BACKGROUND OF THE INVENTION
1. Field of the Invention
[0001] The present invention relates to an air conditioner which is embedded and mounted
in a ceiling, for example.
2. Description of Related Art
[0002] Fig. 1 shows a conventional air conditioner which is embedded and mounted in a ceiling
(hereinafter referred to as "in-ceiling mount type air conditioner"). The air conditioner
has a housing (hereinafter referred to as "unit body") 1, a fan 2 and a heat exchanger
3 which is formed in a substantially square shape so as to surround the fan 2. The
fan 2 and the heat exchanger 3 are accommodated in the housing 1, and pipe holding
plates 4 of the heat exchanger 3 are connected to each other through a partition plate
5. A drain pump 7 is further disposed in a space 6 which is spatially separated from
the inside of the heat exchanger 3 by the partition plate 5. In this type of air conditioner,
room air which is sucked through an air suction port 8 is subjected to heat exchange
by the heat exchanger 3, and then blown out from blow-out ports 9 which are disposed
so as to blow air in four directions as shown in Fig. 1. The partition plate 5 is
used to prevent the heat-exchanged air from leaking from the surrounding portions
of the drain pump 7, a mechanical valve 7a, etc.
[0003] In the conventional air conditioner thus constructed, the air becomes turbulent or
eddy when it is blown out from the fan 2, and the turbulence or eddy of the blow-out
air causes noises during the operation of the air conditioner.
[0004] US-A-4,313,493 describes an air conditioner with a fan and a heat exchanger being
bent so as to surround the fan in a casing. An inducing casing is surrounding the
fan so that air is suched from three sides and blown out to the other side of the
heat exchanger.
[0005] DE 295 04 424.1 U describes an air conditioner with a fan and a heat exchanger being
bent so as to surround the fan and further comprising a cover for protecting the fan.
SUMMARY OF THE INVENTION
[0006] Therefore, an object of the present invention is to provide an air conditioner which
can reduce noises under the operation of the air conditioner (hereinafter referred
to as "operation noise").
[0007] In order to attain the above object, according to a first aspect of the present invention,
an air conditioner which contains a fan and a heat exchanger in a housing, the heat
exchanger being bent so as to surround the fan, is characterized in that the shaft
center of the fan is disposed eccentrically from the center of the heat exchanger
(i.e., is displaced from the center of the heat exchanger in any direction).
[0008] According to a second aspect of the present invention, an air conditioner which contains
a fan and a heat exchanger in a housing, the heat exchanger being bent so as to surround
the fan, and pipe holding plates of the heat exchanger being connected to each other
through a partition plate, is characterized in that the shaft center of the fan is
disposed eccentrically from the center of the heat exchanger toward the partition
plate.
[0009] According to the present invention, the shaft center of the fan is disposed eccentrically
from the center of the heat exchanger, or the shaft center of the fan is disposed
eccentrically from the center of the heat exchanger toward the partition plate side.
Therefore, the turbulence of the air is suppressed, so that the operation noise can
be reduced.
BRIEF DESCRIPTION OF THE DRAWINGS
[0010]
Fig. 1 is a bottom view showing a conventional air conditioner;
Fig. 2 is a bottom view showing an embodiment of an unit body of an air conditioner
according to the present invention;
Fig. 3 is a bottom view showing a decorative panel of the unit body according to the
present invention shown in Fig. 2;
Fig. 4 is a cross-sectional view showing the air conditioner shown in Fig. 3;
Fig. 5 is a graph showing noise test data according to the present invention; and
Fig. 6 is a graph showing noise test data according to the prior art.
DETAILED DESCRIPTION OF THE INVENTION
[0011] A preferred embodiment according to the present invention will be described hereunder
with reference to the accompanying drawings.
[0012] Fig. 2 is a bottom view showing an unit body of an air conditioner according to the
present invention, Fig. 3 is a bottom view showing the unit body to which a decorative
panel is attached, and Fig. 4 is a cross-sectional view showing the unit body of Fig.
3 and the decorative panel.
