Technical Field
[0001] The present invention relates to an exhaust cabinet, and more particularly, to a
reverse oblique air curtain exhaust cabinet, where an oblique air curtain is formed
in a cabinet based on the principles of Aerodynamics so as to remove pollutants between
the oblique air curtain and rear plate and left and right lateral plates.
Background
[0002] A conventional exhaust cabinet includes a cabinet. On the upper end of the cabinet
is provided a shelter plate with an opening. In the rear of the cabinet, a flow-guide
plate is vertically disposed and the flow-guide plate is provided with a specially
designed opening. Through the opening of the shelter plate and the opening of the
flow-guide plate in the rear of the cabinet, harmful gas can be drawn out by using
an air-extraction machine and ducts. When the exhaust cabinet is used, the air-extraction
machine should be operated correspondingly in order to continue air extraction. During
this moment, the door of the cabinet should not be closed completely or an opening
should be provided at the doorsill in advance in order to prevent from free-running
and consequent burning of a motor resulting from failing to supplying air. Besides,
when in use, it is usually necessary to open the door of the cabinet to an approximate
height to facilitate operators stretching their hands into the cabinet for experimental
operations. However, when the door of the conventional exhaust cabinet is open, based
on the principles of Aerodynamics, harmful gas within the cabinet may escape easily
around the peripheries of the door. Moreover, the leakage may be even severer when
operators are opening or closing the door or stand in front of the open cabinet for
experimental operations, or when there are ambient drafts or there are people walking
by. The main reason of the leakage is that vortex and turbulence are easily formed
around the peripheries of the cabinet door and around operators' chests. The vortex
and turbulence may result in the mass and momentum exchange between the inside and
the outside of the cabinet. Therefore, the leakage of the pollutants in the cabinet
is hardly avoidable. Unfortunately, there is nearly no conventional exhaust cabinet
can be used without opening and closing its door. In other words, operators can operate
their experiments only when the cabinet is open. Besides, the exhaust cabinet is scarcely
placed in the environment where there is no ambient air turbulence or there are no
people walking by. As a result, in the laboratories, factories, or buildings using
the conventional exhaust cabinets, people usually smell the sour odor emitted from
chemicals because pollutants continue leaking from the cabinets. Operators and people
working thereby may get used to the odor and long-term chemical pollution occurs.
[0003] In order to solve the leakage problem resulting from using above conventional exhaust
cabinet, a push-pull type exhaust cabinet was developed by US patent (
US7,318,771). As shown in Figs. 8 and 9 herein, the push-pull type exhaust cabinet "a" mainly
includes a cabinet "b". A space is formed in front of the cabinet "b" while an air-extraction
slot "c" is formed at the lower part of the front end of the cabinet "b". Besides,
a screen board "d" is provided at the upper part of the cabinet "b" for natural air
supply. The upper part "e1" of a bi-layered hollow cabinet door "e" is fixed to two
sides of the front end of the cabinet "b" while the lower part "e2" thereof is designed
to be telescopic, that is, is able to move upward or downward relative to the upper
part "e1". When the lower part "e2" is pulled upward, the front end of the cabinet
"b" can be closed. Moreover, an air blow slot "e3" is formed in the lower part "e2".
When a transverse fan "f" is provided to blow air downward through the air blow slot
"e3" while an air-extraction device "g" is provided to draw in the air through the
air-extraction slot "c", an air curtain "h" can be formed between the air blow slot
"e3" and the air-extraction slot "c" that are disposed correspondingly to each other
in order to remove harmful gas.
