Noise suppression apparatus for an air handling unit

US11674716B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11674716-B2
Application numberUS-202016848579-A
CountryUS
Kind codeB2
Filing dateApr 14, 2020
Priority dateApr 14, 2020
Publication dateJun 13, 2023
Grant dateJun 13, 2023

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A noise suppression apparatus for an air handling unit includes an inlet section connectable to a fan of the air handling unit. The inlet section includes a forward wall spaced apart from an aft wall to define an internal chamber, and an inlet wall extending between the forward wall and the aft wall, the inlet wall defining an inlet air opening. A plurality of internal walls in the inlet wall define a plurality of resonator openings that each open to at least one of a plurality of resonator sections within the internal chamber. The plurality of resonator sections include at least one quarter wave tube section and at least one Helmholtz resonator section. One or more resonator sections are configured to attenuate noise generated by the fan at two or more frequencies. At least one resonator opening of the plurality of resonator openings opens to a plurality of resonator sections.

First claim

Opening claim text (preview).

The invention claimed is: 1. A noise suppression apparatus for an air handling unit, comprising: an inlet section connectable to a fan of the air handling unit; wherein the inlet section includes a forward wall spaced apart from an aft wall to define an internal chamber; wherein the inlet section includes an inlet wall extending between the forward wall and the aft wall, wherein the inlet wall defines an inlet air opening through the inlet section that is configured to receive air for the fan; a plurality of resonator openings formed in the inlet wall, wherein each resonator opening of the plurality of resonator openings opens to a corresponding resonator section of a plurality of resonator sections within the internal chamber, wherein the plurality of resonator sections comprises a quarter wave tube section and a Helmholtz resonator section; and wherein at least one resonator section of the plurality of resonator sections is configured to attenuate noise generated by the fan at two or more frequencies. 2. The noise suppression apparatus of claim 1 , wherein the quarter wave tube section is configured to attenuate noise generated by the fan at a first frequency and the Helmholtz resonator section is configured to attenuate noise generated by the fan at a second frequency different from the first frequency. 3. The noise suppression apparatus of claim 2 , wherein the at least one resonator section of the plurality of resonator sections comprises. 4. The noise suppression apparatus of claim 3 , wherein the at least one resonator section of the plurality of resonator sections comprises a subsection wall extending between the quarter wave tube section and the Helmholtz resonator section. 5. The noise suppression apparatus of claim 4 , wherein the quarter wave tube section is a first quarter wave tube section, and the at least one resonator section of the plurality of resonator sections comprises a second quarter wave tube section. 6. The noise suppression apparatus of claim 5 , wherein the first quarter wave tube section and the second quarter wave tube section have a same length and a same width. 7. The noise suppression apparatus of claim 5 , wherein the first quarter wave tube section and the second quarter wave tube section are configured to attenuate noise generated by the fan at different frequencies. 8. The noise suppression apparatus of claim 1 , wherein at least one resonator opening of the plurality of resonator openings opens to the quarter wave tube section and to an additional quarter wave tube section. 9. The noise suppression apparatus of claim 8 , wherein the quarter wave tube section and the additional quarter wave tube section are configured to attenuate noise generated by the fan at different frequencies. 10. The noise suppression apparatus of claim 1 , wherein each resonator section of the plurality of resonator sections comprises one respective Helmholtz resonator section and two respective quarter wave tube sections, wherein each of the two respective quarter wave tube sections is formed along an opposing side of the respective Helmholtz resonator section. 11. The noise suppression apparatus of claim 1 , wherein the plurality of resonator sections is further defined by a plurality of side-walls extending between the forward wall and the aft wall, and each resonator opening of the plurality of resonator openings is located closer to a respective side-wall of the plurality of side-walls. 12. The noise suppression apparatus of claim 11 , wherein each resonator section of the plurality of resonator sections comprises a single respective Helmholtz resonator section and a single respective quarter wave tube section, and a corresponding inlet of the single respective quarter wave tube section opens into the single respective Helmholtz resonator section. 13. The noise suppression apparatus of claim 1 , wherein each resonator section of the plurality of resonator sections is further defined by a plurality of side-walls extending between the forward wall and the aft wall, and each resonator opening of the plurality of resonator openings is centered between at least two side-walls of the plurality of side-walls. 14. The noise suppression apparatus of claim 1 , comprising a plurality of quarter wave tube sections including the quarter wave tube section and a plurality of Helmholtz resonator sections including the Helmholtz resonator section, wherein each resonator section of the plurality of resonator sections comprises a first sub-section and a second sub-section, the first sub-section and the second sub-section are configured such that each resonator opening of the plurality of resonator openings opens to the respective second sub-section of the corresponding resonator section, wherein the second sub-section is a respective Helmholtz resonator section of the plurality of Helmholtz resonator sections, and the first sub-section is a respective quarter wave tube section of the plurality of quarter wave tube sections. 15. The noise suppression apparatus of claim 14 , wherein the first sub-section is configured to attenuate noise generated by the fan at a first frequency, and the second sub-section is configured to attenuate noise generated by the fan at a second frequency different from the first frequency. 16. The noise suppression apparatus of claim 14 , wherein each resonator section of the plurality of resonator sections further comprises a corresponding subsection wall separating the respective quarter wave tube section from the respective Helmholtz resonator section of the corresponding resonator section, and the subsection wall defines an inlet of the respective quarter wave tube section at an end of the corresponding resonator section opposite the resonator opening of the corresponding resonator section. 17. The noise suppression apparatus of claim 16 , wherein the subsection wall is a first subsection wall, the inlet is a first inlet, the plurality of quarter wave tube sections is a plurality of first quarter wave tube sections, and the noise suppression apparatus comprises a plurality of second quarter wave tube sections, wherein each resonator section of the plurality of resonator sections further comprises a respective second quarter wave tube section of the plurality of second quarter wave tube sections and a second subsection wall separating the respective second quarter wave tube section of the plurality of second quarter wave tube sections from the respective Helmholtz resonator section of the corresponding resonator section, wherein the second subsection wall defines a second inlet of the respective second quarter wave tube section, and wherein the first subsection wall and the second subsection wall are formed along opposite sides of the corresponding resonator section. 18. The noise suppression apparatus of claim 17 , wherein the first inlet of the first quarter wave tube section and the second inlet of the second quarter wave tube section open into the Helmholtz resonator section. 19. The noise suppression apparatus of claim 16 , wherein the subsection wall is formed opposite to the resonator opening of the corresponding resonator section. 20. The noise suppression apparatus of claim 19 , wherein the inlet of the quarter wave tube section opens into the Helmholtz resonator section of the corresponding resonator section. 21. The noise suppression apparatus of claim 16 , wherein the subsection wall is a first subsection wall, the plurality of quarter wave tube sections is a plurality of firs

Assignees

Inventors

Classifications

  • using resonance · CPC title

  • using resonance effects · CPC title

  • F24F13/24Primary

    Means for preventing or suppressing noise · CPC title

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What does patent US11674716B2 cover?
A noise suppression apparatus for an air handling unit includes an inlet section connectable to a fan of the air handling unit. The inlet section includes a forward wall spaced apart from an aft wall to define an internal chamber, and an inlet wall extending between the forward wall and the aft wall, the inlet wall defining an inlet air opening. A plurality of internal walls in the inlet wall d…
Who is the assignee on this patent?
Johnson Controls Tech Co, Johnson Controls Tyco IP Holdings LLP
What technology area does this patent fall under?
Primary CPC classification F24F13/24. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Jun 13 2023 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).