AIR PURIFIER SYSTEM WITH ULTRAVIOLET LIGHT ASSEMBLY
20200108166 ยท 2020-04-09
Inventors
Cpc classification
F24F13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02A50/20
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F24F8/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B64D2013/0651
PERFORMING OPERATIONS; TRANSPORTING
B60H3/0608
PERFORMING OPERATIONS; TRANSPORTING
B01D46/10
PERFORMING OPERATIONS; TRANSPORTING
B64D13/00
PERFORMING OPERATIONS; TRANSPORTING
B01D2273/30
PERFORMING OPERATIONS; TRANSPORTING
B01D2279/65
PERFORMING OPERATIONS; TRANSPORTING
F24F7/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An air purifier system includes a duct, an ultraviolet light assembly, and a fan. The duct defines a reaction chamber for the flow of air, and includes an inlet portion and an outlet portion. The ultraviolet light assembly is adapted to illuminate the reaction chamber with ultraviolet light. The fan is adapted to draw the air through the reaction chamber. A reflective surface of the fan is configured to reflect the ultraviolet light into the reaction chamber.
Claims
1. An air purifier system comprising: a duct defining a reaction chamber for the flow of air through the duct, the duct including an inlet portion and an outlet portion; an ultraviolet light assembly adapted to illuminate the reaction chamber with ultraviolet light; and a fan in operable communication with the reaction chamber and exposed to the air flowing through the reaction chamber, the fan including a reflective surface positioned and configured to reflect the ultraviolet light impinging upon the reflective surface.
2. The air purifier system set forth in claim 1, wherein the fan is adapted to draw the air through the reaction chamber, and is located at the outlet portion and the reflective surface faces at least in part upstream with respect to the flow of air.
3. The air purifier system set forth in claim 2, further comprising: a pre-filter disposed at the inlet portion.
4. The air purifier system set forth in claim 2, wherein the duct includes a reflective face defining the reaction chamber.
5. The air purifier system set forth in claim 2, wherein the ultraviolet light is within a UV-C range.
6. The air purifier system set forth in claim 1, wherein the ultraviolet light is within a wavelength range of about 185 nanometers to 254 nanometers.
7. The air purifier system set forth in claim 1, wherein the ultraviolet light is within a wavelength range of about 220 nanometers to 290 nanometers.
8. The air purifier system set forth in claim 2, further comprising a louver disposed at the inlet portion and adapted to swirl the flow of air within the reaction chamber.
9. The air purifier system set forth in claim 1, wherein the reflective surface is polished aluminum.
10. The air purifier system set forth in claim 1, wherein the reflective surface is polished stainless steel.
11. The air purifier system set forth in claim 2, wherein the ultraviolet light assembly is disposed in the reaction chamber and is adapted to direct the ultraviolet light axially toward the fan.
12. The air purifier system set forth in claim 11, wherein the ultraviolet light assembly includes a ballast centered to the centerline and an ultraviolet light source projecting outward from the ballast and in a downstream direction toward the fan.
13. A vehicle comprising: a cabin adapted to be occupied; and an air purifier system adapted to kill pathogens from air circulating through the cabin, the air purifier system including: a duct defining a reaction chamber for the flow of the air, the duct including an inlet portion and an outlet portion, an ultraviolet light assembly adapted to illuminate the reaction chamber with ultraviolet light, and a fan adapted to draw the air through the reaction chamber, the fan including a reflective surface facing the ultraviolet light assembly for reflecting the ultraviolet light back into the reaction chamber.
14. The vehicle set forth in claim 12, wherein the vehicle is an aircraft.
15. The vehicle set forth in claim 13, further comprising: a pre-filter disposed at the inlet portion upstream of the reaction chamber, wherein the pre-filter is adapted to remove particulate from the air prior to entering the reaction chamber.
16. The vehicle set forth in claim 13, wherein the ultraviolet light is within a wavelength range of about 220 nanometers to 290 nanometers.
17. The vehicle set forth in claim 13, wherein the reflective surface is polished aluminum.
18. The vehicle set forth in claim 13, wherein the reflective surface is polished stainless steel.
19. The vehicle set forth in claim 13, wherein the ultraviolet light assembly is disposed in the reaction chamber, and includes a ballast centered to the centerline and an ultraviolet light source projecting outward from the ballast and in a downstream direction toward the fan.
