Centrifugal ceiling fan

Information

  • Patent Grant
  • 9829009
  • Patent Number
    9,829,009
  • Date Filed
    Friday, March 20, 2015
    9 years ago
  • Date Issued
    Tuesday, November 28, 2017
    6 years ago
  • Inventors
    • Seccareccia; Alessandro
  • Original Assignees
  • Examiners
    • Nguyen; Ninh H
    Agents
    • Johnston; Michael G.
    • Moore & Van Allen, PLLC
Abstract
The present document describes a centrifugal ceiling fan. The fan comprises a casing, a motor and a centrifugal propeller. The casing comprises an upper surface comprising an air inlet and a lower surface comprising an air outlet. In an embodiment, the lower surface has a round bowl-like shape including a plurality of openings defining the air outlet. The propeller comprises a shaft and a plurality of blades provided around the shaft. The blades may be curved to push the air in all directions between a first direction substantially perpendicular to the rotation shaft and a second direction substantially parallel to the rotation shaft in order to evenly ventilate the room. The fan may include a heating element for heating the air as it exits from the fan.
Description
BACKGROUND

(a) Field


The subject matter disclosed generally relates to ceiling fans.


(b) Related Prior Art



FIG. 1 illustrates a conventional axial ceiling fan 20. The ceiling fan 20 includes a plurality of paddles 22, a lamp 24, a motor 26 for turning the paddles 22, and attachment means 28 for attaching the ceiling fan 20 to the roof.


This type of fans has several problems. One of the problems is the uneven distribution of air throughout the room. The paddles are mounted vertically to the axis of rotation and push the air downward in the same direction as the axis of rotation. Therefore, the area outside the radius of the paddles remains unventilated. Other problems associated with axial fans include the space occupied by the paddles and the safety concerns due to the fact that the paddles are exposed as they rotate.


Several attempts have been made to address this problem. For example U.S. Patent Publication No. 2007/0247854 describes a ceiling fan in which the paddles are covered by a casing as shown in FIG. 2. The solution described in this reference addresses only the safety concern. However, the space occupied is substantially the same or even greater than that of FIG. 1, and the lack of even distribution of air remains the same.


One way for reducing the size of the fan, is to make the paddles shorter. Thus, to obtain the same ventilation results, the rotation speed has to be increased, which results in an increase in energy consumption and noise.


Other attempts to address these problems are described in U.S. Pat. No. 1,699,201; U.S. Pat. No. 4,473,000; U.S. Pat. No. 4,768,424, U.S. Pat. No. 7,381,129 etc. These references address one problem on the expense of the other.


Therefore, there is a need for a ventilation system which is efficient, safe to use, quiet, and provides even distribution of air throughout the room.


SUMMARY

According to an embodiment, there is provided a centrifugal ceiling fan which comprises a centrifugal impeller instead of paddles for forced air current. This centrifugal impeller will be encased, thus eliminating any exterior rotating parts. This configuration will make the fan safer, considering that the paddles create a danger to any object nearing the device.


According to a first aspect, there is provided a centrifugal ceiling fan comprising: a casing comprising an upper surface comprising an air inlet and a lower surface comprising an air outlet, said lower surface comprising an upper section and a lower section and having a variable diameter between said upper and lower sections, said diameter being greater at the upper section than the lower section. The fan also comprises a centrifugal propeller comprising a rotation shaft and a plurality of blades provided around said shaft, said blades being curved to push the air in substantially all directions between a first direction substantially perpendicular to the rotation shaft and a second direction substantially parallel to the rotation shaft; and a motor operatively connected to said centrifugal propeller for rotating said centrifugal propeller; said motor and said centrifugal propeller being provided within said casing. Rotation of the centrifugal propeller causes air to be received from said air inlet and to be pushed from said air outlet in substantially all directions between the first direction and the second direction.


In an embodiment, the blades have a variable width corresponding to the variable diameter.


In another embodiment, the lower surface has a bowl-like shape.


In a further embodiment the upper section and the lower section are connected by linking members. In yet a further embodiment, at least one of the linking members is provided with a heating element for heating the air. In another embodiment, at least one heating element is provided between two linking members for heating the air.