[0004] The left, right, and rear sides of the cabinet of the push-pull type exhaust cabinet
are completely closed to prevent from the leakage of harmful gas while the front side
thereof is provided with an open space for operation. However, in practice, because
the air curtain forms at the interface of the cabinet door's opening, ambient air
turbulence evoked by operators' operation or other factors in the outer environment
may result in the leakage of pollutant gas. For example, when the position at which
the pollutant source is released is too high or the hands of an operator are fairly
close to the air blow source of the bi-layered cabinet door, it may evoke some problems,
such as a problem that the internal space of the cabinet is insufficient, another
problem that the air extraction ability should be greatly elevated, or still another
problem that the pollutants may leak through the hands of the operator. Moreover,
under the condition of producing high-temperature harmful gas or of emergency, it
is necessary to decrease the extent of the opening of the cabinet door of the push-pull
type exhaust cabinet and increase the amount of air extraction. These are all the
shortcomings required to overcome.
FR 2684318 A1 discloses a reverse oblique air curtain exhaust cabinet according to the preamble
of claim 1, comprising a cabinet having a number of plates defining a space, wherein
an opening is provided at a lower part of the front plate of the cabinet. The cabinet
includes an elongate air blow device, having an elongate air blow slot that is located
in front of the bottom plate of the cabinet and through which air is blown upward
at an oblique angle toward the rear plate of the cabinet.
The cabinet includes also an air-extraction hood, located in the space of the cabinet
and including an elongate air-extraction part that has an opening facing downward
and being connected with an air-extraction machine, wherein the elongate air-extraction
part is parallel to the elongate air blow slot in a way that the elongate air-extraction
part is above and spaced from the elongate air blow slot toward the rear plate of
the cabinet, so that an oblique air curtain that is nearly two-dimensional is formed
between the elongate air-extraction part and the elongate air blow slot when the air-extraction
machine is operated.
[0005] In order to overcome above shortcomings, inventor had the motive to study and develop
the present invention. After hard research and development, the inventor provides
a reverse oblique air curtain exhaust cabinet, by using which it is able to reduce
effectively the leakage of pollutants, to enhance the ability against the ambient
air turbulence, and to remove pollutants in a more energy-saving way.
Summary of the disclosure
[0006] An object of the present invention is to provide a reverse oblique air curtain exhaust
cabinet provided with an elongate air blow slot that is located in front of the bottom
plate of a cabinet and disposed with an elongate air-extraction part parallel to the
elongate air blow slot in a way that the elongate air-extraction part is above and
spaced from the elongate air blow slot, so that an oblique air curtain is formed to
remove pollutants between the oblique air curtain and rear plate and left and right
lateral plates and to enhance the ability against ambient air turbulence. Consequently,
the leakage of pollutants can be reduced.
[0007] Another object of the present invention is to provide a reverse oblique air curtain
exhaust cabinet provided with an air-extraction hood that is located in the space
of the cabinet in a way of being vertically movable relative to the cabinet. Consequently,
it is able to adjust the height of the space of the cabinet in order to handle pollutant
sources at different heights in an energy-saving way.
[0008] In order to achieve above objects, the present invention provides a reverse oblique
air curtain exhaust cabinet comprising a cabinet, an elongate air blow device, and
an air-extraction hood. The cabinet has a top plate, a bottom plate, a left lateral
plate, a right lateral plate, a front plate, and a rear plate, where above plates
define a space and an opening is provided below the front plate of the cabinet. The
elongate air blow device has an elongate air blow slot that is located in front of
the bottom plate of the cabinet and through which air is blown upward at an oblique
angle toward the rear plate of the cabinet. The air-extraction hood is located in
the space of the cabinet in a way of being vertically movable relative to the cabinet
and includes an elongate air-extraction part that has an air-extraction opening facing
downward and being disposed in the midst of the air-extraction hood and being connected
with an air-extraction machine. The elongate air-extraction part is parallel to the
elongate air blow slot in a way that the elongate air-extraction part is above and
spaced from the elongate air blow slot toward the rear plate of the cabinet. The air-extraction
hood includes a flange that is extended outward from the peripheries of the opening.
Consequently, an oblique air curtain that is nearly two-dimensional is formed between
the elongate air blow device and the elongate air-extraction part when the air-extraction
part and the elongate air blow device work.
