IP Library Granted Patent US 7,824,604
Granted Patent B2
US 7,824,604 · App. 11/712,377 · Granted Nov 2, 2010

Methods of implementing a water-cooling system into a burner panel and related apparatuses

Assignee: Air Liquide Advanced Technologies U.S. LLC
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Quick Facts
Patent No.
US 7,824,604
App. No.
11/712,377
Granted
Nov 2, 2010
Kind
B2
Abstract

The present invention generally relates to apparatuses and methods for use in metal melting, refining and/or other processing, such as, for example, steel making in an electric arc furnace (EAF), and more particularly, to improved cooling systems and related methods for use in an extended burner panel.

Claims (28)

1. A method for cooling a tapered furnace burner panel housing at least one apparatus, said tapered burner panel having a plurality of surfaces comprising a mounting surface, an upper surface, an underside surface, a front side surface (smaller in surface area), and a plurality of side surfaces, wherein said upper surface of said burner panel comprises a plurality of v-shaped grooves and said burner panel extends away from a furnace wall in such a manner as to allow the front side surface of the burner panel to extend below the lower portion of the mounting surface and to extend to at least a split line of said furnace and is designed for injecting thermal energy into said furnace from said apparatus, said method comprising the steps of:

a. positioning a conduit within the burner panel, said conduit formed in a serpentine manner just beneath and along a portion of at least one surface of said burner panel, wherein said conduit removes heat from said burner panel when a cooling fluid is flowing through said conduit and wherein said serpentine manner has a minimum radius; and

b. coupling said conduit to a cooling system connection, wherein said cooling system connection is located interior to said furnace wall.

2. The method of claim 1 , wherein said conduit is a Nom 1.25 inch, schedule 80 pipe.

3. The method of claim 1 , wherein said conduit is rectangularly shaped, whereby a greater surface area of said conduit is available for removing heat from said burner panel.

4. The method of claim 1 , wherein said serpentine manner has at least two 180-degree turns per at least one surface of said burner panel.

5. The method of claim 1 , wherein said serpentine manner has at least two 90-degree turns per at least one surface of said burner panel.

6. The method of claim 1 , wherein said serpentine manner has at least one 180-degree turn and at least one 90-degree turn per at least one surface of said burner panel.

7. The method of claim 1 , wherein said conduit is integrated to at least one surface of said burner panel.

8. The method of claim 1 , wherein said conduit is located interior to at least one surface of said burner panel.

9. The method of claim 1 , wherein said conduit is branched at said cooling system connection, wherein at least two conduits are located interior of said burner panel.

10. The method of claim 9 , wherein said at least two conduits are parallel.

11. The method of claim 1 , wherein said at least one apparatus extends through at least one aperture located about said front side surface.

12. The method of claim 11 , wherein said at least one aperture is three apertures and at least three apparatuses extend therefrom.

13. The method of claim 1 , wherein said minimum radius is between about 0.5 inches and about 4.0 inches.

14. The method of claim 1 , wherein said front side surface comprises a plurality of straight grooves.

15. A method for cooling a tapered burner panel in a furnace, said burner panel having a plurality of surfaces comprising a mounting surface, an upper surface having a plurality of v-shaped grooves on said upper surface's exterior side, an underside surface, a front side surface, and a plurality of side surfaces, wherein said tapered burner panel extends away from said furnace wall towards a metal melt line in such a manner as to allow the front side surface of the burner panel to extend below the lower portion of the mounting surface and to extend towards a metal melt line and is designed for injecting thermal energy into said furnace, comprising the steps of:

a. forming a conduit in a serpentine manner that has at least one minimum radius bend in said conduit;

b. aligning said conduit along a portion of at least one surface of said burner panel, said conduit being positioned just beneath the surface of said surface, wherein said conduit removes heat from said burner panel when a cooling fluid is flowing through said conduit; and

c. coupling said conduit to a cooling system connection, wherein said cooling system connection is located interior to said furnace wall.

16. The method of claim 15 , wherein said step of forming a conduit in a serpentine manner that has at least one minimum radius bend in said conduit further comprises the steps of:

a. cutting said conduit to a length;

b. capping one end of said conduit;

c. packing said conduit with a substance;

d. capping the other end of said conduit; and

e. bending said conduit to said at least one minimum radius bend.

17. The method of claim 16 , wherein said substance is a silica sand.

18. The method of claim 15 , further comprising a plurality of straight grooves on said front side surface.

Continuity (4)
Continuation In Part 1148844900 · Jul 17, 2006
Provisional Application 6083485400 · Aug 1, 2006
Provisional Application 6080117600 · May 17, 2006
Related Publication 20070267786A1 · Nov 22, 2007