FIELD OF THE INVENTION
[0001] The present invention relates to an exhaust air blow-out device adapted for mounting
to the outer wall of a building.
BACKGROUND OF THE INVENTION
[0002] In prior art is known an exhaust air blow-out device. The exhaust air blow-out device
comprises a connector collar. The connector collar has a circular cross-section and
an inner surface having an inner first diameter. The connector collar is connectable
to an exhaust air channel of a mechanical house ventilation system to form a part
of the exhaust air channel. A throttling device is arranged inside the connector collar
for increasing blow-out rate of the exhaust air. The current building regulations
require that the blow-out rate should be at least 5 m/s so that the exhaust air does
not mix with the fresh intake air, the intake opening being often located near to
the exhaust air blow-out device. However, exhaust air rate coming via the exhaust
air channel from the mechanical house ventilation system to the blow-out device may
be less than the required 5 m/s. Therefore, a throttling device is needed to increase
the blow-out rate of the exhaust air. The problem with the prior art exhaust air blow-out
devices is that the throttling rate of the throttling device is fixed and not variable
depending on the prevailing exhaust air rate coming from the mechanical house ventilation
system. A further problem is that the throttling device causes noise.
[0003] As another example,
GB 2338547 A discloses an air regulating valve for ventilated cage and rack system.
OBJECTIVE OF THE INVENTION
[0004] The objective of the invention is to alleviate the disadvantages mentioned above.
[0005] In particular, it is an objective of the present invention to provide an exhaust
air blow-out device providing means for adjusting the blow-out rate of the exhaust
air.
[0006] Further, it is an objective of the present invention to provide an exhaust air blow-out
device which is optimized to reduce noise caused by blow-out of the exhaust air.
SUMMARY OF THE INVENTION
[0007] The present invention provides an exhaust air blow-out device adapted for mounting
to the outer wall of a building. The exhaust air blow-out device comprises a connector
collar. The connector collar has a circular cross-section and an inner surface having
an inner first diameter. The connector collar is connectable to an exhaust air channel
of a mechanical house ventilation system to form a part of the exhaust air channel.
The exhaust air blow-out device comprises a throttling device. The throttling device
is arranged inside the connector collar for increasing blow-out rate of the exhaust
air. According to the invention the throttling device comprises a nose cone element
having an outer contour with aerodynamic shape of a nose cone. The nose cone element
is arranged concentrically inside the connector collar. The nose cone element comprises
a tip directed towards the exhaust air flow and a circular trailing edge having a
second diameter smaller than the first diameter defining a circular blow-out gap between
the inner surface of the connector collar and the trailing edge of the nose cone element
the exhaust air being blown out via said circular gap forming a throttling means the
second diameter defining the throttling rate. The nose cone element comprises a tip
section and a set of adjusting sections connectable successively with the tip section
to form an assembly forming the nose cone element having a desired second diameter
of the trailing edge. Each of the adjusting sections have an outer contour being a
part of said nose cone shape and gradually increasing second diameters of the trailing
edges, so that the number of adjusting sections can be varied for adjusting the exhaust
air blow-out rate by adjusting the face area of the blow-out gap.
[0008] The advantage of the invention is that due to the aerodynamic nose cone shape the
throttling device has a small resistance of flow while being able to increase the
blow-out rate of the exhaust air. Further, the aerodynamic nose cone shape reduces
noise of the blow-out exhaust air flow. The set of adjusting elements enables adjusting
the throttling rate to optimal for the exhaust air blow so that exhaust air blow-out
rate can always be adjusted to be at least 5 m/s although the exhaust air volume flow
rate can vary in the range e.g. 20 - 120 l / s depending on the output of the mechanical
house ventilation system used. Same exhaust air blow-out device can be used for different
the mechanical house ventilation systems.
[0009] In an embodiment of the exhaust air blow-out device, the number of the adjusting
sections in the nose cone element is selected in order to obtain the exhaust air blow-out
rate of at least 5 m/s.