[0009] In practice, the elongate air blow slot of the elongate air blow device is in communication
with a cross-flow fan, an air blower, or other fluid mechanisms capable of drawing
in air and is connected with a duct for outdoor operation. When a cross-flow fan is
used, it is placed under a counter top. If a storage cabinet is placed under the counter
top, the storage cabinet can be provided with plural openings for drawing in air from
outside to supply air to the cross-flow fan. If an air blower or other fluid mechanisms
are used, these can be connected with ducts for operation at suitable places or outdoors.
[0010] In practice, the air-extraction hood is in communication with a cross-flow fan, an
air blower, or other fluid mechanisms capable of extracting air and is connected with
a duct for operation at suitable places or outdoors.
[0011] In practice, the front end and the rear end of the flange are respectively provided
with a rail while the front plate and the rear plate are respectively provided with
a tract for being connected with a corresponding rail, so that the air-extraction
hood is vertically movable in the space.
[0012] In practice, the air-extraction hood further includes a positioning plate fixed above
the flange. The front end and the rear end of the positioning plate are respectively
provided with a rail while the front plate and the rear plate are respectively provided
with a tract for being connected with a corresponding rail, so that the air-extraction
hood is vertically movable in the space.
[0013] The following detailed description, given by way of examples or embodiments, will
best be understood in conjunction with the accompanying drawings.
Brief Description of the Drawings
[0014] Fig. 1 shows a front side cross-sectional view of a first embodiment of the present
invention.
[0015] Fig. 2 shows a lateral side cross-sectional view of the first embodiment of the present
invention.
[0016] Figs. 3 and 4 show the use of the first embodiment of the present invention.
[0017] Fig. 5 shows a cross-sectional view of the present invention where there are plural
air-extraction openings.
[0018] Fig. 6 is a schematic view of the present invention showing that the air-extraction
hood is vertically movable in the space of the cabinet.
[0019] Fig. 7 shows the use of a second embodiment of the present invention.
[0020] Fig. 8 shows a front side view of a conventional push-pull type exhaust cabinet.
[0021] Fig. 9 shows a cross-sectional view of the conventional push-pull type exhaust cabinet.
Detailed Description
[0022] Please refer to Figs. 1 and 2 showing a first embodiment of a reverse oblique air
curtain exhaust cabinet 1 that comprises a cabinet 2, an elongate air blow device
3, and an air-extraction hood 4.
[0023] The cabinet 2 is generally in rectangular shape. The lower part of the cabinet 2
is provided with a storage cabinet 21 for storage purpose. The storage cabinet 21
has legs for supporting the cabinet 2. The cabinet 2 has a top plate 22, a bottom
plate 23, a left lateral plate 24, a right lateral plate 25, a front plate 26, and
a rear plate 27. After being assembled together, above plates define a space 28 within
the cabinet 2. The front plate 26 and the rear plate 27 are respectively provided
with a rail 261, 271. The left side and the right side of the front end of the cabinet
2 are respectively provided with an upright post 29 for positioning respectively the
left and right sides of the front plate 26. An opening 262 is formed at the lower
part of the front plate 26. Parts of the upright posts 29 near the opening are designed
in a streamline shape or a curved shape in order to reduce the turbulence and the
interference that are produced during air is extracted in the opening 262. A door
263 overlaps partially the front plate 26 for closing most of the opening 262 and
is vertically movable relative to the front plate 26 for controlling the opening degree
of the door 263.