The casing may comprise an air regulator provided at an outer side of the casing. In this embodiment, the air regulator may comprise a plurality of rings having different diameters provided between the upper section and the lower section for directing the air. In one embodiment, the space between at least two rings is adjustable. In another embodiment, the angle of orientation of at least one ring is adjustable.


The upper surface may be provided as a lid and the upper section of the lower surface may include an opening for receiving said lid.


In an embodiment, the centrifugal propeller comprises an upper plate and a lower plate connected to the rotation shaft, said upper and lower plates having openings therein for receiving an upper edge and a lower edge of each blade, respectively. In this embodiment, the centrifugal fan may comprise a motor having a cylindrical shape and comprising a flange between a first and a second end thereof; a static plate which rests on an inner side of the casing above said upper plate, said static plate comprising an opening therein, said opening having a diameter which is greater than a diameter of said motor and smaller than a diameter of said flange; wherein the motor is supported by said static plate using said flange and a portion of said motor below said flange passes through said opening for connection to the centrifugal propeller.


In an embodiment, a plurality of spacers are provided between the motor and the portion of said motor above the flange for maintaining said motor in position.


In a further embodiment, direction of air is substantially perpendicular to the rotation shaft in proximity of the upper section, and substantially parallel to the rotation shaft in proximity of the lower section.


In another aspect, there is provided a centrifugal ceiling fan comprising: a casing comprising an upper surface comprising an air inlet and a lower surface comprising an air outlet; a centrifugal propeller operatively connected to a motor for generating an air current, said propeller and said motor being provided within said casing; and an air regulator provided at an outer side of said casing for directing said air current.


In an embodiment, the air regulator comprises a plurality of rings which are spaced apart from and placed one over the other between an upper section and a lower section of the lower surface.


In an embodiment, a space between at least two of the rings is adjustable. In another embodiment, an orientation of at least one of the rings is adjustable.


Features and advantages of the subject matter hereof will become more apparent in light of the following detailed description of selected embodiments, as illustrated in the accompanying figures. As will be realized, the subject matter disclosed and claimed is capable of modifications in various respects, all without departing from the scope of the claims. Accordingly, the drawings and the description are to be regarded as illustrative in nature, and not as restrictive and the full scope of the subject matter is set forth in the claims.





BRIEF DESCRIPTION OF THE DRAWINGS

Further features and advantages of the present disclosure will become apparent from the following detailed description, taken in combination with the appended drawings, in which:



FIG. 1 illustrates a conventional axial ceiling fan;



FIG. 2 illustrates a conventional axial ceiling fan with a casing;



FIG. 3 illustrates a centrifugal ceiling fan in accordance with an embodiment;



FIG. 4 is an exemplary exploded view of the centrifugal ceiling fan illustrated in FIG. 3;



FIG. 5 illustrates examples of how the blades of the ceiling fan may be curved, in accordance with an embodiment;



FIG. 6 illustrates an example of the even flow of air through the ceiling fan illustrated in FIG. 3;



FIG. 7 illustrates a ceiling fan including an air regulator, in accordance with an embodiment;



FIG. 8 illustrates a centrifugal ceiling fan including a plurality of rivets, in accordance with an embodiment; and



FIG. 9 illustrates an impeller in the form of a hamster wheel, in accordance with an embodiment.





It will be noted that throughout the appended drawings, like features are identified by like reference numerals.


DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

In embodiments there is disclosed a centrifugal ceiling fan. The fan comprises a casing, a motor and a centrifugal propeller. The casing comprises an upper surface comprising an air inlet and a lower surface comprising an air outlet. In an embodiment, the lower surface has a round bowl-like shape including a plurality of openings defining the air outlet. The propeller comprises a shaft and a plurality of blades provided around the shaft. The blades may be curved to push the air in all directions between a first direction substantially perpendicular to the rotation shaft and a second direction substantially parallel to the rotation shaft in order to evenly ventilate the room. The fan may include a heating element for heating the air as it exits from the fan.


