a horizontal axis;

wherein said air separation cone includes a cylindrical leading edge that fits in said outer air zone, said cylindrical leading edge being completely parallel to said horizontal axis of said air separation cone, and wherein a diverging angle of said air separation cone with respect to said axis of said fuel nozzle means ranges from 25 to 45 degrees;

wherein said at least one inner air zone comprises:

a first annular transition zone concentrically surrounding said fuel nozzle means, said first annular transition zone being constructed to provide air for near-burner mixing and stability; and

wherein said fuel nozzle means includes a center passage for secondary air and a surrounding outer passage for primary fuel with primary air for combustion in a primary zone;

wherein said at least one inner air zone is an annular transition zone concentrically surrounding said fuel nozzle means, said annular transition zone being constructed to provide air for near-burner mixing and stability;

wherein said air separation cone is supported by standoffs inside said outer air zone; and

wherein said air separation cone divides said outlet end of said outer air zone into two outlets.

2. A burner according to claim 1 , wherein said air separation cone is positioned to split said secondary flow into equal portions.

3. A burner according to claim 1 , wherein said air separation cone is positioned to split said secondary flow into unequal portions.

4. A low emissions burner, comprising: a fuel nozzle means for passage of at least a primary fuel with primary air for combustion in a primary zone, said fuel nozzle means having an axis and further having an outlet end;

at least one inner air zone with an outlet end concentrically surrounding said fuel nozzle means;

an outer air zone with an outlet end having a wall concentrically surrounding said at least one inner air zone defining means;

first means for imparting swirl positioned in said inner air zone;

second means for imparting swirl positioned in said outer air zone; and

a mid-zone air separation cone fitted within said outer air zone and having a horizontal axis;

wherein said air separation cone includes a cylindrical leading edge that fits in said outer air zone, said cylindrical leading edge being completely parallel to said horizontal axis of said air separation cone, and wherein a diverging angle of said air separation cone with respect to said axis of said fuel nozzle means ranges from 25 to 45 degrees; and

wherein said at least one inner air zone comprises:

a first annular transition zone concentrically surrounding said fuel nozzle means, said first annular transition zone being constructed to provide air for near-burner mixing and stability; and

wherein said fuel nozzle means includes a center passage for secondary air and a surrounding outer passage for primary fuel with primary air for combustion in a primary zone;

wherein said at least one inner air zone is an annular transition zone concentrically surrounding said fuel nozzle means, said annular transition zone being constructed to provide air for near-burner mixing and stability;

wherein said air separation cone is supported by standoffs inside said outer air zone; and

wherein said air separation cone divides said outlet end of said outer air zone into two outlets.

5. A burner according to claim 4 , wherein said at least one inner air zone is an annular transition zone concentrically surrounding said fuel nozzle means, said annular transition zone being constructed to provide air for near-burner mixing and stability.

6. A burner according to claim 4 , wherein said air separation cone is positioned to split secondary air flow into equal portions.

7. A burner according to claim 4 , wherein said air separation cone is positioned to split secondary air flow into unequal portions.

8. A burner according to claim 4 , wherein said fuel nozzle means includes a center passage for secondary air and a surrounding outer passage for primary fuel with primary air for combustion in a primary zone.

9. A burner with low emissions and low unburned fuel losses, comprising:

a fuel nozzle means with an axis and an outlet;

at least one inner air zone with an outlet end concentrically surrounding said fuel nozzle means;

an outer air zone with an outlet end concentrically surrounding said fuel nozzle;

means for imparting swirl positioned in said outer air zone; and

an air separation cone for splitting secondary air flow in said outer air zone into two separate streams and deflecting a portion of said secondary air flow radially outward, wherein said imparted swirl produces internal recirculation zones, said air separation having a horizontal axis;

wherein said air separation cone includes a cylindrical leading edge that fits in said outer air zone, said cylindrical leading edge being completely parallel to said horizontal axis of said air separation cone, and wherein a diverging angle of said air separation cone with respect to said axis of said fuel nozzle means ranges from 25 to 45 degrees; and

wherein said at least one inner air zone comprises:

a first annular transition zone concentrically surrounding said fuel nozzle means, said first annular transition zone being constructed to provide air for near-burner mixing and stability; and

wherein said fuel nozzle means includes a center passage for secondary air and a surrounding outer passage for primary fuel with primary air for combustion in a primary zone;

wherein said at least one inner air zone is an annular transition zone concentrically surrounding said fuel nozzle means, said annular transition zone being constructed to provide air for near-burner mixing and stability;

wherein said air separation cone is supported by standoffs inside said outer air zone; and

wherein said air separation cone divides said outlet end of said outer air zone into two outlets.

10. A burner according to claim 9 , wherein said air separation cone is positioned to split said secondary flow into equal portions.

11. A burner according to claim 9 , wherein said air separation cone is positioned to split said secondary flow into unequal portions.

12. The low emissions burner according to claim 4 , wherein said mid-zone air separation cone is supported by standoffs inside said outer air zone.