[0024] The elongate air blow device 3 has an elongate air blow slot 32 that is located in
front of the bottom plate 23 of the cabinet 2 and has an opening 321. The opening
321 is roughly in elongate rectangular shape. Besides, the elongate air blow slot
32 is in communication with an air blower that is used as an air blow device 31. By
means of the air blow device 31, through the opening 321, a two-dimensional air jet
is blown upward toward the rear plate 27 of the cabinet 2. In practice, the air blow
device 31 can be replaced with a cross-flow fan or other fluid mechanisms. When the
air blow device 31 is an air blower or other fluid mechanisms, it is connected with
a duct for operation at suitable places or outdoors. If the air blow device 31 is
a cross-flow fan, the storage cabinet 21 is provided with plural openings at the peripheries
thereof for drawing outside air into the storage cabinet 21 to supply air to the cross-flow
fan.
[0025] The air-extraction hood 4 includes an elongate air-extraction part 41, a flange 42,
and a positioning plate 43. The positioning plate 43 can be a support frame. The elongate
air-extraction part 41 forms an air-extraction opening 411 facing downward. The air-extraction
opening 411 is roughly in elongate rectangular shape. The upper end of elongate air-extraction
part 41 is upward connected with an air-extraction machine 45 via a telescopic tube
44 for extracting air and guiding the air in the cabinet 2 to flow upward. The telescopic
tube 44 can be replaced with plural sleeves. The air-extraction machine 45 can be
a drawing fan, air blower, or other fluid mechanisms capable of extracting air and
can be connected with a duct for operation at suitable places or outdoors. Moreover,
the elongate air-extraction part 41 is parallel to the elongate air blow slot 32 in
a way that the elongate air-extraction part 41 is above and spaced from the elongate
air blow slot 32 toward the rear plate 27 of the cabinet 2. When the air-extraction
machine 45 and the air blow device 31 are synchronically operated, air jet is blown
upward through the opening 321 and is extracted into the air-extraction opening 411,
so that an oblique air curtain 5 (as shown in Figs.3 and 4) that is nearly two-dimensional
is formed between the elongate air-extraction part 41 and the elongate air blow slot
32. Consequently, the pollutants between the oblique air curtain 5 and the rear plate
27 and left and right lateral plates 24, 25 of the cabinet 2 are moved upward by stable
airflow into the air-extraction hood 4 and then discharged outwards via the air-extraction
opening 411.
[0026] The flange 42 extends outward from the peripheries of the elongate air-extraction
part 41 and is used to prevent pollutants from moving upward and to guide the pollutants
into the air-extraction opening 411. As shown in Fig.5, the elongate air-extraction
part 41 has plural air-extraction openings 411 and the air-extraction openings 411
are parallel to each other. Besides, the air-extraction opening 411 can be designed
in grid pattern, by which the pollutants can be extracted as well.
[0027] As shown in Fig.6, the positioning plate 43 is used to position and fasten the air-extraction
hood 4 with the flange 42. The front end and the rear end of the positioning plate
43 are respectively provided with a rail 431, 432. These two rails 431, 432 are located
corresponding to the rails 261, 271 located at the front plate 26 and the rear plate
27, so as to make the air-extraction hood 4 vertically movable in the space 28 of
the cabinet 2. Besides, the rails 431, 432 of the positioning plate 43 also can be
provided directly at the front and rear ends of the flange 42 to be corresponding
to the rails 261, 271 located at the front plate 26 and the rear plate 27, so as to
make the air-extraction hood 4 vertically movable in the space 28 of the cabinet 2.
In practice, the rails 261, 271 also can be disposed on the left and right lateral
plates 24, 25 while the left and right ends of the support frame or the positioning
plate 43 are respectively disposed with a rail 431, 432. Moreover, the air-extraction
hood 4 can be moved upward or downward by means of a suspension cord or a counter
weight mechanism in a mechanically manual, electrical, pneumatic, or oil hydraulic
way.
[0028] In practice, the left and right lateral plates 24, 25 are not air permeable. However,
the left and right lateral plates 24, 25 also can be provided with plural air holes
or slots to draw air into the cabinet 2 for supplying air. Accordingly, pollutants
can be carried by stable airflow upward to the air-extraction hood 4 and discharged
there from.