[0013] Referring to Fig. 4, reference numeral 10 represents an in-ceiling mount type air
conditioner. This in-ceiling mount type air conditioner is fixed while suspended in
a ceiling space 11 of a house or building 40, and it is of a four-direction air blowing
type. The air conditioner has an unit body 22 and a decorative panel 14. An air suction
port (not shown) is formed at the center of the longitudinal direction of the decorative
panel 14, and blow-out ports 18 are formed around the air suction port of the decorative
panel 14 as shown in Fig. 3. Four bolts 42 are fixed to roof frames of the house 40
or the like so as to extend from the house 40 vertically downwardly, and are also
fixed to hanging hooks of the unit body 22 to secure the air conditioner.
[0014] In the unit body 22 of the air conditioner 10 are disposed a fan motor 24, a turbo
fan 26, a heat exchanger 38 and an electrical equipment box 36. Reference numeral
16 represents an air suction port of the turbo fan 26. The heat exchanger 38 is bent
in a substantially rectangular shape so as to surround the fan motor 24 and the turbo
fan 26. The pipe holding plates 49 of the heat exchanger 38 are connected through
a partition plate 28. A drain pump 30, a drain exhaust port 32, a refrigerant pipe
34, etc. are disposed in a space at the outside of the heat exchanger 38 which is
spatially separated from the inside of the heat exchanger 38 by the partition plate
28. The partition plate 28 is used to prevent the sucked air from leaking out during
the operation of the air conditioner, and thus allows the heat-exchanged air to be
surely blow out from the four-direction air blow-out ports 18 into a room R.
[0015] According to this embodiment, the heat exchanger 38 is bent in a substantially rectangular
shape, and located to surround the turbo fan 26 as shown in Fig. 2. The shaft center
of the turbo fan 26 is eccentrically displaced from the center of the heat exchanger
38 toward the partition plate (i.e., the turbo fan 26 is disposed eccentrically from
the center of the heat exchanger 38 toward the partition plate 28). Here, the shaft
center of the turbo fan 26 means the axial center of the output shaft of the fan motor
24, and the center of the heat exchanger 38 means the intersection point between lines
L1 and L2, that is, the intersection point between a longitudinal axis L1 and a lateral
axis L2.
[0016] As shown in Fig. 4, an air filter 20 is also provided at the air suction port of
the decorative panel 14 of the air conditioner 10.
[0017] Next, the operation of the air conditioner will be described.
[0018] In Figs. 2 to 4, upon actuation of the fan motor 24 in a body casing 22, the turbo
fan 26 is rotated to suck air from the room R through the air suction port of the
decorative panel and the air suction port 16 of the turbo fan 26. The sucked air is
cleaned by the air filter 20, and then fed to the heat exchanger 38. The air is subjected
to the heat exchange by the heat exchanger 38, and then blown out from the four blow-out
ports into the room Rn in the four directions.
[0019] In this case, the room air which has been sucked from the air suction port 16 and
heat-exchanged by the heat exchanger 38 is prevented from leaking from the inside
of the heat exchanger 38 to the surrounding portions of the drain pump 30, the drain
exhaust port 32, the in-door mechanical valve 60, etc. due to existence of the partition
plate 28 located at a corner portion of the unit body 22, and thus the heat-exchanged
air is allowed to be surely blow out from the four-direction blow-out ports 18 into
the room R.
[0020] According to this embodiment, the shaft center of the turbo fan 26 is eccentrically
displaced from the center of the heat exchanger 38 (i.e., the center of the area surrounded
by the rectangular heat exchanger 38) toward the partition plate 28 side by a distance
of L3 as shown in Fig. 2, so that the operation noise during the operation of the
air conditioner can be more greatly reduced as compared with the conventional air
conditioner, which will be described later.