[0010] In an embodiment of the exhaust air blow-out device, the nose cone element comprises
an elongated fixing bolt, and that the tip section and the adjusting sections each
comprises a central hole through which the fixing bolt can extend to connect the tip
section and a selected number of adjusting sections together.
[0011] In an embodiment of the exhaust air blow-out device, the exhaust air blow-out device
comprises a weather guard housing connectable to the outer wall of the building, the
weather guard housing comprising a blow-out opening, and a grate connected to the
weather-guard housing at the blow-out opening.
[0012] In an embodiment of the exhaust air blow-out device, grate comprises a central hub
having a central hole through which the fixing bolt can extend to connect the grate,
the tip section and the selected adjusting sections together.
[0013] In an embodiment of the exhaust air blow-out device, the tip section and/or at least
one of the adjusting sections comprises a snap-fit joint for mutual interconnection.
[0014] In an embodiment of the exhaust air blow-out device, the nose cone shape of the nose
cone element is elliptical.
[0015] In an embodiment of the exhaust air blow-out device, the nose cone shape of the nose
cone element is parabolic.
[0016] It is to be understood that the embodiments of the invention described above may
be used in any combination with each other. Several of the embodiments may be combined
together to form a further embodiment of the invention.
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The accompanying drawings, which are included to provide a further understanding
of the invention and constitute a part of this specification, illustrate embodiments
of the invention and together with the description help to explain the principles
of the invention. In the drawings:
Figure 1 shows an exploded view of the exhaust air blow-out device according to an
embodiment of the invention,
Figure 2 is a cross-section of the exhaust air blow-out device Figure 1 installed
to an outer wall of a building.
Figure 3 shows separately a tip section and a set of adjusting sections of the device
of Figure 1, and
Figures 4a-4f show six different configurations of the assemblies of the tip section
and adjusting sections assembled together.
DETAILED DESCRIPTION OF THE INVENTION
[0018] Figures 1 and 2 show an exhaust air blow-out device 1 adapted for mounting to the
outer wall W of a building. The exhaust air blow-out device 1 comprises a connector
collar 2. The connector collar 2 has a circular cross-section and an inner surface
3 having an inner first diameter D
1. As can be seen in Figure 2, the connector collar 2 is connectable to an exhaust
air channel 4 of a mechanical house ventilation system 5 to form a part of the exhaust
air channel 4. Further, the exhaust air blow-out device 1 comprises a throttling device
6. The throttling device 6 is arranged inside the connector collar 2 for increasing
the blow-out rate of the exhaust air,
[0019] The throttling device 6 comprises a nose cone element 7. The nose cone element 7
has a curved outer contour with aerodynamic shape of a nose cone. The nose cone element
7 is arranged concentrically inside the connector collar 2. The nose cone element
7 comprises a tip T directed towards the exhaust air flow and a circular trailing
edge 8; 8
1, 8
2, 8
3, 8
4, 8
5. The circular trailing edge 8; 8
1, 8
2, 8
3, 8
4, 8
5. has a second diameter D
2-1 - D
2-6 which is smaller than the inner first diameter D
1 of the connector collar 2, so that a circular blow-out gap 9 is defined between the
inner surface 3 of the connector collar 2 and the trailing edge 8; 8
1, 8
2, 8
3, 8
4, 8
5 of the nose cone element 7. Thereby, the exhaust air is blown out via said circular
gap 9 forming a throttling means the second diameter D
2-1 - D
2-6 defining the throttling rate.
