IP Library Granted Patent US 12,116,913
Granted Patent B2
US 12,116,913 · App. 17/276,047 · Granted Oct 15, 2024

Exhaust gas assembly

Inventors: Benjamin Cazzolato (Forestville, AU); Carl Quentin Howard (Grange, AU); Orddom Leav (Hampstead Gardens, AU); Chris Turnbull (North Adelaide, AU)
Assignee: The University of Adelaide
F01N1/08G10K11/162
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Quick Facts
Patent No.
US 12,116,913
App. No.
17/276,047
Granted
Oct 15, 2024
Kind
B2
Abstract

An exhaust duct assembly for conveying exhaust gases emanating from a combustion zone to atmosphere is disclosed. The assembly includes: an exhaust gas outlet for exhausting exhaust gas into the atmosphere; and an acoustic duct portion located upstream of the exhaust gas outlet, the acoustic duct portion having a peripheral wall defining a through-passage arranged and constructed to promote propagation of sound there-through. The acoustic duct portion has a length in a flow direction that is at least 50% of an average hydraulic diameter of the through-passage.

Claims (21)

1. An exhaust duct assembly for conveying exhaust gases emanating from a combustion zone to atmosphere, the assembly including:

an exhaust gas outlet for exhausting exhaust gas into the atmosphere; and

an acoustic duct portion located upstream of the exhaust gas outlet, the acoustic duct portion having a peripheral wall defining a through-passage arranged and constructed to promote propagation of sound there-through to atmosphere, the peripheral wall including an acoustically porous structure, and wherein the acoustic duct portion has a length (L) in a flow direction that is at least 50% of an average hydraulic diameter (D H ) of the through-passage,

wherein, in use, said propagation of sound there-through to atmosphere reduces refracted sound at locations downwind from the exhaust gas outlet.

2. The assembly of claim 1 , wherein the acoustic duct portion has a length (L) in the flow direction that is at least 100% of the average hydraulic diameter (D H ) of the through-passage.

3. The assembly of claim 2 , wherein the acoustic duct portion has a length (L) in the flow direction that is at least 200% of the average hydraulic diameter (D H ) of the through-passage.

4. The assembly of claim 1 , wherein the acoustic duct portion includes a perforated sheet.

5. The assembly of claim 4 , wherein the acoustic duct portion includes a steel mesh.

6. The assembly of claim 5 , wherein the acoustic duct portion of the steel mesh is a woven cloth.

7. The assembly of claim 1 , including an air aspirating portion.

8. The assembly of claim 7 , wherein the air aspirating portion includes the acoustic duct portion.

9. The assembly of claim 1 , wherein the peripheral wall of the acoustic duct portion includes a structural portion and non-structural portion, the structural portion constructed to hold the shape of the acoustic duct portion, the non-structural portion of the acoustic duct portion arranged adjacent to the structural portion and constructed to allow at least a range of low frequency sound to pass there-through.

10. The assembly of claim 9 , wherein the non-structural portion of the acoustic duct portion is made from an acoustically non-reflective structure.

11. The assembly of claim 10 , wherein the structural portion includes a plurality of apertures extending there-through.

12. The assembly of claim 10 , wherein the structural portion comprises a perforated sheet.

13. A plant comprising a combustion zone, an exhaust gas duct and an exhaust gas outlet for exhausting exhaust gas into the atmosphere wherein the exhaust gas duct includes the exhaust duct assembly of claim 1 .

14. A power station comprising a gas turbine, an exhaust gas duct and an exhaust gas outlet for exhausting exhaust gas into the atmosphere wherein the exhaust gas duct includes the exhaust duct assembly of claim 1 .

15. An exhaust duct assembly for conveying exhaust gases emanating from a combustion zone to atmosphere, the assembly including:

an exhaust gas outlet for exhausting exhaust gas into the atmosphere; and

an acoustic duct portion located upstream of the exhaust gas outlet, the acoustic duct portion having an acoustic duct wall having a structural portion and non-structural portion, the structural portion constructed to hold the shape of the acoustic duct portion and having a plurality of apertures extending therethrough, the non-structural portion of the acoustic duct portion arranged adjacent to the structural portion and made from an acoustically non-reflective structure to allow at least a range of low frequency sound to pass there-through to atmosphere, and wherein the acoustic duct portion has a length (L) in a flow direction that is at least 50% of an average hydraulic diameter (D H ) of the through-passage,

wherein, in use, said propagation of sound there-through to atmosphere reduces refracted sound at locations downwind from the exhaust gas outlet.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Jun 2, 2026
From: THE UNIVERSITY OF ADELAIDE
To: ADELAIDE UNIVERSITY
Reel/Frame 075843/0344 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 12, 2021
From: CAZZOLATO, BENJAMIN; HOWARD, CARL QUENTIN; LEAV, ORDDOM; TURNBULL, CHRIS
To: THE UNIVERSITY OF ADELAIDE
Reel/Frame 055580/0444 →
Priority Claims (1)
AU 2018903441 · Sep 13, 2018 · national
Continuity (1)
Related Publication 20220042431A1 · Feb 10, 2022
Cited By (2)
US 12,454,902 US 12,709,996