[0021] The distance L3 is preferably equal to about 100mm, however, it may be varied in
accordance with the size of the unit body 22. Further, it has been found out that
the distance L3 is not dependent on the bending shape of the heat exchanger 38. For
example, the heat exchanger 38 may be bent in a square, rectangular, elliptic or circular
shape. At any rate, according to this embodiment, it is important to eccentrically
displace the shaft center of the turbo fan 26 from the center of the heat exchanger
38 (i.e., to dispose the shaft center of the turbo fan 26 eccentrically from the center
of the heat exchanger 38). The displacement direction of the shaft center of the turbo
fan 26 is not limited to a specific one. In the embodiment shown in Fig. 2, the shaft
center of the turbo fan 26 is displaced from the center of the heat exchanger 38 toward
the partition plate side (in the case of Figs. 2 and 3, in a direction along the longitudinal
axis L1 which approaches to one short side of the heat exchanger 38 nearer to the
partition plate 28). This displacement direction is merely determined as a preferable
one to reduce the operation noise, and it may be set to any direction, for example,
the opposite direction to the above displacement direction (i.e., the direction opposite
to the partition plate side). However, it has been clear that the latter case (i.e.,
the displacement in the opposite direction to the partition plate side) has a smaller
noise reduction effect than the former case (the displacement toward the partition
plate side).
[0022] As described above, according to the present invention, the eddy or turbulence of
air which is blown out from the turbo fan 26 to the heat exchanger 38 can be reduced,
so that the noises during the operation of the air conditioner can be more reduced
as compared with the conventional air conditioner.
[0023] Fig. 5 is a graph showing noise test data obtained according to the present invention,
and Fig. 6 is a graph showing noise test data obtained according to the prior art.
In these graphs, the abscissa represents the frequency while the ordinate represents
the magnitude of noises (dB). The frequency band used for the noise test data was
25Hz to 20KHz, and the histogram at the right end of each graph represents an average
value in the used frequency band. Comparing these test data of Figs. 5 and 6, it is
apparent from Figs. 5 and 6 that the air conditioner of the present invention can
more greatly reduce the operation noise by about 2 dB as compared with the conventional
air conditioner. That is, in the case of Fig. 5, the operation noise is reduced to
48.3dB whereas in the case of Fig. 6, the operation noise is equal to 50.3dB.
[0024] The actual dimension of the air conditioners used for this noise test was as follows
(see Fig. 2):
dimension of the unit body 22 in the direction of the longitudinal axis L1 direction
: H1 = 1050mm;
dimension of the heat exchanger 38 : H2 = 900mm;
dimension of the unit body 22 in the direction of the lateral (short) axis L2 direction
: W2 = 610mm; and
displacement distance of the shaft center: L3 = 100mm.
[0025] In short, according to this embodiment, it has been found out from various noise
tests that if the shaft center of the fan is displaced in any direction, the operation
noise can be reduced irrespective of the bending shape of the heat exchanger 38.
[0026] The present invention is not limited to the above embodiment, and various modifications
may be made without departing from the subject matter of the present invention. For
example, the above-mentioned embodiment relates to a four-direction air blow-out type
air conditioner 10, however, the present invention is applicable to any other type
air conditioners, such as a two-direction air blow-out type air conditioner or the
like.
[0027] As described above, according to the present invention, the heat exchanger is bent
so as to surround the fan, and the shaft center of the fan is eccentrically displaced
from the center of the heat exchanger or displaced from the center of the heat exchanger
toward the partition plate side. Therefore, the turbulence or eddy of the air which
is blow out from the fan can be suppressed, so that the operation noise can be reduced.
1. An air conditioner (10) which includes a fan (26) and a heat exchanger (38) in a housing
(22), said heat exchanger (38) being bent so as to surround said fan (26),
characterized in that, said fan is a turbo fan for sucking in air and blowing out therethrough to four
sides of the heat exchanger (38), and the shaft center of said turbo fan (26) is disposed
eccentrically from the center of said heat exchanger (38).
2. The air conditioner (10) as claimed in claim 1, further including a partition plate
(28) for connecting pipe holding plates (49) of said heat exchanger (38) therethrough
and spatially partitioning the inside of said heat exchanger (38) and the outside
of said heat exchanger (38).
3. The air conditioner (10) as claimed in claim 2, wherein the shaft center of said fan
(26) is displaced eccentrically from the center of said heat exchanger (38) toward
said partition plate (28).
4. The air conditioner (10) as claimed in claim 1, wherein said heat exchanger (38) is
bent in a square, rectangular, elliptic or circular shape.
5. The air conditioner (10) as claimed in claim 1, wherein the shaft center of said fan
(26) is eccentrically displaced from the center of said heat exchanger (38) by 100
mm.