[0020] Also referring to Figures 3 and 4a-4f, the nose cone element 7 comprises a tip section
9 and a set S of adjusting sections 10, 11, 12, 13, 14 connectable successively with
the tip section 9 to form an assembly forming the nose cone element 7 which has a
desired second diameter D
2-1 - D
2-6 of the trailing edge 8. Each of the adjusting sections 10, 11, 12, 13, 14 have an
outer contour being a part of the nose cone shape and have gradually increasing second
diameters D
2-1 - D
2-6 of the trailing edges. As seen in Figures 4a-4f, the number of adjusting sections
in the nose one assembly can be varied for adjusting the exhaust air blow-out rate
by adjusting the face area of the blow-out gap 9.
[0021] The number of the adjusting sections 10, 11, 12, 13, 14 in the nose cone element
7 is selected in order to obtain the exhaust air blow-out rate of at least 5 m/s.
[0022] In Figure 4a the nose cone element 7 comprises only the tip section 9 having the
diameter D
2-1 of the trailing edge 8
1 defining the throttling rate. The throttling rate is at its smallest.
[0023] In Figure 4b the nose cone element 7 comprises the tip section 9 and first adjusting
section 10. The trailing edge 8
2 of the first adjusting section 10 has a diameter D
2-2, larger than diameter D
2-1, for defining the throttling rate.
[0024] In Figure 4c the nose cone element 7 comprises the tip section 9, the first adjusting
section 10 and second adjusting section 11. The trailing edge 8
3 of the second adjusting section 11 has a diameter D
2-3, larger than diameter D
2-2, for defining the throttling rate.
[0025] In Figure 4d the nose cone element 7 comprises the tip section 9, the first adjusting
section 10, the second adjusting section 11 and third adjusting section 12. The trailing
edge 8
4 of the third adjusting section 12 has a diameter D
2-4, larger than diameter D
2-3, for defining the throttling rate.
[0026] In Figure 4e the nose cone element 7 comprises the tip section 9, the first adjusting
section 10, the second adjusting section 11, the third adjusting section 12 and fourth
adjusting section 13. The trailing edge 8
5 of the fourth adjusting section 13 has a diameter D
2-5, larger than diameter D
2-4, for defining the throttling rate.
[0027] In Figure 4f the nose cone element 7 comprises the tip section 9, the first adjusting
section 10, the second adjusting section 11, the third adjusting section 12, the fourth
adjusting section 13 and the fifth adjusting section 14. The trailing edge 8
6 of the fifth adjusting section 14 has a diameter D
2-6, larger than diameter D
2-4, for defining the throttling rate.
[0028] Referring to Figures 1 and 2, the nose cone element 7 comprises an elongated fixing
bolt 15. The tip section 9 and the adjusting sections 10, 11, 12, 13, 14 each comprises
a central hole 16 through which the fixing bolt 15 can be inserted to connect the
tip section and a selected number of adjusting sections together.
[0029] As seen in Figures 1 and 2, the exhaust air blow-out device 1 comprises a weather
guard housing 17 which is connectable to the outer wall W of the building. The weather
guard housing 17 comprising a blow-out opening 18, and a grate 19 connected to the
weather guard housing 17 at the blow-out opening 18. The grate 19 comprises a central
hub 20 having a central hole 21 through which the fixing bolt 15 can extend to connect
the grate 19, the tip section 9 and the selected number of adjusting sections 10,
11, 12, 13, 14 together.
[0030] The tip section 9 and/or at least one of the adjusting sections 10, 11, 12, 13, 14
may be interconnected by snap-fit joints.
[0031] The nose cone element 7 may have elliptical, parabolic or any other suitable nose
cone shape.
[0032] Although the invention has been the described in conjunction with a certain type
of exhaust air blow-out device, it should be understood that the invention is not
limited to any certain type of exhaust air blow-out device. While the present invention
has been described in connection with a number of exemplary embodiments, and implementations,
the present invention is not so limited, but rather covers various modifications,
and equivalent arrangements, which fall within the scope of the claims.
