AIR PURIFICATION SYSTEM
20210393843 · 2021-12-23
Inventors
Cpc classification
B64D2013/0651
PERFORMING OPERATIONS; TRANSPORTING
B64D13/00
PERFORMING OPERATIONS; TRANSPORTING
B01D2279/65
PERFORMING OPERATIONS; TRANSPORTING
A62B19/00
HUMAN NECESSITIES
B01D46/0028
PERFORMING OPERATIONS; TRANSPORTING
International classification
A62B19/00
HUMAN NECESSITIES
B01D46/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A filter assembly including a plurality of filter modules, wherein each filter module in the plurality of filter modules includes a frame, a filtration element coupled within the frame, and at least one mating feature. The at least one mating feature of each filter module is configured for selective engagement with the at least one mating feature of another filter module such that the plurality of filter modules are coupled together in a serial arrangement.
Claims
1. An air purification system for purifying air in an aircraft, the air purification system comprising: an air purification device comprising a filter assembly and a fan configured to draw an airflow through the filter assembly; and an aircraft structure configured to support the air purification device.
2. The air purification system in accordance with claim 1, wherein the aircraft structure comprises at least one of a sidewall assembly, a ceiling panel, a passenger seat, and a floor panel.
3. The air purification system in accordance with claim 1, wherein the air purification device is portable about a cabin of the aircraft.
4. The air purification system in accordance with claim 1, wherein the air purification device is remotely controlled from at least one of a flight deck, an attendant's panel, and an in-flight entertainment panel.
5. The air purification system in accordance with claim 1, wherein the air purification device comprises an internal power source.
6. The air purification system in accordance with claim 1, wherein the air purification device is powered by the aircraft.
7. The air purification system in accordance with claim 1, wherein the air purification device comprises an inlet located away from exhaled breath, and an outlet located to channel filtered air toward a passenger's face.
8. The air purification system in accordance with claim 1, wherein the filter assembly comprises at least one of a particulate filter, an adsorption material, and an ultra violet light source.
9. The air purification system in accordance with claim 1, further comprising tubing and a mask coupled in flow communication with an outlet of the air purification device for directly supplying disinfected air to a passenger.
10. The air purification system in accordance with claim 1, wherein the air purification device is configured to disinfect the air a passenger breathes in.
11. The air purification system in accordance with claim 1, wherein the air purification device is configured to disinfect the air a passenger exhales.
12. The air purification system in accordance with claim 1, wherein the air purification device is configured to remove gaseous compounds.
13. An aircraft comprising: an air purification system for purifying air in the aircraft, the air purification system comprising: an air purification device comprising a filter assembly and a fan configured to draw an airflow through the filter assembly; and an aircraft structure configured to support the air purification device.
14. The aircraft in accordance with claim 13, wherein the aircraft structure comprises at least one of a sidewall assembly, a ceiling panel, a passenger seat, and a floor panel.
15. The aircraft in accordance with claim 13, wherein the air purification device is portable about a cabin of the aircraft.
16. The aircraft in accordance with claim 13, wherein the air purification device is remotely controlled from at least one of a flight deck, an attendant's panel, and an in-flight entertainment panel.
17. A method of purifying air in proximity to a passenger seat on an aircraft, the method comprising: supporting an air purification device using an aircraft structure; drawing an airflow into an air purification device using a fan; channeling the airflow through a filter assembly of the air purification device; and discharging the airflow in proximity to a passenger for inhalation.
18. The method in accordance with claim 17, wherein channeling the airflow through a filter assembly comprises disinfecting the air a passenger breathes in and the air a passenger exhales.
19. The method in accordance with claim 17, wherein channeling the airflow through a filter assembly comprises channeling the airflow through at least one of a particulate filter, an adsorption material, and an ultra violet light source.
20. The method in accordance with claim 17, further comprising remotely controlling the air purification device from at least one of a flight deck, an attendant's panel, and an in-flight entertainment panel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0017] Corresponding reference characters indicate corresponding parts throughout the several views of the drawings. Although specific features of various examples may be shown in some drawings and not in others, this is for convenience only. Any feature of any drawing may be referenced and/or claimed in combination with any feature of any other drawing.