[0029] As shown in Fig. 7, a second embodiment of the reverse oblique air curtain exhaust
cabinet according to the present invention is shown. In this embodiment, a rear elongate
air blow slot 6 is further provided in the rear of the bottom plate 23 of the cabinet
2. The rear elongate air blow slot 6 is parallel to the elongate air blow slot 32.
Through the rear elongate air blow slot 6, air jet is blown upward toward the elongate
air-extraction part 41. Thereby, when a two-dimensional airflow is respectively blown
out from the elongate air blow slot 32 and the rear elongate air blow slot 6 and the
two airflows are extracted upward into the two-dimensional air-extraction opening
411, two oblique two-dimensional air curtains 5, 5' are shown in the side view of
the fluid field. Therefore, the pollutants moved upward from the pollutant source
9 on the bottom plate 23 can be discharged upward. In practice, the rear plate 27
of the cabinet 2 also can be made air permeable in order to form two oblique two-dimensional
air curtains 5, 5'.
[0030] Therefore, the present invention has following advantages:
- 1. According to the present invention, one or two oblique two-dimensional air curtains
can be formed. Thereby, it is capable of restraining pollutants within the cabinet,
enhancing the ability against ambient air turbulence, and removing pollutants effectively
in order to reduce the leakage of the pollutants.
- 2. According to the present invention, the air-extraction hood is vertically movable
in the space of the cabinet. Thereby, it is able to handle pollutant sources at different
heights flexibly. The pollutants at a position of relatively lower height can be handled
in an energy-saving way by decreasing the height of the air-extraction hood in the
space. The pollutants at a position of relatively higher height in the space also
can be handled in an energy-saving way by elevating the air-extraction hood close
to the pollutant source.
- 3. According to the present invention, through the upper elongate air-extraction opening,
the pollutant gas that is at high temperature and may rush upward as a result of buoyancy
effect can be removed safely.
[0031] As disclosed in the above description and attached drawings, the present invention
can provide a reverse oblique air curtain exhaust cabinet capable of reducing the
escape of pollutants effectively, enhancing the ability against the ambient air turbulence,
and removing pollutants in a more energy-saving way. It is new and can be put into
industrial use.
[0032] Although the embodiments of the present invention have been described in detail,
many modifications and variations may be made by those skilled in the art from the
teachings disclosed hereinabove.
1. A reverse oblique air curtain exhaust cabinet, comprising:
a cabinet (2), having a top plate (22), a bottom plate (23), a left lateral plate
(24), a right lateral plate (25), a front plate (26), and a rear plate (27), where
above plates define a space (28), and an opening (262) is provided at the lower part
of the front plate (26) of the cabinet (2);
an elongate air blow device (3), having an elongate air blow slot (32) that is located
in front of the bottom plate (23) of the cabinet (2) and through which air is blown
upward at an oblique angle toward the rear plate of the cabinet; and
an air-extraction hood (4), located in the space of the cabinet and including an elongate
air-extraction part (41), the elongate air-extraction part (41) having an opening
(411) facing downward and being connected with an air-extraction machine (45), where
the elongate air-extraction part (41) is parallel to the elongate air blow slot (32)
in a way that the elongate air-extraction part (41) is above and spaced from the elongate
air blow slot (32) toward the rear plate (27) of the cabinet (2), so that an oblique
air curtain that is nearly two-dimensional is formed between the elongate air-extraction
part (41) and the elongate air blow slot (32) when the air-extraction machine (45)
is operated, characterised in that the air-extraction hood (4) is vertically movable relative to the cabinet (2), with
the downward facing opening (411) disposed in the midst of the air-extraction hood
and in that the air-extraction hood includes a flange that is extended outward from the peripheries
of the opening.
2. The reverse oblique air curtain exhaust cabinet as claimed in claim 1, wherein a door
of the cabinet partially overlaps the front plate for closing most part of the opening
and the door is slidable vertically in order to control the opening of the door.
