IP Library › Granted Patent US 12,186,459
Granted Patent B2
US 12,186,459 · App. 17/164,605 · Granted Jan 7, 2025

Ultraviolet pathogen disinfection system

Inventors: Anurag Sood (Rancho Palos Verdes, CA); Neeraj R. Chaudhary (Fremont, CA); Sandeep Seth (Houston, TX); Danish S. Khatri (Redondo Beach, CA)
Assignee: Luv Systems, Inc.
A61L9/032A61L9/20A61L2209/111A61L2209/14A61L2209/15
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Quick Facts
Patent No.
US 12,186,459
App. No.
17/164,605
Granted
Jan 7, 2025
Kind
B2
Abstract

An air treatment system includes a lower cowling configured to be suspended from a ceiling, the lower cowling defining an interior lower cowling surface and configured to be disposable radially outward from and around a fan configured to induce airflow. Further, the air treatment system includes an upper cowling configured to be disposed vertically above the lower cowling and define an interior upper cowling surface. A gap between the interior upper cowling surface and the interior lower cowling surface forms a fluid passageway comprising an intake opening, an exhaust opening, and a chamber. The fluid passageway is contoured to receive airflow from the fan via the intake opening and direct the airflow through the chamber to exit the exhaust opening. Moreover, the air treatment system includes at least one air treatment device secured within the chamber, the air treatment device configured to treat air passing through the chamber.

Claims (41)

1. A method comprising:

inducing airflow, via a ceiling fan, into an intake opening of an air treatment system, wherein the air treatment system comprises a base configured to be suspended from a ceiling via at least one connection element, wherein a first side of the base is disposable radially outward from the ceiling fan, wherein the base comprises a plurality of base segments, and wherein adjacent base segments are joined via mounting plates to form a contiguous support around the ceiling fan; and

directing the airflow through the air treatment system via a fluid passageway towards an exhaust opening of the air treatment system, wherein the fluid passageway is defined between an upper cowling and a lower cowling of the air treatment system, the lower cowling defining an interior lower cowling surface and positioned radially outward from and around the ceiling fan, and the upper cowling defining an interior upper cowling surface and positioned vertically above the lower cowling; and

treating air passing through the fluid passageway via at least one air treatment device.

2. The method of claim 1 , wherein the air treatment device comprises a pathogen disinfection system, a heating system, a cooling system, an ionization system, a filtration system, a humidity control system, an ozone control system, or some combination thereof.

3. The method of claim 1 , wherein treating the air comprises emitting UV light from a plurality of ultraviolet (UV) light sources to at least partially inactivate pathogens exposed to the emitted UV light, wherein the UV light sources are arranged inside the fluid passageway at spaced apart positions around the ceiling fan, and wherein the UV light has a mean peak wavelength between 200-280 nanometers.

4. The method of claim 1 , wherein the base supports a plurality of UV light sources arranged inside the fluid passageway at spaced apart positions around the ceiling fan.

5. The method of claim 1 , wherein the lower cowling comprises a plurality of lower segments, wherein each lower segment is configured to mount to a bottom surface of a corresponding base segment of the plurality of base segments, and wherein the plurality of lower segments are configured to form a selected shape around the ceiling fan.

6. The method of claim 1 , wherein the air treatment system comprises at least one stabilizing rod configured to secure the upper cowling to the base, wherein the at least one stabilizing rod comprises a first end connected to the base and a second end connected to the upper cowling.

7. The method of claim 1 , wherein the upper cowling comprises:

an inner portion oriented substantially parallel to the base; and

an outer portion extending downward from the inner portion toward the lower cowling, wherein an angle between the inner portion and the outer portion is between 80° to 100°.

8. The method of claim 1 , wherein the lower cowling comprises:

a middle portion;

an inner lip positioned radially inward from the middle portion and extending upward from the center portion; and

an outer lip positioned radially outward from the middle portion and extending upward from the middle portion.

9. The method of claim 8 , wherein the inner lip extends upward from the middle portion by an amount at least two times greater than an amount that the outer lip extends vertically upward from the middle portion, and wherein the amount that the outer lip extends vertically upward from the middle portion is at least 3.0 inches.

10. The method of claim 8 , wherein a tip of the outer lip of the lower cowling is vertically aligned with an end of an outer portion of the upper cowling, wherein the outer portion extends vertically downward from an inner portion of the upper cowling.

11. A method of inactivating pathogens, comprising:

securing an air treatment system to a ceiling via at least one connection element, the air treatment system comprising a base, a lower cowling secured to a bottom surface of the base, and an upper cowling disposed vertically above the base, wherein the base is disposed radially outward from and around a ceiling fan, and wherein a fluid passageway is formed between the upper cowling and the lower cowling;

inducing airflow, via a ceiling fan, in an upward and/or radially outward direction toward the ceiling and at least partially into an intake opening of the fluid passageway;

directing the airflow through the air treatment system via the fluid passageway, the fluid passageway extending from the intake opening, into a chamber, and out an exhaust opening; and

emitting UV light, via a plurality of UV light sources secured within the chamber at spaced apart positions around the ceiling fan, to at least partially inactivate pathogens exposed to the emitted UV light, the UV light having a mean peak wavelength between 200-280 nanometers.

