IP Library › Granted Patent US 12,429,215
Granted Patent B2
US 12,429,215 · App. 16/917,944 · Granted Sep 30, 2025

Burner with a moveable air flow diverter

Inventor: Andrew Richardson (Clinton, NJ)
Assignee: Messer Industries USA, Inc.
F23C9/006F23D1/00F23D11/02F23D14/22F23D17/005F23L7/007F23C2202/40F23C2900/06041F23C2900/07021F23C2900/09002F23C2900/99001F23D2209/20F23D2900/00006
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Quick Facts
Patent No.
US 12,429,215
App. No.
16/917,944
Granted
Sep 30, 2025
Kind
B2
Abstract

A burner includes an oxidant feed passage, a fuel feed passage surrounding the oxidant feed passage, an air feed surrounding the fuel feed passage, a movable air flow diverter and, optionally, a flame nozzle. The movable air flow diverter and/or flame nozzle are independently configured to create one or a plurality of gas recirculation regions adjacent the downstream tip of the burner to improve the mixing and reaction of the fuel and oxidant, and overall combustion process efficiency. A related furnace and method for generating a stable flame with the burner are also provided.

Claims (18)

1. A burner, comprising:

an oxidant feed passage ( 11 ) for providing an oxidant feed;

a fuel feed passage ( 12 ) surrounding the oxidant feed passage and for providing a fuel feed stream ( 12 a );

an air flow annulus ( 13 ) surrounding the fuel feed passage and for providing an air feed stream ( 13 a ), the air feed stream which converges with the fuel feed stream ( 12 a ) downstream of the burner being contained with the air flow annulus at least partially surrounding the fuel feed passage;

a plurality of oxidant injectors ( 16 ) positioned about the burner each one of the plurality of oxidant injectors being surrounded by another air flow annulus ( 18 ); and

a movable air flow diverter ( 55 ) positionable in the air feed stream along at least an outer surface portion of the fuel feed passage, the movable air flow diverter being (i) reciprocally positionable along a portion of a longitudinal axis of the fuel feed passage and including a side wall constructed to proportion distribution of the air feed stream, and (ii) adapted to divert and distribute a portion of the air feed steam ( 13 a ) from the air flow annulus ( 13 ) to the another air flow annulus ( 18 ) to thereby surround each of the plurality of oxident injectors ( 16 ).

2. The burner of claim 1 , wherein the oxidant feed comprises an oxidant selected from the group consisting of at least one of air, oxygen-enriched air, non-pure oxygen, and industrially pure oxygen.

3. The burner of claim 1 , wherein the fuel feed stream comprises a gaseous fuel selected from the group consisting of at least one of methane, natural gas, liquefied natural gas, propane, liquefied propane gas, butane, low BTU gases, town gas, producer gas, hydrogen, carbon monoxide, and mixtures thereof.

4. The burner of claim 1 , wherein the fuel feed stream comprises an atomized liquid fuel selected from the group consisting of at least one of heavy fuel oil, medium fuel oil, light fuel oil, kerosene, diesel, and mixtures thereof.

5. The burner of claim 1 , wherein the fuel feed stream comprises a particulate solid fuel selected from the group consisting of at least one of coal, coke, petroleum coke, rubber, woodchips, sawdust, straw, biomass fuels, and mixtures thereof suspended in a carrier gas stream.

6. The burner of claim 5 , wherein the carrier gas stream is selected from a gaseous substance selected from the group consisting of at least one of air, nitrogen, carbon dioxide, and a gaseous fuel; the gaseous fuel selected from the group consisting of at least one of methane, natural gas, liquefied natural gas, propane, liquefied propane gas, butane, low BTU gases, town gas, producer gas hydrogen, carbon monoxide, and mixtures thereof.

7. The burner of claim 1 , wherein the movable air flow diverter is selected from cone shapes and plates having a cross sectional shape selected from the group consisting of a circle, diamond, elliptical, hexagon, octagon, oblong, oval, pentagon, rectangular and square.

8. The burner of claim 7 , wherein the movable air flow diverter comprises a cone shape.

9. The burner of claim 8 , wherein the cone shape comprises a frusto- conical shape.

10. The burner of claim 1 , further comprising a flame nozzle configured to provide a gas recirculation region adjacent a downstream end of the flame nozzle between the fuel feed passage and the air flow annulus.

11. The burner of claim 10 , wherein the flame nozzle includes a gas inlet end, a gas outlet end, and an interior passage extending between the gas inlet end and the gas outlet end, wherein the gas outlet end of the flame nozzle comprises a plurality of adjacent corrugations ( 34 ) positioned about a periphery of the gas outlet end of the flame nozzle for diverting the fuel feed stream and the air feed stream.

12. The burner of claim 11 , wherein the flame nozzle comprises a plurality of openings, each one of the plurality of openings passing from the interior passage of the flame nozzle through a corresponding one of the plurality of adjacent corrugations.

13. The burner of claim 1 , further comprising a manifold configured to deliver air, oxygen-enriched air, non-pure oxygen, and industrially pure oxygen to the oxidant feed passage and the plurality of oxidant injectors.

Assignments (1)
NUNC PRO TUNC ASSIGNMENT Recorded Jul 10, 2020
From: RICHARDSON, ANDREW
To: MESSER INDUSTRIES USA, INC.
Reel/Frame 053170/0658 →
Continuity (1)
Related Publication 20220003407A1 · Jan 6, 2022
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