Submergible combustion burner
A burner apparatus includes a first tube having a first longitudinal bore and a second tube having a second longitudinal bore. The second tube is disposed within the first longitudinal bore such that an annular space is defined between the second tube and the first tube. The burner apparatus further includes a nozzle formed at a tip of the second tube. A plurality of side holes are formed in the nozzle. The side holes are slanted relative to a longitudinal axis of the nozzle and are in communication with the second longitudinal bore.
1. A submerged combustion melting apparatus, comprising:
a melting chamber for containing a molten pool of material being melted, said melting chamber having an orifice formed in a wall thereof below a surface of the molten pool; and
a burner positioned at the orifice to inject a flame into the melting chamber below a surface of the molten pool;
the burner comprising:
a first tube having a first longitudinal bore;
a second tube having a second longitudinal bore, said second tube being disposed within said first longitudinal bore such that an annular space is defined between the second tube and the first tube; and
a nozzle formed at a tip of the second tube, said nozzle comprising a plurality of side holes formed therein, said side holes being slanted outwardly relative to a longitudinal axis of the nozzle and being in communication with the second longitudinal bore;
protuberances formed on the nozzle, wherein each of said protuberances correspond laterally in position to the first a one of said side holes, and wherein each of the plurality of protuberances is provided by a corner of a polygonal flange attached to the tip of the second tube.
2. The melting apparatus of claim 1 , wherein the second tube and the first tube include ports for receiving gas.
3. The melting apparatus of claim 1 , wherein the plurality of side holes each have an elongated shape at an outlet face of the nozzle.
4. The melting apparatus of claim 1 , wherein the nozzle further comprises a central hole, said central hole being in communication with the second longitudinal bore.
5. The melting apparatus of claim 1 , further comprising means for centering the second tube in the first longitudinal bore.
6. The melting apparatus of claim 1 , further comprising a cooling jacket surrounding the first tube.
7. The melting apparatus of claim 1 , wherein each of the side holes is slanted outwardly at an angle in a range from 25° to 65° relative to a longitudinal axis of the nozzle.
8. The melting apparatus of claim 7 , wherein the side holes are distributed around the center of the nozzle.
9. The melting apparatus of claim 8 , wherein the nozzle further comprises a central hole, said central hole being in communication with the second longitudinal bore.
10. The melting apparatus of claim 1 , wherein the nozzle is substantially flush with an end surface of the burner apparatus.
11. The melting apparatus of claim 1 , wherein the nozzle is recessed relative to an end surface of the burner apparatus.
12. The melting apparatus of claim 1 , wherein the side holes terminate at an outlet face of the nozzle with an elongated shape.
13. The melting apparatus of claim 1 , wherein a cross-sectional flow area of the annular space and a cross-sectional flow area of the nozzle are selected such that pressure in the annular space is substantially equal to pressure in the second longitudinal bore.
14. The melting apparatus of claim 1 , wherein the side holes are distributed around the center of the nozzle.
15. A submerged combustion melting apparatus, comprising:
a melting chamber for containing a molten pool of material being melted, said melting chamber having an orifice formed in a wall thereof below a surface of the molten pool; and
a burner positioned at the orifice to inject a flame into the melting chamber below a surface of the molten pool;
the burner comprising:
a first tube having a first longitudinal bore;
a second tube having a second longitudinal bore, said second tube being disposed within said first longitudinal bore such that an annular space is defined between the second tube and the first tube; and
a nozzle formed at a tip of the second tube, said nozzle comprising a plurality of side holes formed therein, said side holes being slanted outwardly relative to a longitudinal axis of the nozzle and being in communication with the second longitudinal bore,
wherein each of the side holes is slanted outwardly at an angle in a range from 25° to 65° relative to a longitudinal axis of the nozzle,
wherein the side holes are distributed around the center of the nozzle, and
wherein the nozzle further comprises a central hole, said central hole being in communication with the second longitudinal bore.
16. The melting apparatus of claim 15 , wherein the second tube and the first tube include ports for receiving gas.
17. The melting apparatus of claim 15 , wherein the plurality of side holes each have an elongated shape at an outlet face of the nozzle.
18. The melting apparatus of claim 15 , further comprising means for centering the second tube in the first longitudinal bore.
19. The melting apparatus of claim 15 , further comprising a cooling jacket surrounding the first tube.