Referring now to the drawings, FIG. 3 illustrates an example of a centrifugal ceiling fan in accordance with an embodiment. As shown in FIG. 3, the centrifugal ceiling fan 40 includes a casing. In an embodiment, the casing has a round shape and comprises a lower bowl-like portion 42 comprising an air outlet, and an upper portion 43 defining a lid and comprising an air inlet. The lower portion 42 comprises an upper section 44, and a lower section 46. The lower portion has a variable diameter whereby, the diameter is larger at the upper section 44 than at the lower section 46. The upper and lower sections are connected by a plurality of linking members 48. The linking members 48 are spaced apart to define openings therebetween. The openings may extend between the upper section 44 and the lower section 46.


The centrifugal ceiling fan 40 comprises a centrifugal impeller 52, and an electric motor 50 (Shown in FIG. 4) for rotating the impeller 52. The ceiling fan 40 may be attached to the ceiling using known attachment means through the upper end of the lid 43. Clasps or equivalent fastening means may be used for attachment of the entire apparatus to an electrical ceiling box.



FIG. 4 is an exemplary exploded view of the centrifugal ceiling fan illustrated in FIG. 3. As shown in FIG. 4, the impeller 52 comprises a rotation shaft 52 connected between two nuts 54, and a plurality of blades 56 provided angularly around the rotation shaft 52 between an upper plate 58 and a lower plate 60. In an embodiment, the upper and lower plates 58 and 60 include a plurality of openings for receiving the upper and lower ends of the blades, respectively.


In the present embodiment, the electric motor 50 has a cylindrical shape and includes a flange between the two ends thereof. A static plate 62 is provided between the upper plate 58 and the lid 43 for supporting the motor 50. The static plate 62 rests on the inner side of the casing and includes an opening 64 having a diameter which is slightly greater than the diameter of the motor and smaller than the diameter of the flange for receiving the portion of the motor which is under the flange. In an embodiment, a plurality of spacers 66 is provided between the lid 43 and the plate 62 for holding the motor 50 in place within the casing. As shown in FIG. 4, the spacers 66 are dimensioned to receive the upper portion of the motor above the flange. It should be noted that, while advantageous, the provision of the spacers 66 is optional because the lid itself 43 may be shaped to maintain the motor 50 in place.


As shown in FIG. 4, the upper section 44 of the casing 40 defines an opening for receiving the lid 43. The lid 43 includes a plurality of ribs 68 connected between the upper surface and the lower surface thereof. The ribs 68 are spaced apart to define openings therebetween. The upper plate 58 and the static plate 62 also include a plurality of cutouts, as shown in FIG. 4 for letting the air pass therethrough.


In order to evenly ventilate the room through the air outlet, the blades may be curved to push the air in substantially all directions between a first direction substantially perpendicular to the rotation shaft and a second direction substantially parallel to the rotation shaft, as shown in FIG. 6. An example of how the blades may be curved is shown in FIG. 5. The blades may have a variable width to fit within the casing. In this case, the width may be larger at the upper edge of the blades than at the lower edge. In an embodiment, the width of the blades corresponds to the diameter of the casing.


During operation, the motor 50 rotates the centrifugal impeller 52. Air is received from the inlet provided in the lid to be directed in all directions between a first direction substantially perpendicular to the rotation shaft and a second direction substantially parallel to the rotation shaft so as to evenly ventilate the room. FIG. 6 illustrates an example of the even flow of air through the ceiling fan illustrated in FIG. 3. As shown in FIG. 6, air is received from the openings provided in the lid 43 through the plate 62, the upper plate 58, and then pushed throughout the room in all directions. The shape of the lower portion 42 which defines the air outlet, and the shape of the blades 56 together allow for an even air distribution of the air throughout the room, as shown in FIG. 6.


In an embodiment, a heating element is provided in the ceiling fan 40 for selectively using the ceiling fan for cooling/heating. The heating element may be placed between the impeller and the casing, thereby allowing the current that exits the casing to be heated. This will have the effect of reducing heating costs, making the centrifugal ceiling fan 40 economical. In an embodiment, the heating element may be provided on the linking members 48. In another embodiment, the heating element may be provided between the linking members or may be provided as a screen at one or more of the openings through which the air exits from the fan 40.