Assignments (14)
SECURITY INTEREST Recorded Jul 18, 2025
From: BABCOCK & WILCOX ENTERPRISES, INC.; THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; BABCOCK & WILCOX SPIG, INC.; BABCOCK & WILCOX CANADA CORP.; BABCOCK & WILCOX FPS INC.
To: B. RILEY FINANCIAL, INC.
Reel/Frame 072053/0943 →
SECURITY INTEREST Recorded May 23, 2025
From: BABCOCK & WILCOX ENTERPRISES, INC.; THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; BABCOCK & WILCOX SPIG, INC.; BABCOCK & WILCOX CANADA CORP.; BABCOCK & WILCOX FPS INC.
To: GLAS TRUST COMPANY LLC
Reel/Frame 071371/0835 →
SECURITY INTEREST Recorded Mar 3, 2025
From: BABCOCK & WILCOX ENTERPRISES, INC.; THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; BABCOCK & WILCOX SPIG, INC.; BABCOCK & WILCOX CANADA CORP.; BABCOCK & WILCOX FPS INC.
To: PENSION BENEFIT GUARANTY CORPORATION
Reel/Frame 070380/0647 →
RELEASE OF SECURITY INTEREST Recorded Sep 13, 2024
From: MSD PCOF PARTNERS XLV, LLC
To: THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; AMERICON LLC
Reel/Frame 069017/0362 →
SECURITY INTEREST Recorded Jan 19, 2024
From: BABCOCK & WILCOX ENTERPRISES, INC.; THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; BABCOCK & WILCOX SPIG, INC.; BABCOCK & WILCOX CANADA CORP.; BABCOCK & WILCOX FPS INC.
To: AXOS BANK, AS ADMINISTRATIVE AGENT
Reel/Frame 066354/0765 →
SECURITY INTEREST Recorded Jul 22, 2021
From: THE BABCOCK & WILCOX COMPANY (F/K/A BABCOCK & WILCOX POWER GENERATION GROUP, INC.); BABCOCK & WILCOX SPIG, INC.; BABCOCK & WILCOX TECHNOLOGY, LLC; DIAMOND POWER INTERNATIONAL, LLC (F/K/A DIAMOND POWER INTERNATIONAL, INC.)
To: MSD PCOF PARTNERS XLV, LLC, AS AGENT
Reel/Frame 056962/0486 →
RELEASE OF SECURITY INTEREST Recorded Jul 1, 2021
From: BANK OF AMERICA, N.A.
To: DIAMOND POWER INTERNATIONAL, LLC (F/K/A DIAMOND POWER INTERNATIONAL, INC.); MEGTEC TURBOSONIC TECHNOLOGIES, INC.; THE BABCOCK & WILCOX COMPANY (F/K/A BABCOCK & WILCOX POWER GENERATION GROUP, INC.); BABCOCK & WILCOX SPIG, INC.; BABCOCK & WILCOX TECHNOLOGY, LLC (F/K/A MCDERMOTT TECHNOLOGY, INC.); SOFCO-EFS HOLDINGS LLC; BABCOCK & WILCOX MEGTEC, LLC
Reel/Frame 057337/0823 →
RELEASE OF SECURITY INTEREST Recorded May 17, 2018
From: LIGHTSHIP CAPITAL LLC
To: BABCOCK & WILCOX ENTERPRISES, INC.; THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; BABCOCK & WILCOX MEGTEC, LLC; MEGTEC TURBOSONIC TECHNOLOGIES, INC.; BABCOCK & WILCOX UNIVERSAL, INC.; BABCOCK & WILCOX TECHNOLOGY, LLC
Reel/Frame 046182/0829 →
SECURITY INTEREST Recorded Aug 10, 2017
From: THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; BABCOCK & WILCOX MEGTEC, LLC; MEGTEC TURBOSONIC TECHNOLOGIES, INC.; BABCOCK & WILCOX UNIVERSAL, INC.; BABCOCK & WILCOX TECHNOLOGY, LLC
To: LIGHTSHIP CAPITAL LLC
Reel/Frame 043515/0001 →
CHANGE OF NAME Recorded Sep 24, 2015
From: BABCOCK & WILCOX POWER GENERATION GROUP, INC.
To: THE BABCOCK & WILCOX COMPANY
Reel/Frame 036675/0434 →
SECURITY INTEREST Recorded Jul 28, 2015
From: BABCOCK & WILCOX POWER GENERATION GROUP, INC. (TO BE RENAMED THE BABCOCK AND WILCOX COMPANY)
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 036201/0598 →
SECURITY INTEREST Recorded Jul 22, 2014
From: BABCOCK & WILCOX POWER GENERATION GROUP, INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 033380/0744 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Sep 30, 2010
From: BABCOCK & WILCOX POWER GENERATION GROUP, INC. (F.K.A. THE BABCOCK & WILCOX COMPANY)
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 025066/0080 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2006
From: SARV, MR. HAMID; SAYRE, MR. ALAN N.; LARUE, MR. ALBERT D.; KAHLE, MR. WILLIAM J.; ROWLEY, MR. DANIEL R
To: THE BABCOCK & WILCOX COMPANY
Reel/Frame 017959/0420 →