20. A method of killing pathogens in a vehicle comprising: drawing air from a cabin of a vehicle with a fan; directing the air through a reaction chamber; and reflecting ultraviolet light off of a plurality of reflective surfaces of the fan and into the reaction chamber.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Various features will become apparent to those skilled in the art from the following detailed description of the disclosed non-limiting embodiments. The drawings that accompany the detailed description can be briefly described as follows:
[0025]
[0026]
DETAILED DESCRIPTION
[0027] Referring to
[0028] Referring to
[0029] The air purifier system 24 may include a duct 28, an ultraviolet light assembly 30, a fan 32, a filter 34, and a louver 36. The duct 28 generally extends along an axis 38 (i.e., centerline), and extends axially between an inlet portion 40 and an outlet portion 42 of the duct 28. During operation, the air 26 (in an unpurified state) flows from the cabin 22, into the inlet portion 40, and axially out through the outlet portion 42 (in a purified state) for flow back into the cabin 22.
[0030] The duct includes an internal face 44 that may be circumferentially continuous, faces radially inward, and defines a reaction chamber 46 axially located between the inlet and outlet portions 40, 42. In one example, the ultraviolet light assembly 30 is located in the reaction chamber 46. The filter 34 is located at the inlet portion 40 and upstream from the reaction chamber 46. The louver 36 is located at the inlet portion 40 and downstream from the filter 34. The fan 32 is located at the outlet portion 42 downstream from the reaction chamber 46.
[0031] The filter 34 is adapted to reduce, or eliminate the flow of particulate in the air 26, and before the air reaches the reaction chamber 46. In one example, the louver 36 is adapted to divert the flow pattern of the incoming air 26 to that of a spiraling pattern for optimizing the performance of the ultraviolet light assembly 30 in the destruction of pathogens 48 within the reaction chamber 46. It is contemplated and understood that the filter 34 may be located at the outlet portion 42 of the duct 28, or an additional filter may be located at the outlet portion.
[0032] In one example, the face 44 may be reflective for the reflection of ultraviolet light emitted by the ultraviolet light assembly 30 (i.e., energy or rays, see arrows 50) back into the reaction chamber 46 to optimize performance of the ultraviolet light assembly 30 in the destruction of the pathogens 48. Similarly, each airfoil 52 of the fan 32 may include a reflective surface 54 that faces, at least in-part toward the reaction chamber 46. In operation, ultraviolet rays 50 reflect off of the angled, reflective surfaces 54 of each airfoil 52 and back into the reaction chamber 46 at various angles for improved distribution of the ultraviolet rays 50 for improved destruction of the pathogens 48. The reflective face 44 and the reflective surfaces 54 may be made of polished aluminum, polished stainless steel, or any other material or composition capable of reflected ultraviolet rays 50. In another example, the reflective face 44 may be a diffused reflector that reflects light at all angles to expose all air contaminant molecules (i.e., pathogens) from all sides.
[0033] The ultraviolet light assembly 30 may include a ballast 56 and an ultraviolet light source 58. In one example, the ultraviolet light source 58 emits the ultraviolet light 50 within a wavelength range of about 220 nanometers to 290 nanometers, and/or at a UV-C energy. In another embodiment, the wavelength range may be about 185 nanometers to 254 nanometers. In this example, the ultraviolet light assembly 30 also facilitates the production of ozone at about 185 nanometers, and destroys pathogens (i.e., germicidal) at about 254 nanometers.
[0034] In one embodiment, the ballast 56 of the ultraviolet light assembly 30 is located in the reaction chamber 46, is proximate to the inlet portion 40 and/or louver 36, and is centered to the centerline 38. The ultraviolet light source 58 is located in the reaction chamber 46, axially projects from the ballast 56 and toward the fan 32, and is substantially centered to the centerline 38 for efficient performance. It is contemplated and understood that the ballast 56 and/or the ultraviolet light source 58 may be orientated elsewhere, and may be located outside of the reaction chamber 46 provided the ultraviolet light 50 is efficiently emitted into the reaction chamber 46.
[0035] In one embodiment, the fan 32 may be a passive fan employed to rotate (i.e., like windmill) via the air flowing through it. An electrically driven fan may be located elsewhere in the system, not exposed to the ultraviolet light, and to induce the flow of air.
[0036] Advantages and benefits of the present disclosure include an air purifier system 20 capable of efficiently destroying pathogens while minimizing the size of a reaction chamber 46 and/or reducing the needed wattage for operation of the ultraviolet light assembly 30
[0037] While the present disclosure is described with reference to exemplary embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted without departing from the scope of the present disclosure. In addition, various modifications may be applied to adapt the teachings of the present disclosure to particular situations, applications, and/or materials, without departing from the essential scope thereof. The present disclosure is thus not limited to the particular examples disclosed herein, but includes all embodiments falling within the scope of the appended claims.