The motor 50 and the heating element are powered by an electric current. The motor 50 and the heating element may operate on different types of currents and voltages. Provision of electric power to the motor and the heating element may be performed using well-known techniques.


The motor 50 may have various speed settings to suit different rooms and meet current needs or desires within a given room. Similarly, the heating element may have various heating settings that suit different rooms and heating needs. Both the motor 50 and the heating element may be controlled remotely from a control panel and/or a remote control which are available on the market.


A variety of the elements described herein e.g. motor, control panel, remote control are available on the market and may be chosen for the purposes described herein, as would be appreciated by a person of skill in the art.


In another embodiment, the fan may include an air regulator for directing the air current to its desired destination. FIG. 7 illustrates a ceiling fan including an air regulator, in accordance with an embodiment. The air regulator comprises a series of rings 70. The rings 70 are apart from and placed one over the other. These rings 70 are of different radius, the largest ring being the one closest to the upper section 44 and the smallest being the one closer the lower section 46. The rings are angled differently to direct the air in the different directions. In an embodiment, the distance between the rings and/or the angle of each ring may be adjusted by the user manually and/or remotely in accordance with the user's needs, seating area, and/or dimensions of the room. For example when the ceiling is higher than the average, the angle of the rings is diminished so that the air is pushed downward toward the living area rather than perpendicularly toward the walls.



FIG. 8 illustrates a centrifugal ceiling fan 80 including a plurality of rivets 82 around the casing, in accordance with an embodiment. These rivets 82 may be a quarter inch apart, which is enough spacing so as not to create any resistance for the egression of the air current. The impeller directs the air to the desired destination, as described earlier. The centrifugal fan 80 may be aesthetically designed for customer satisfaction. In an embodiment, the rivets may include a heating element for heating the air as it exits from the casing.



FIG. 9 illustrates an impeller in the form of a hamster wheel, in accordance with an embodiment. In one embodiment, the direction of the current will be determined by the design of the casing and/or the previously described air regulator shown in FIG. 7. In another embodiment, (not shown) the blades of the hamster wheel may be curved to push the air in multiple directions as in the embodiment of FIGS. 3 to 5.


In any one of the above embodiments, the fan may include lighting to allow for simultaneous ventilation and lighting. The lighting is preferably provided at the lower section of the casing.


While preferred embodiments have been described above and illustrated in the accompanying drawings, it will be evident to those skilled in the art that modifications may be made without departing from this disclosure. Such modifications are considered as possible variants comprised in the scope of the disclosure.

Claims
  • 1. A centrifugal ceiling fan comprising: a casing comprising an air inlet and an air outlet;a centrifugal propeller comprising a rotation shaft and a plurality of blades provided around said shaft, said blades being curved to push the air in substantially all directions between a first direction substantially perpendicular to the rotation shaft and a second direction substantially parallel to the rotation shaft;a motor operatively connected to said centrifugal propeller to rotate the centrifugal propeller;
  • 2. The centrifugal ceiling fan of claim 1, wherein the blades have a width that varies along a direction of the rotation shaft.
  • 3. The centrifugal ceiling fan of claim 2, wherein the blades have a variable width corresponding to the variable diameter.
  • 4. The centrifugal ceiling fan of claim 1, wherein the casing has a diameter that varies along a direction of the rotation shaft.
  • 5. The centrifugal ceiling fan of claim 1, further comprising a heating element for heating the air exiting from the air outlet.
  • 6. The centrifugal ceiling fan of claim 1, further comprising an air regulator for directing the air to a desired location.
  • 7. The centrifugal ceiling fan of claim 6, wherein the air regulator comprises a plurality of rings.
  • 8. The centrifugal ceiling fan of claim 7, wherein a space between at least two rings is adjustable.
  • 9. The centrifugal ceiling fan of claim 7, wherein an angle of orientation of at least one ring is adjustable.
  • 10. The centrifugal ceiling fan of claim 1, wherein the casing comprises an upper surface defining a lid and a lower surface defining an opening for receiving said lid.
  • 11. A centrifugal ceiling fan comprising: a casing comprising an upper surface comprising an air inlet and a lower surface comprising an air outlet;a motor;a centrifugal propeller operatively connected to the motor for generating an air current, the centrifugal propeller comprising a rotation shaft and a plurality of blades provided around said shaft, said blades being curved and have a width that varies along a direction of the rotation shaft.
  • 12. The centrifugal ceiling fan of claim 11, wherein the blades vary in width along the second direction.
  • 13. The centrifugal ceiling fan of claim 11, further comprising an air regulator.
  • 14. The centrifugal ceiling fan of claim 13, wherein the air regulator is adjustable.
  • 15. The centrifugal ceiling fan of claim 13, wherein the air regulator comprises a plurality of rings.
  • 16. The centrifugal ceiling fan of claim 15, wherein an orientation of at least one of the rings is adjustable.
  • 17. The centrifugal propeller of claim 13, wherein the blades vary in width along the second direction.
  • 18. The centrifugal ceiling fan of claim 17, further comprising an air regulator.
  • 19. A centrifugal propeller for installing in a fan comprising a casing defining an air inlet and an air outlet, the centrifugal propeller comprising: a rotation shaft;a plurality of blades provided around the rotation shaft;
CROSS-REFERENCE TO RELATED APPLICATIONS