3. The reverse oblique air curtain exhaust cabinet as claimed in claim 1 or 2, wherein
the elongate air blow slot (32) of the elongate air blow device (31) is in communication
with an air blow device.
4. The reverse oblique air curtain exhaust cabinet as claimed in claim 1 or 2, wherein
the elongate air-extraction part (41) is connected with the air-extraction device
via a telescopic tube (44).
5. The reverse oblique air curtain exhaust cabinet as claimed in claim 1 or 2, wherein
the left lateral plate and the right lateral plate are respectively provided with
a hole through which air flows in naturally.
6. The reverse oblique air curtain exhaust cabinet as claimed in claim 1 or 2, wherein
the elongate air-extraction part is provided with plural air-extraction openings (411)
that are parallel to each other.
7. The reverse oblique air curtain exhaust cabinet as claimed in claim 1 or 2, wherein
the front end and the rear end of the flange are respectively provided with a rail;
the front plate and the rear plate are respectively provided with a tract for being
connected with a corresponding rail, so that the air-extraction hood is vertically
movable in the space.
8. The reverse oblique air curtain exhaust cabinet as claimed in claim 1 or 2, wherein
the air-extraction hood further includes a positioning plate fixed above the flange;
the front end and the rear end of the positioning plate are respectively provided
with a rail; the front plate and the rear plate are respectively provided with a tract
for being connected with a corresponding rail, so that the air-extraction hood is
vertically movable in the space.
9. The reverse oblique air curtain exhaust cabinet as claimed in claim 1 or 2, further
including a rear elongate air blow slot that is located in the rear of the bottom
plate of the cabinet and is parallel to the elongate air blow slot; where through
the rear elongate air blow slot, air is blown upward toward the elongate air-extraction
part.
1. Rückwärts schräg gerichtetes Luftvorhangabsauggehäuse mit den folgenden Bestandteilen:
einem Gehäuse (2) mit einer Kopfplatte (22), einer Bodenplatte (23), einer linken
Seitenplatte (24), einer rechten Seitenplatte (25), einer Frontplatte (26) und einer
Rückenplatte (27), wobei die vorgenannten Platten einen Raum (28) definieren und am
unteren Teil der Frontplatte (26) des Gehäuses (2) eine Öffnung (262) angeordnet ist;
einer langgestreckten Luftgebläseeinrichtung (3), die einen langgestreckten Luftblasspalt
(32) aufweist, der an der Vorderseite der Bodenplatte (23) des Gehäuses (2) angeordnet
ist und durch den Luft in einem schrägen Winkel nach oben in Richtung auf die Rückenplatte
des Gehäuses geblasen wird; und
einer Luftabsaughaube (4), die in dem Raum des Gehäuses angeordnet ist und ein langgestrecktes
Luftabsaugteil (41) aufweist,
wobei das langgestreckte Luftabsaugteil (41) eine Öffnung (411) aufweist, die nach
unten gerichtet ist und mit einer Luftabsaugmaschine (45) verbunden ist, wobei das
langgestreckte Luftabsaugteil (41) parallel zu dem langgestreckten Luftblasspalt (32)
so angeordnet ist, dass das langgestreckte Luftabsaugteil (41) oberhalb und beabstandet
von dem langgestreckten Luftblasspalt (32) in Richtung auf die Rückenplatte (27) des
Gehäuses (2) angeordnet ist, so dass sich ein fast zweidimensional ausgebildeter schräg
verlaufender Luftvorhang zwischen dem langgestreckten Luftabsaugteil (41) und dem
langgestreckten Luftblasspalt (32) bildet, wenn die Luftabsaugmaschine (45) in Betrieb
ist, dadurch gekennzeichnet, dass die Luftabsaughaube (4) relativ zum Gehäuse vertikal beweglich ist, wobei die nach
unten gerichtete Öffnung (411) in der Mitte der Luftabsaughaube angeordnet ist, und
dass die Luftabsaughaube einen Flansch umfasst, der nach außen von der Peripherie
der Öffnung ragt.