12. The method of claim 11 , wherein at least one UV light source of the plurality of UV light sources comprises:

an ozone free bulb having a power input of at least thirty-five watts;

at least one lamp fixture having a connector and a holder for receiving the ozone free bulb, the lamp fixture further having a base portion, mounted within the chamber; and

at least one ballast configured to provide sufficient voltage to start the ozone free bulb in response to activation of the air treatment system, wherein the ballast is disposed exterior to the lamp fixture.

13. The method of claim 11 , wherein each UV light source of the plurality of UV light sources is mounted to the base, the lower cowling, and/or the upper cowling.

14. The method of claim 11 , further comprising reflecting a portion of the emitted UV light within the chamber, wherein an interior upper cowling surface of the upper cowling and/or an interior lower cowling surface of the lower cowling comprise an aluminum material configured to reflect at least 70% of UV light within the chamber.

15. The method of claim 11 , further comprising absorbing a portion of the emitted UV light within the chamber, wherein an interior upper cowling surface of the upper cowling and/or an interior lower cowling surface of the lower cowling comprises an absorptive material and/or a coating material configured to absorb at least 90% of UV light.

16. The method of claim 11 , further comprising reflecting a portion of the emitted UV light via an interior upper cowling surface of the upper cowling comprising an aluminum material configured to reflect at least 70% of UV light within the chamber, and absorbing a portion of the emitted UV light via a portion of an interior lower cowling surface of the lower cowling comprising an absorptive material and/or a coating material configured to absorb at least 90% of UV light.

17. The method of claim 11 , wherein inducing the airflow at least partially into an intake opening of the fluid passageway includes inducing at least 2,000 cubic feet per minute of airflow into the intake opening and through the chamber.

18. The method of claim 11 , wherein a bottom surface of the lower cowling is at least partially vertically aligned with respective bottom surfaces of fan blades of the ceiling fan.

19. The method of claim 11 , further comprising reflecting at least 60% of the UV light emitted from the UV light source at least once from a surface disposed within the chamber of the fluid passageway.

20. The method of claim 11 , further comprising redirecting airflow into the intake opening via an airflow redirector disposed around the ceiling fan, wherein the airflow redirector comprises an annular shape having a variable diameter that increases in a direction toward the ceiling, wherein the airflow redirector is configured to promote laminar flow in the air flow transitioning from a substantially vertically upward flow to a substantially horizontal flow, wherein the diameter of the airflow director increases exponentially along a height of the airflow redirector, and wherein the airflow redirector defines a frustoconical surface.

21. A method of inactivating pathogens, comprising:

rotating a ceiling fan to induce airflow in an upward direction toward a ceiling and at least partially into an intake opening of an air treatment system;

directing the airflow through the air treatment system via a fluid passageway, the fluid passageway extending from the intake opening, into a chamber, and out an exhaust opening, wherein the fluid passageway is formed between an upper cowling and a lower cowling of the air treatment system; and

emitting UV light, via a plurality of UV light sources secured within the chamber at spaced apart positions around the ceiling fan, to at least partially inactivate pathogens exposed to the emitted UV light, the UV light having a mean peak wavelength between 200-280 nanometers; and redirecting airflow into the intake opening via an airflow redirector and restraining airflow from traveling upward above the upper cowling via a ceiling plate, wherein the ceiling fan comprises fan blades and is suspended from the ceiling by a downrod, wherein the airflow redirector is secured around the downrod and above the ceiling fan, wherein the airflow redirector is configured to redirect upward airflow flowing towards the ceiling to flow in a horizontal direction substantially parallel to the ceiling and into the intake opening; and wherein the ceiling plate is secured to the upper cowling, the ceiling plate extending inward from the upper cowling toward the airflow redirector.

22. The method of claim 21 , wherein the ceiling plate is secured to the airflow redirector.

23. The method of claim 21 , further comprising modulating the ceiling fan between a lower fan speed and an upper fan speed automatically.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2023
From: SOOD, SETH, KHATRI & CHAUDHARY, LLC
To: LUV SYSTEMS, INC.
Reel/Frame 065130/0965 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2021
From: SOOD, SETH, KHATRI & CHAUDHARY LLC
To: SOOD, SETH, KHATRI & CHAUDHARY LLC
Reel/Frame 057194/0311 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2021
From: ENVIROPROCESS CONSULTANTS, INC.
To: SOOD, SETH, KHATRI & CHAUDHARY LLC
Reel/Frame 056256/0361 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 3, 2021
From: SOOD, ANURAG; CHAUDHARY, NEERAJ R.; SETH, SANDEEP; KHATRI, DANISH S.
To: ENVIROPROCESS CONSULTANTS, INC.
Reel/Frame 055483/0522 →
Continuity (3)
Continuation In Part 17086111 · Oct 30, 2020
Continuation In Part 16926327 · Jul 10, 2020
Related Publication 20220008595A1 · Jan 13, 2022
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