Claims
- 1. A method of operating a burner apparatus defining a reaction zone, a process chamber adjoining said reaction zone, an oxidant supply structure configured to direct oxidant to flow into said reaction zone, a primary fuel supply structure configured to direct primary fuel gas to flow into said reaction zone for mixing with said oxidant to create a combustible mixture in said reaction zone, an igniter operative to ignite said combustible mixture in said reaction zone and thereby to initiate combustion that provides thermal energy to said process chamber, and a secondary fuel supply structure configured to direct secondary fuel gas to flow into said process chamber, said method comprising:providing input flows of oxidant and fuel gas through said supply structures in a plurality of distinct combustion modes; said combustion modes including a startup combustion mode in which input flows of said oxidant and said primary fuel gas are ignited by said igniter and are provided simultaneously with an input flow of said secondary fuel gas until said process chamber reaches the auto-ignition temperature of said secondary fuel gas; said modes further including a subsequent combustion mode in which input flows of said oxidant and said secondary fuel gas are provided simultaneously to the exclusion of an input flow of said primary fuel gas.
- 2. A method as defined in claim 1 wherein said subsequent combustion mode, in which input flows of said oxidant and said secondary fuel gas are provided simultaneously, immediately follows said startup combustion mode.
- 3. A method as defined in claim 1 wherein said input flow of said secondary fuel gas in said subsequent combustion mode is controlled to be equal to the total fuel gas input flow of said primary and said secondary fuel gas input flows in said startup combustion mode.
- 4. An apparatus comprising:a furnace structure defining a reaction zone and a process chamber adjoining said reaction zone; an oxidant supply structure configured to direct oxidant into said reaction zone; a primary fuel supply structure configured to direct primary fuel gas into said reaction zone for mixing with said oxidant to create a combustible mixture in said reaction zone; an igniter operative to ignite said combustible mixture in said reaction zone and thereby to initiate combustion that provides thermal energy to said process chamber; and a secondary fuel supply structure configured to direct secondary fuel gas to flow into said process chamber at a secondary fuel inlet in said process chamber; said primary fuel supply structure being further configured to direct said primary fuel gas into said reaction zone in a first concentration of fuel gas in a first region of said reaction zone remote from said secondary fuel inlet, and to direct said primary fuel gas into said reaction zone in a second concentration of fuel gas in a second region of said reaction zone between said first region and said secondary fuel inlet, whereby combustion of said second concentration of fuel gas provides thermal energy adjacent to said secondary fuel inlet sufficient to auto-ignite said secondary fuel gas in said process chamber.
- 5. An apparatus as defined in claim 4 wherein said primary fuel supply structure has a total inlet flow area in said reaction zone and said total inlet flow area is asymmetrical with reference to said reaction zone.
- 6. An apparatus as defined in claim 5 wherein said asymmetrical total fuel inlet flow area is configured to direct a first portion of primary fuel gas into said first region and a second portion of primary fuel gas into said second region.
- 7. An apparatus as defined in claim 4 wherein said reaction zone has a central axis, and said primary fuel supply structure includes a main fuel inlet centered on said axis, and further includes a branch fuel inlet spaced radially from said main fuel inlet.
- 8. An apparatus as defined in claim 7 wherein said main fuel inlet is configured to provide a first amount of said primary fuel gas, and said branch fuel inlet is configured to supply a second amount of said primary fuel gas for a given flow of primary fuel gas through said primary fuel supply structure.
- 9. An apparatus comprising:a furnace structure defining a reaction zone and a process chamber adjoining said reaction zone; an oxidant supply structure configured to direct oxidant to flow from a source of oxidant into said reaction zone; and a fuel supply structure configured to direct primary fuel gas to flow from the source of fuel into said reaction zone for mixing with said oxidant to create a combustible mixture in said reaction zone, and to direct secondary fuel gas to flow into said process chamber, said fuel supply structure including a fuel line joint; said joint having an inlet communicating with the source of fuel, a primary fuel outlet communicating with said reaction zone, and a secondary fuel outlet communicating with said process chamber; said joint being configured to direct fuel gas from said inlet to said primary fuel outlet along a first input flow path at a first input flow rate, and simultaneously to direct fuel gas from said inlet to said secondary fuel outlet along a second input flow path at a second input flow rate for a given inlet input flow rate such that the ratio of said first input flow rate to said second input flow rate varies inversely with said inlet input flow rate.
- 10. An apparatus as defined in claim 9 wherein said joint is T shaped.
- 11. An apparatus as defined in claim 9 wherein said first input flow path and said second input flow path are coextensive between said inlet and a divergence location, and diverge in said joint at said divergence location, and said first and second input flow paths are separate from each other between said divergence location and said outlets.
- 12. An apparatus as defined in claim 11 wherein said first input flow path is orthogonal to said second input flow path between said divergence location and said primary fuel outlet.
- 13. An apparatus as defined in claim 11 wherein said second input flow path is straight from said inlet to said secondary fuel outlet.
Parent Case Info
This application claims priority to provisional patent application Ser. No. 60/251,905, filed Dec. 6, 2000.
US Referenced Citations (71)
Foreign Referenced Citations (5)
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DE |
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Provisional Applications (1)
|
Number |
Date |
Country |
|
60/251905 |
Dec 2000 |
US |