Burner for the combustion of particulate fuel
This invention relates to a burner ( 1 ) for burning a suspension of solid fuel in oxygen containing gas. A portion of the suspension is passed through a first conduit ( 10 ) which contains a bluff body ( 12 ) and helical vanes to impart turbulence and swirl to the suspension. A further portion of the suspension is passed through a second conduit ( 40 ) which is coaxial with the first conduit. Means for varying the relative sizes of each portion are provided. The arrangement allows improved fuel/air mixing, flame shape, heat transfer and control of NOx emissions.
1. A burner for solid fuel, the burner comprising:
a first conduit capable of passing a suspension of solid fuel in an oxygen containing gas;
a bluff body received in the first conduit, wherein the bluff body has an axial extension being smaller than an axial extension of the first conduit, the bluff body further having a blunt downstream end and a cylindrical cross section;
a plurality of vanes received in the first conduit, the plurality of vanes being provided on an outer surface of the bluff body, and being inclined to an axis of the first conduit for imparting swirl to the suspension of solid fuel in an oxygen containing gas as it passes through the first conduit;
the first conduit being received in a second conduit capable of passing at least a portion of the suspension of solid fuel in the oxygen containing gas; and
a plenum in fluid connection with the first conduit and the second conduit, wherein the plenum is provided with an adjustable damper for varying proportions of the suspension of solid fuel in an oxygen containing gas which enter the first conduit relative to the proportions of the suspension of solid fuel in an oxygen containing which enter the second conduit.
2. A burner as claimed in claim 1 wherein a downstream end of the bluff body has a face angle α in a range 80 to 110°.
3. A burner as claimed in claim 1 wherein the bluff body has a tapered nose portion which has a length 2 to 10 times an internal diameter of the first conduit.
4. A burner as claimed in claim 1 wherein the bluff body has a parallel sided portion which has a length 2 to 10 times an internal diameter of the first conduit.
5. A burner as claimed in claim 2 wherein a maximum cross-sectional area of the bluff body is 50 to 90% of an internal cross sectional area of the first conduit.
6. A method of burning a solid material comprising passing a suspension of solid fuel in an oxygen containing gas through first and second conduits of a burner as claimed in claim 1 and igniting the mixture.
7. A burner as claimed in claim 2 wherein the bluff body has a tapered nose portion which has a length 2 to 10 times an internal diameter of the first conduit.
8. A burner as claimed in claim 2 wherein the bluff body has a parallel sided portion which has a length 2 to 10 times an internal diameter of the first conduit.
9. A burner as claimed in claim 2 wherein a maximum cross-sectional area of the bluff body is 50 to 90% of an internal cross sectional area of the first conduit.
10. A burner as claimed in claim 2 wherein a maximum cross-sectional area of the bluff body is 50 to 90% of an internal cross sectional area of the first conduit.
11. A burner as claimed in claim 2 wherein the plurality of vanes comprises 2 to 10 vanes inclined relative to the axis of the first conduit provided on the bluff body.
12. The method as claimed in claim 6 wherein the bluff body has a cylindrical cross-section.
13. The method as claimed in claim 12 wherein the downstream end of the bluff body has a face angle α in the range 80 to 110°.
14. A method as claimed in claim 6 wherein a maximum cross-sectional area of the bluff body is 50 to 90% of an internal cross sectional area of the first conduit.
15. A method as claimed in claim 12 wherein a maximum cross-sectional area of the bluff body is 50 to 90% of an internal cross sectional area of the first conduit.