Spray heads for use with desuperheaters and desuperheaters including such spray heads
US-2020173652-A1 · Jun 4, 2020 · US
US11353210B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11353210-B2 |
| Application number | US-202016780386-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 3, 2020 |
| Priority date | Nov 9, 2018 |
| Publication date | Jun 7, 2022 |
| Grant date | Jun 7, 2022 |
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Spray heads for use with desuperheaters and desuperheaters including such spray heads. One example of a spray head includes a main body having an exterior surface and defining a central passage, the main body adapted for connection to a source of fluid, at least one entrance port formed in the main body along the central passage, and at least one spray nozzle arranged adjacent the exterior surface of the main body. The spray head also includes a plurality of flow passages, each of the plurality of flow passages providing fluid communication between the entrance port and an exit opening of the spray nozzle. A first one of the plurality of flow passages follows a first non-linear path and has a first distance, and a second one of the plurality of flow passages follows a second non-linear path and has a second distance different from the first distance.
Opening claim text (preview).
What is claimed is: 1. A spray head for a desuperheater, comprising: a main body having an exterior surface and an inner wall that defines a central passage that extends along a longitudinal axis, the main body adapted for connection to a source of fluid; at least one entrance port formed in the main body along the central passage; a plurality of spray nozzles arranged adjacent the exterior surface of the main body, each of the spray nozzles having at least one exit opening and a plurality of flow passages, each of the plurality of flow passages providing fluid communication between the entrance port and the exit opening of the respective spray nozzle, wherein a first one of the plurality of flow passages follows a first non-linear path and has a first distance, and wherein a second one of the plurality of flow passages follows a second non-linear path and has a second distance different from the first distance. 2. The spray head of claim 1 , wherein the first non-linear path comprises a first convoluted path and wherein the second non-linear path comprises a second convoluted path. 3. The spray head of claim 1 , wherein the first flow passage has a first variable cross-section and the second flow passage has a second variable cross-section. 4. The spray head of claim 1 , wherein the fluid exiting the exit opening via the first flow passage has a first pressure, and the fluid exiting the exit opening via the second flow passage has a second pressure that differs from the first pressure when an inlet of the second flow passage is not fully open. 5. The spray head of claim 1 , wherein the main body and the plurality of spray nozzles are integrally formed with one another. 6. The spray head of claim 1 , wherein each spray nozzle includes a single chamber disposed between and fluidly connecting each of the flow passages and the exit opening of the respective spray nozzle. 7. The spray head of claim 6 , wherein each of the flow passages has an outlet that feeds into the single chamber, such that the flow passages are independently coupled to the single chamber. 8. The spray head of claim 1 , wherein the entrance port is positioned adjacent a first end of the main body, the first flow passage has an inlet in fluid communication with the entrance port, and an outlet in fluid communication with the exit opening of the respective spray nozzle, the outlet positioned adjacent a second end of the main body. 9. The spray head of claim 1 , wherein each spray nozzle includes a first chamber and a second chamber, wherein the first chamber is disposed between and fluidly connects the first flow passage and the exit opening of the respective spray nozzle, and wherein the second chamber is disposed between and fluidly connects the second flow passage and the exit opening of the respective spray nozzle. 10. The spray head of claim 1 , wherein the main body has a lobe-shape. 11. The spray head of claim 1 , wherein the first flow passage has a first inlet that fluidly connects the entrance port with the exit opening, and wherein the second flow passage has a second inlet that fluidly connects the entrance port with the exit opening, the second inlet being separate from the first inlet. 12. The spray head of claim 1 , wherein the inner wall is disposed radially inwardly of the exterior surface, wherein the central passage extends axially along the longitudinal axis, and wherein the at least one exit opening of each spray nozzle is disposed radially outwardly of the inner wall. 13. A desuperheater, comprising: a desuperheater body; and a spray head coupled to the desuperheater body, the spray head comprising: a main body having an exterior surface and an inner wall that defines a central passage that extends along a longitudinal axis, the main body adapted for connection to a source of fluid; at least one entrance port formed in the main body along the central passage; a plurality of spray nozzles arranged adjacent the exterior surface of the main body, each spray nozzle having at least one exit opening and a plurality of flow passages, each of the plurality of flow passages providing fluid communication between the entrance port and the exit opening of the respective spray nozzle, wherein a first one of the plurality of flow passages follows a first non-linear path and has a first distance, and wherein a second one of the plurality of flow passages follows a second non-linear path and has a second distance different from the first distance. 14. The desuperheater of claim 13 , wherein the spray head comprises first and second entrance ports, wherein the first entrance port is spaced from the second entrance port along the longitudinal axis. 15. The desuperheater of claim 13 , further comprising a plug movably disposed within the main body of the spray head to control fluid flow through the entrance port and out of the spray head. 16. The desuperheater of claim 13 , wherein the first flow passage has a first variable cross-section and the second flow passage has a second variable cross-section, such that the fluid exiting the exit opening via the first flow passage has a first pressure, and the fluid exiting the exit opening via the second flow passage has a second pressure that differs from the first pressure when an inlet of the second flow passage is not fully open. 17. The desuperheater of claim 13 , wherein each spray nozzle includes a single chamber disposed between and fluidly connecting each of the flow passages and the exit opening of the respective spray nozzle, wherein each of the flow passages has an outlet that feeds into the single chamber, such that the flow passages are independently coupled to the single chamber. 18. The desuperheater of claim 13 , wherein each spray nozzle includes a first chamber and a second chamber, wherein the first chamber is disposed between and fluidly connects the first flow passage and the exit opening of the respective spray nozzle, and wherein the second chamber is disposed between and fluidly connects the second flow passage and the exit opening of the respective spray nozzle. 19. The desuperheater of claim 13 , wherein the main body has a lobe-shape. 20. The desuperheater of claim 13 , wherein the first flow passage has a first inlet that fluidly connects the entrance port with the exit opening, and wherein the second flow passage has a second inlet that fluidly connects the entrance port with the exit opening, the second inlet being separate from the first inlet. 21. A method of manufacturing, comprising: creating a spray head for a desuperheater using an additive manufacturing technique, the creating comprising: forming a main body of the spray head having an exterior surface and an inner wall that defines a central passage that extends along a longitudinal axis, the main body adapted for connection to a source of fluid; forming at least one entrance port in the main body along the central passage; forming a plurality of spray nozzles arranged adjacent the exterior surface of the main body, each spray nozzle having at least one exit opening and forming a plurality of flow passages that provide fluid communication between the entrance port and the exit opening of the respective spray nozzle, wherein a first one of the plurality of flow passages follows a first non-linear path and has a first distance, and wherein a second one of the plurality of flow passages follows a second non-linear path and has a second distance different from the first distance.
by attemperating the superheated steam, e.g. by injected water sprays · CPC title
with multiple outlet openings (B05B1/02, B05B1/26 take precedence); with strainers in or outside the outlet opening · CPC title
the channels emerging in the swirl chamber perpendicularly to the outlet axis (B05B1/3436 takes precedence) · CPC title
Water injection apparatus · CPC title
responsive to conditions of ambient medium or target, e.g. humidity, temperature {position or movement of the target relative to the spray apparatus (B05B12/082, B05B12/084 take precedence)} · CPC title
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