6. The air conditioner (10) as claimed in claim 2 or 3, further including
a decorative panel (14) having an air suction port through which the room air is
sucked in, and plural air blow-out ports (18) which are provided around said air suction
port and through which the heat-exchanged air is blown out into the room in plural
directions.
1. Klimaanlage (10) mit einem Gebläse (26) und einem Wärmetauscher (38) in einem Gehäuse
(22), wobei der Wärmetauscher (38) so gebogen ist, dass er das Gebläse (26) umgibt,
dadurch gekennzeichnet, dass das Gebläse ein Turbogebläse zum Ansaugen von Luft und zum Ausblasen zu vier Seiten
des Wärmetauschers (38) ist, wobei die Wellenmitte des Turbogebläses (26) exzentrisch
zu der Mitte des Wärmetauschers (38) angeordnet ist.
2. Klimaanlage (10) nach Anspruch 1, mit ferner einer Teilungsplatte (28) zum Verbinden
von Rohrhalteplatten (49) des Wärmetauschers (38) und zum räumlichen Unterteilen des
Inneren des Wärmetauschers (38) und des Äußeren des Wärmetauschers (38).
3. Klimaanlage (10) nach Anspruch 2, wobei die Wellenmitte des Gebläses (26) exzentrisch
zu der Mitte des Wärmetauschers (38) in Richtung auf die Teilungsplatte (28) angeordnet
ist.
4. Klimaanlage (10) nach Anspruch 1, wobei der Wärmetauscher (38) quadratisch, rechtwinklig,
elliptisch oder in Kreisform gebogen ist.
5. Klimaanlage (10) nach Anspruch 1, wobei die Wellenmitte des Gebläses (26) um 100 mm
exzentrisch zu der Mitte des Wärmetauschers (38) angeordnet ist.
6. Klimaanlage (10) nach Anspruch 2 oder 3 mit ferner
einem Dekorativpaneel (14) mit einer Luftsaugöffnung, durch die Raumluft angesaugt
wird, und mit einer Anzahl von Luftausblasöffnungen (18), die um die Luftansaugöffnung
angeordnet sind und durch die wärmegetauschte Luft in den Raum in eine Anzahl von
Richtungen ausgeblasen wird.
1. Climatiseur (10) qui comprend un ventilateur (26) et un échangeur de chaleur (38)
dans un caisson (22), le dit échangeur de chaleur (38) étant plié de façon à entourer
le dit ventilateur (26), caractérisé en ce que le dit ventilateur est un turbo-ventilateur pour aspirer de l'air et le refouler
vers quatre côtés de l'échangeur de chaleur (38), et l'axe de l'arbre du dit turbo-ventilateur
(26) est excentré par rapport au centre du dit échangeur de chaleur (38).
2. Climatiseur (10) selon la revendication 1, comprenant en outre une plaque de séparation
(28) pour connecter des plaques de maintien de tubes (49) du dit échangeur de chaleur
(38) et séparer spatialement l'intérieur du dit échangeur de chaleur (38) et l'extérieur
du dit échangeur de chaleur (38).
3. Climatiseur (10) selon la revendication 2, dans lequel l'axe de l'arbre du dit ventilateur
(26) est excentré par rapport au centre du dit échangeur de chaleur (38) vers la dite
plaque de séparation (28).
4. Climatiseur (10) selon la revendication 1, dans lequel le dit échangeur de chaleur
(38) est plié en une forme carrée, rectangulaire, elliptique ou circulaire.
5. Climatiseur (10) selon la revendication 1, dans lequel l'axe de l'arbre du dit ventilateur
(26) est excentré de 100 mm par rapport au centre du dit échangeur de chaleur (38).
6. Climatiseur (10) selon la revendication 2 ou 3, comprenant en outre un panneau décoratif
(14) comportant un orifice d'aspiration d'air à travers lequel l'air du local est
aspiré, et plusieurs orifices de soufflage d'air (18) qui sont prévus autour du dit
orifice d'aspiration d'air et à travers lesquels l'air après échange de chaleur est
soufflé vers le local dans plusieurs directions.