DETAILED DESCRIPTION
[0018] The air purification systems described herein include an air purification device located close to each passenger. The device can be portable or mounted in a specific location in the aircraft cabin, such as the last row of an aircraft to create a quarantine zone for sick passengers. The device can filter air with any combination of a particulate filter (such as HEPA), adsorption material, and a UV light source for disinfection. The device is located in any one of a sidewall assembly, ceiling panel, under-seat storage, in an empty seat, or floor panel. If there is a sick passenger on the aircraft, air purification system filters and disinfects the exhaled air and returns it to the cabin. The air purification device can be powered by the aircraft system or may include an internal power source. The device can be controlled via either the flight deck, attendant panels, passenger in-flight entertainment panel, or a control panel on the device itself to operate the fan and applicable filtration elements.
[0019]
[0020] In a particular implementation, air purification system 100 is included onboard an aircraft (not shown), for example, and is independent of an environmental control system (ECS) of the aircraft. More specifically, air purification device 101 operates in conjunction with ECS to provide additional purification of the air within the passenger cabin or crew area. In such an implementation, source 104 and location 108 are both a passenger cabin, are both a cockpit, and are both a crew compartment, for example. Moreover, while air purification system 100 is capable of use within an aircraft, air purification system 100 can also be implemented in any structure through which air flows, such as a building, a platform, or a vehicle. Further, air purification device 101 is capable of utilization in any system where filtering contaminants from a stream of air is desired.
[0021]
[0022] The absorptive filter media, such as but not limited to, activated charcoal, facilitates removing gaseous contaminants from airflow 114. These filters are available as an option on some aircraft to adsorb organic gases that are not trapped by the HEPA filters. The regenerative heating element is capable of regenerating the absorptive filter media. The ultraviolet irradiation element facilitates neutralizing viruses and bacteria entrained in airflow 114, and the ozone converter element is a catalytic converter device that facilitates generating oxygen from ozone-rich ambient air, for example.
[0023] As shown in
[0024] Referring to
[0025] Referring to
[0026] Referring to
[0027] The filter assemblies shown in
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[0032] As shown in
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[0034] In one embodiment, operation of air purification device 101 is suitably controlled by the pilot or co-pilot from the flight deck 170. Alternatively, or in combination, operation of air purification device 101 is suitably controlled from a flight attendant's panel 172 located in the aircraft cabin. Alternatively, or in combination, operation of air purification device 101 is controlled by the passenger, e.g., from the in-flight entertainment panel 174. Generally, operation of air purification device 101 may be controlled from any location that enables the operator to control air purification device 101 to operate fan 112 and any applicable filtration elements of filter assembly. Because aircraft 124 includes multiple air purification devices 101, in embodiments where air purification devices 101 are controlled from the flight deck 170 or the attendant's panel, the pilot or flight attendant can control each air purification device individually.
[0035] The air purification systems described herein include an air purification device located close to each passenger. The device can be portable or mounted in a specific location in the aircraft cabin, such as the last row of an aircraft to create a quarantine zone for sick passengers. The device can filter air with any combination of a particulate filter (such as HEPA), adsorption material, and a UV light source for disinfection. The device is located in any one of a sidewall assembly, ceiling panel, under-seat storage, in an empty seat, or floor panel. If there is a sick passenger on the aircraft, air purification system filters and disinfects the exhaled air and returns it to the cabin. The air purification device can be powered by the aircraft system or may include an internal power source. The device can be controlled via either the flight deck, attendant panels, passenger in-flight entertainment panel, or a control panel on the device itself to operate the fan and applicable filtration elements. The air purification device can also be used when a passenger is quarantined away from other passengers to help prevent the spread of infectious diseases. Such as a separate seat in the back of the plane, the crew rest or attendant rest in the aircraft.
[0036] The systems and methods described are not limited to the specific embodiments described herein, but rather, components of the systems and/or steps of the methods may be utilized independently and separately from other components and/or steps described herein.
[0037] Although specific features of various embodiments of the disclosure may be shown in some drawings and not in others, this is for convenience only. In accordance with the principles of the disclosure, any feature of a drawing may be referenced and/or claimed in combination with any feature of any other drawing.
[0038] As used herein, an element or step recited in the singular and proceeded with the word “a” or “an” should be understood as not excluding plural elements or steps unless such exclusion is explicitly recited. Furthermore, references to “one embodiment” of the present invention or the “example embodiment” are not intended to be interpreted as excluding the existence of additional embodiments that also incorporate the recited features.
[0039] This written description uses examples to disclose various implementations, including the best mode, and also to enable any person skilled in the art to practice the various implementations, including making and using any devices or systems and performing any incorporated methods. The patentable scope of the disclosure is defined by the claims, and may include other examples that occur to those skilled in the art. Such other examples are intended to be within the scope of the claims if they have structural elements that do not differ from the literal language of the claims, or if they include equivalent structural elements with insubstantial differences from the literal language of the claims.