This application is continuation from U.S. application Ser. No. 13/500,061 which is a national phase entry of PCT/CA2010/001748 filed on Nov. 1, 2010 which claims priority from U.S. Provisional Application No. 61/257,594 filed on Nov. 3, 2009 which are incorporated herein by reference in their entirety.

US Referenced Citations (116)
Number Name Date Kind
1354673 Mathis Oct 1920 A
1378008 Candee May 1921 A
1478909 Oswald Dec 1923 A
1501201 Cates Jul 1924 A
1513763 Rowe Nov 1924 A
1730372 Lawrie Aug 1927 A
1657758 Lum Jan 1928 A
1699201 Guth Jan 1929 A
2037880 Charavay Apr 1936 A
2083996 Jonn Jun 1937 A
2138814 Bressler Dec 1938 A
2237451 Samuels Apr 1941 A
2269049 Zellweter Jan 1942 A
2287853 Allardice Jun 1942 A
2491399 Thompson Dec 1949 A
2916199 Loehr Dec 1959 A
2958460 Bullock Nov 1960 A
3171586 Ariewitz Mar 1965 A
3368744 Jen Feb 1968 A
3398883 Ariewitz Aug 1968 A
3459366 Schroeter Aug 1969 A
3619088 Bullock Nov 1971 A
3856434 Hoffmann Dec 1974 A
4108568 Townsend Aug 1978 A
4165950 Masai et al. Aug 1979 A
4276816 Tuley Jul 1981 A
4342258 Zaniewski Aug 1982 A
4473000 Perkins Sep 1984 A
4508958 Kan et al. Apr 1985 A
4526506 Köger et al. Jul 1985 A
4598632 Johnson, III Jul 1986 A
4640668 Yang Feb 1987 A
4647506 Colon et al. Mar 1987 A
4693673 Nee Sep 1987 A
4768424 Frenkler et al. Sep 1988 A
4867643 Appleton Sep 1989 A
4915583 Vera et al. Apr 1990 A
5336050 Guida et al. Aug 1994 A
5513953 Hansen May 1996 A
5599169 Hauser Feb 1997 A
5668920 Pelonis Sep 1997 A
5707209 Iyer et al. Jan 1998 A
5755555 Swift May 1998 A
5860788 Sorensen Jan 1999 A
5927947 Botros Jul 1999 A
5964576 Fujita et al. Oct 1999 A
5980207 Correll Nov 1999 A
6004365 Fiacco Dec 1999 A
6039539 Berg Mar 2000 A
6042335 Amr Mar 2000 A
6123618 Day Sep 2000 A
6217285 Kurokawa et al. Apr 2001 B1
6224335 Parisi et al. May 2001 B1
6240247 Reiker May 2001 B1
6283726 Fackelmann et al. Sep 2001 B1
6299409 Matsunaga Oct 2001 B1
6358011 Tetu et al. Mar 2002 B1
6372005 Fiacco Apr 2002 B1
6395843 Maekawa May 2002 B2
6438322 Reiker Aug 2002 B1
6477321 Reiker Nov 2002 B2
6514304 Fiacco Feb 2003 B2
6558120 Kim et al. May 2003 B2
6568905 Horng et al. May 2003 B2
6631243 Reiker Oct 2003 B2
6632132 Kikuchi et al. Oct 2003 B1
6634855 Rollo Oct 2003 B1
6669556 Gautney Dec 2003 B2
6685433 Kim et al. Feb 2004 B2
6751406 Reiker Jun 2004 B2
6755615 Chapman Jun 2004 B2
6769876 Sakai et al. Aug 2004 B2
6798098 Tai Sep 2004 B1
