Columnar air moving devices, systems and methods
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
F24F-007/00
F24F-013/06
F24F-013/065
출원번호
US-0495949
(2012-06-13)
등록번호
US-9459020
(2016-10-04)
발명자
/ 주소
Avedon, Raymond B.
출원인 / 주소
AIRIUS IP HOLDINGS, LLC
대리인 / 주소
Knobbe, Martens, Olson & Bear, LLP
인용정보
피인용 횟수 :
7인용 특허 :
177
초록▼
An air moving system includes an air moving device including a housing member, a rotary fan assembly, and a nozzle, the housing including a plurality of air intake vents. The nozzle is configured to move relative to a longitudinal axis of the air moving device. The air moving system includes a ceili
An air moving system includes an air moving device including a housing member, a rotary fan assembly, and a nozzle, the housing including a plurality of air intake vents. The nozzle is configured to move relative to a longitudinal axis of the air moving device. The air moving system includes a ceiling grid structure. The air moving device is configured to rest within a grid within the ceiling grid structure or within an opening in the ceiling.
대표청구항▼
1. An air moving system comprising: a ceiling structure comprising a first ceiling level forming a base portion of the ceiling, the first ceiling level having a plurality of grid cells, each grid cell bordered by a grid cell periphery structure, the ceiling structure further comprising a second ceil
1. An air moving system comprising: a ceiling structure comprising a first ceiling level forming a base portion of the ceiling, the first ceiling level having a plurality of grid cells, each grid cell bordered by a grid cell periphery structure, the ceiling structure further comprising a second ceiling level separated from the first ceiling level by a first height;an air moving device positioned at least partially within one of the grid cells in the first ceiling level, the air moving device comprising: a housing member forming an interior space within the air moving device, the housing member having a top surface, the housing member being positioned within the ceiling structure such that the top surface is located between the first and second ceiling levels;a ceiling support structure forming an outer peripheral edge of the air moving device and attached to the housing member, said ceiling support structure defining an exposed lower surface, the ceiling support structure supported by the grid cell periphery structure;the housing member comprising a plurality of air vents for directing a volume of air into the interior space of the air moving device, the air vents having an upstream end and a downstream end,a rotary fan assembly mounted in the interior space and supported by the ceiling support structure, the rotary fan assembly comprising an impeller and a plurality of blades, the rotary fan assembly configured to direct the volume of air within the interior space, the rotary fan assembly having an upstream end and a downstream end; anda nozzle communicating with and extending downwardly from the rotary fan assembly, the nozzle comprising a structure for further directing the volume of air out of the air moving device, the nozzle defining a spherical surface which cooperates with a surface of the housing member to enable the nozzle to pivotably rotatably move with respect to a longitudinal axis of the air moving device;wherein the downstream end of the air vents is positioned adjacent the downstream end of the rotary fan assembly; andwherein the housing member comprises a plurality of ring-shaped structures of varying diameter connected to one another, wherein gaps exist between each of the plurality of ring-shaped structures, the gaps forming the plurality of air vents and wherein the surface of the housing corresponds to a widest portion of an interior of the nozzle as measured perpendicular to a longitudinal axis of the nozzle. 2. The air moving system of claim 1, wherein the ceiling support structure rests on the grid cell periphery structure. 3. The air moving system of claim 1, wherein the ceiling support structure is secured to the grid cell periphery structure by at least one fastener. 4. The air moving system of claim 1, wherein the housing member comprises an upper housing member and a lower housing member, the upper housing member connected to the lower housing member. 5. The air moving system of claim 4, wherein the rotary fan is mounted to the lower housing member. 6. The air moving system of claim 1, wherein the nozzle comprises at least one stator vane. 7. The air moving system of claim 1, wherein the housing member comprises at least one anti-swirl member. 8. The air moving system of claim 1, wherein the housing member comprises at least one seismic connect tab. 9. An air moving device comprising: a housing member forming an interior space within the air moving device, the housing member comprising a plurality of air vents for directing a volume of air into the interior space of the air moving device;a ceiling support structure forming an outer peripheral edge of the air moving device and attached to the housing member, the ceiling support structure configured to be supported by a grid cell periphery structure, wherein the ceiling support structure has an exposed lower surface;a rotary fan assembly mounted in the interior space, the rotary fan assembly comprising an impeller and a plurality of blades, the rotary fan assembly configured to direct the volume of air within the interior space; anda nozzle communicating with and extending downwardly from the rotary fan assembly, the nozzle defining a longitudinal axis and comprising a structure for further directing the volume of air out of the air moving device;wherein the air moving device comprises a longitudinal axis, the housing member comprises an opening for insertion of the nozzle which defines a support surface, and the nozzle comprises at least one spherical surface configured to fit within the opening and move with respect to the support surface such that the nozzle can be adjusted at various angles relative to the longitudinal axis of the air moving device; and wherein the at least one spherical surface corresponds to a widest portion of an interior of the nozzle as measured perpendicular to the longitudinal axis of the nozzle and further comprising at least one ionization cell and at least one cutout configured to create a space for the ionization cell. 10. The air moving device of claim 9, wherein the nozzle is configured to be adjustable from 0 to 45 degrees relative to the longitudinal axis in at least one direction. 11. The air moving device of claim 9, wherein the nozzle is configured to be locked in a plurality of different angular positions. 12. The air moving device of claim 11 wherein the nozzle is self-locking. 13. The air moving device of claim 9, wherein the housing member comprises a plurality of ring-shaped structures of varying diameter connected to one another, wherein gaps exist between each of the ring-shaped structures, the gaps forming the plurality of air vents. 14. The air moving device of claim 9, wherein the housing member comprises an upper housing member and a lower housing member, the upper housing member connected to the lower housing member. 15. The air moving device m of claim 9, wherein the nozzle comprises at least one stator vane. 16. The air moving device of claim 9, wherein the housing member comprises at least one anti-swirl member. 17. The air moving device of claim 9, wherein the housing member comprises at least one seismic connect tab. 18. The air moving device of claim 14, wherein the rotary fan is mounted to the lower housing member.
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