2. Rückwärts schräg gerichtetes Luftvorhangabsauggehäuse nach Anspruch 1, bei dem eine
Tür des Gehäuses die Frontplatte teilweise überlappt, um den größten Teil der Öffnung
zu schließen, und die Tür vertikal gleiten kann, um die Öffnung der Tür zu kontrollieren.
3. Rückwärts schräg gerichtetes Luftvorhangabsauggehäuse nach Anspruch 1 oder 2, bei
dem der langgestreckte Luftblasspalt (32) der langgestreckten Luftblaseinrichtung
(31) mit einer Luftblaseinrichtung in Verbindung steht.
4. Rückwärts schräg gerichtetes Luftvorhangabsauggehäuse nach Anspruch 1 oder 2, bei
dem das langgestreckte Luftabsaugteil (41) mit der Luftabsaugeinrichtung über ein
Teleskoprohr (44) verbunden ist.
5. Rückwärts schräg gerichtetes Luftvorhangabsauggehäuse nach Anspruch 1 oder 2, bei
dem die linke Seitenplatte und die rechte Seitenplatte jeweils ein Loch aufweisen,
durch das Luft natürlich einfließen kann.
6. Rückwärts schräg gerichtetes Luftvorhangabsauggehäuse nach Anspruch 1 oder 2, bei
dem das langgestreckte Luftabsaugteil eine Mehrzahl von Luftabsaugöffnungen (411)
aufweist, die parallel zueinander angeordnet sind.
7. Rückwärts schräg gerichtetes Luftvorhangabsauggehäuse nach Anspruch 1 oder 2, bei
dem das vordere Ende und das hintere Ende des Flansches jeweils mit einer Schiene
versehen sind, und wobei die Frontplatte und die Rückenplatte jeweils ein Teil aufweisen,
um mit einer zugehörigen Schiene verbunden zu werden, so dass die Luftabzugshaube
vertikal in dem Raum verschiebbar ist.
8. Rückwärts schräg gerichtetes Luftvorhangabsauggehäuse nach Anspruch 1 oder 2, bei
dem die Luftabzugshaube weiterhin eine oberhalb des Flansches fixierte Positionierplatte
umfasst; wobei das vordere Ende und das hintere Ende der Positionierplatte jeweils
mit einer Schiene versehen sind; wobei die Frontplatte und die Rückenplatte jeweils
mit einem Teil für die Verbindung mit einer zugehörigen Schiene versehen sind, so
dass die Luftabzugshaube vertikal im Raum verschiebbar ist.
9. Rückwärts schräg gerichtetes Luftvorhangabsauggehäuse nach Anspruch 1 oder 2, das
weiterhin einen rückwärtigen langgestreckten Ausblasspalt umfasst, der an der Rückseite
der Bodenplatte des Gehäuses angeordnet ist und parallel zum Luftausblasspalt verläuft;
wobei durch den rückwärtigen Luftausblasspalt Luft nach oben in Richtung auf das langgestreckte
Luftabsaugteil geblasen wird.