6942459 Li et al. Sep 2005 B2
6945868 Gautney Sep 2005 B2
7061758 Liu et al. Jun 2006 B2
7066712 Kim et al. Jun 2006 B2
7070389 Kim et al. Jul 2006 B2
7121799 Kim et al. Oct 2006 B2
7125226 Horng et al. Oct 2006 B2
7192254 Li et al. Mar 2007 B2
7210907 Patti May 2007 B2
7244099 Yamasaki Jul 2007 B2
7246997 Liu et al. Jul 2007 B2
7281898 Baek et al. Oct 2007 B2
7381129 Avedon Jun 2008 B2
7467931 O'Toole Dec 2008 B2
9022731 Seccareccia May 2015 B2
20050103042 Sanagi May 2005 A1
20050233688 Franz Oct 2005 A1
20060128299 Wu Jun 2006 A1
20060172688 Johnson Aug 2006 A1
20070014666 White Jan 2007 A1
20070066215 Song et al. Mar 2007 A1
20070092375 Liu Apr 2007 A1
20070110574 Lu et al. May 2007 A1
20070128039 Fan et al. Jun 2007 A1
20070140836 Chao et al. Jun 2007 A1
20070217908 Ochiai et al. Sep 2007 A1
20070243819 Ladanyi Oct 2007 A1
20070247854 Lin Oct 2007 A1
20070253834 Ogino et al. Nov 2007 A1
20080019824 Jiang et al. Jan 2008 A1
20080095629 Eguchi et al. Apr 2008 A1
20080107528 Tsuji et al. May 2008 A1
20080134713 Choi et al. Jun 2008 A1
20080159865 Lee et al. Jul 2008 A1
20080226452 Weaver Sep 2008 A1
20080227381 Avedon Sep 2008 A1
20080232967 Salvesen Sep 2008 A1
20080286130 Purvines Nov 2008 A1
20090028713 Kikuchi et al. Jan 2009 A1
20090028719 Teraoka et al. Jan 2009 A1
20090092488 Weaver Apr 2009 A1
20110223007 Hammel et al. Sep 2011 A1
20130028759 Berroth Jan 2013 A1
Foreign Referenced Citations (21)
Number Date Country
2451949 Jun 2005 CA
19531160 Feb 1997 DE
102007040794 Mar 2009 DE
723510 Jul 1996 EP
1457683 Sep 2004 EP
1878923 Jan 2008 EP
1933040 Jun 2008 EP
2008255920 Oct 2008 EP
702084 Jan 1954 GB
1107270 Mar 1968 GB
11771961 Nov 1969 GB
1420674 Jan 1976 GB
2289090 Nov 1995 GB
2300676 Nov 1996 GB
2312023 Oct 1997 GB
2459063 Oct 2009 GB
59001935 Jun 1982 JP
2009138587 Jun 2009 JP
2004011854 Feb 2004 WO
WO 2008011368 Jan 2008 WO
2011054093 May 2011 WO
Non-Patent Literature Citations (2)
Entry
Sectar Solutions Inc, European Application No. EP10827757, Supplementary European Search Report, May 4, 2015.
Sectar Solutions Inc., International Patent Application No. PCT/CA2015/050757, International Search Report, dated Nov. 4, 2015.
Related Publications (1)
Number Date Country
20150192146 A1 Jul 2015 US
Provisional Applications (1)
Number Date Country
61257594 Nov 2009 US
Continuations (1)
Number Date Country
Parent 13500061 US
Child 14664106 US