1. Armoire d'échappement de rideau d'air oblique inversé, comprenant :
une armoire (2) qui présente une plaque supérieure (22), une plaque inférieure (23),
une plaque latérale gauche (24), une plaque latérale droite (25), une plaque avant
(26) et une plaque arrière (27), étant précisé que ces plaques définissent un espace
(28) et qu'une ouverture (262) est prévue sur la partie inférieure de la plaque avant
(26) de l'armoire (2),
un dispositif de projection d'air allongé (3) qui présente une fente de projection
d'air oblongue (32) qui est située devant la plaque inférieure (23) de l'armoire (2)
et par laquelle de l'air est projeté vers le haut suivant un angle oblique en direction
de la plaque arrière de l'armoire ; et
une hotte d'extraction d'air (4) située dans l'espace de l'armoire et contenant une
partie d'extraction d'air allongée (41), la partie d'extraction d'air allongée (41)
ayant une ouverture (411) dirigée vers le bas, et étant reliée à une machine d'extraction
d'air (45), étant précisé que la partie d'extraction d'air allongée (41) est parallèle
à la fente de projection d'air allongée (32) de manière à se trouver au-dessus de
ladite fente (32) et à être espacée de celle-ci vers la plaque arrière (27) de l'armoire,
(2), de sorte qu'un rideau d'air oblique quasiment bidimensionnel est formé entre
la partie d'extraction d'air allongée (41) et la fente de projection d'air allongée
(32) quand la machine d'extraction d'air (45) fonctionne,
caractérisée en ce que la hotte d'extraction d'air (4) est mobile verticalement par rapport à l'armoire
(2), avec l'ouverture (411) dirigée vers le bas qui est disposée au milieu de ladite
hotte (4), et en ce que la hotte d'extraction d'air comprend une collerette qui s'étend vers l'extérieur,
à partir de la périphérie de l'ouverture.
2. Armoire d'échappement de rideau d'air oblique inversé telle que revendiquée dans la
revendication 1, étant précisé qu'une porte de l'armoire couvre en partie la plaque
avant pour fermer la majeure partie de l'ouverture, et que la porte est apte à coulisser
verticalement afin de commander l'ouverture de la porte.
3. Armoire d'échappement de rideau d'air oblique inversé telle que revendiquée dans la
revendication 1 ou 2, étant précisé que la fente de projection d'air allongée (32)
du dispositif de projection d'air allongé (31) communique avec un dispositif de projection
d'air.
4. Armoire d'échappement de rideau d'air oblique inversé telle que revendiquée dans la
revendication 1 ou 2, étant précisé que la partie d'extraction d'air allongée (41)
est reliée au dispositif d'extraction d'air par l'intermédiaire d'un tube télescopique
(44).
5. Armoire d'échappement de rideau d'air oblique inversé telle que revendiquée dans la
revendication 1 ou 2, étant précisé que la plaque latérale gauche et la plaque latérale
droite sont pourvues chacune d'un trou par lequel l'air entre naturellement.
6. Armoire d'échappement de rideau d'air oblique inversé telle que revendiquée dans la
revendication 1 ou 2, étant précisé que la partie d'extraction d'air allongée est
pourvue de plusieurs ouvertures d'extraction d'air (411) qui sont parallèles.
7. Armoire d'échappement de rideau d'air oblique inversé telle que revendiquée dans la
revendication 1 ou 2, étant précisé que l'extrémité avant et l'extrémité arrière de
la collerette sont pourvues chacune d'un rail ; la plaque avant et la plaque arrière
sont pourvues chacune d'un conduit pour être reliées à un rail correspondant, de sorte
que la hotte d'extraction d'air est mobile verticalement dans l'espace.
8. Armoire d'échappement de rideau d'air oblique inversé telle que revendiquée dans la
revendication 1 ou 2, étant précisé que la hotte d'extraction d'air comprend par ailleurs
une plaque de positionnement fixée au-dessus de la collerette ; l'extrémité avant
et l'extrémité arrière de la plaque de positionnement sont pourvues chacune d'un rail
; la plaque avant et la plaque arrière sont pourvues chacune d'un conduit pour être
reliées à un rail correspondant, de sorte que la hotte d'extraction d'air est mobile
verticalement dans l'espace.
9. Armoire d'échappement de rideau d'air oblique inversé telle que revendiquée dans la
revendication 1 ou 2, comprenant par ailleurs une fente de projection d'air allongée
arrière qui est située à l'arrière de la plaque inférieure de l'armoire et qui est
parallèle à ladite fente de projection d'air ; étant précisé que par la fente de projection
d'air arrière de l'air est projeté vers le haut en direction de la partie d'extraction
d'air allongée.