1. An exhaust air blow-out device (1) adapted for mounting to the outer wall (W) of a
building, the exhaust air blow-out device (1) comprising
- a connector collar (2), the connector collar (2) having a circular cross-section
and an inner surface (3) having an inner first diameter (D1), the connector collar being connectable to an exhaust air channel (4) of a mechanical
house ventilation system (5) to form a part of the exhaust air channel, and
- a throttling device (6), the throttling device being arranged inside the connector
collar (2) for increasing blow-out rate of the exhaust air, characterized in that the throttling device (6) comprises a nose cone element (7) having an outer contour
with aerodynamic shape of a nose cone, the nose cone element (7) being arranged concentrically
inside the connector collar (2), the nose cone element (7) comprising a tip (T) directed
towards the exhaust air flow and a circular trailing edge (8; 81, 82, 83, 84, 85) having a second diameter (D2-1 - D2-6) smaller than the first diameter (D1) defining a circular blow-out gap (9) between the inner surface (3) of the connector
collar (2) and the trailing edge (8) of the nose cone element (7) the exhaust air
being blown out via said circular gap (9) forming a throttling means the second diameter
(D2-1 - D2-6) defining the throttling rate; and that the nose cone element (7) comprises a tip
section (9) and a set (S) of adjusting sections (10, 11, 12, 13, 14) connectable successively
with the tip section (9) to form an assembly forming the nose cone element (7) having
a desired second diameter (D2-1 - D2-6) of the trailing edge (8), each of the adjusting sections (10, 11, 12, 13, 14) having
an outer contour being a part of said nose cone shape and having gradually increasing
second diameters (D2-1 - D2-6) of the trailing edges, so that the number of adjusting sections can be varied for
adjusting the exhaust air blow-out rate by adjusting the face area of the blow-out
gap (9).
2. The exhaust air blow-out device according to claim 1, characterized in that the number of the adjusting sections (10, 11, 12, 13, 14) in the nose cone element
(7) is selected in order to obtain the exhaust air blow-out rate of at least 5 m/s.
3. The exhaust air blow-out device according to claim 1 or 2, characterized in that the nose cone element (7) comprises an elongated fixing bolt (15), and that the tip
section (9) and the adjusting sections (10, 11, 12, 13, 14) each comprises a central
hole (16) through which the fixing bolt (15) can extend to connect the tip section
and a selected number of adjusting sections together.
4. The exhaust air blow-out device according to any one of the claims 1 to 3, characterized in that the exhaust air blow-out device (1) comprises a weather guard housing (17) connectable
to the outer wall (W) of the building, the weather guard housing comprising a blow-out
opening (18), and a grate (19) connected to the weather guard housing (17) at the
blow-out opening (18).
5. The exhaust air blow-out device according to claim4 when dependent on claim 3, characterized in that the grate (19) comprises a central hub (20) having a central hole (21) through which
the fixing bolt (15) can extend to connect the grate (19), the tip section (9) and
the selected adjusting sections (10, 11, 12, 13, 14) together.
6. The exhaust air blow-out device according to any one of the claims 1 to 5, characterized in that the tip section (9) and/or at least one of the adjusting sections (10, 11, 12, 13,
14) comprises a snap-fit joint for mutual interconnection.
7. The exhaust air blow-out device according to any one of the claims 1 to 6, characterized in that the nose cone shape of the nose cone element (7) is elliptical.
8. The exhaust air blow-out device according to any one of the claims 1 to 6, characterized in that the nose cone shape of the nose cone element (7) is parabolic.
1. Abluftausblasvorrichtung (1), die zur Montage an der Außenwand (W) eines Gebäudes
ausgelegt ist, wobei die Abluftausblasvorrichtung (1) umfasst:
- einen Verbinderkragen (2), wobei der Verbinderkagen (2) einen kreisförmigen Querschnitt
und eine innere Oberfläche (3) mit einem inneren ersten Durchmesser (D1) hat, wobei der Verbinderkragen an einem Abluftkanal (4) eines mechanischen Hausventilationssystems
(5) verbindbar ist, um einen Teil des Abluftkanals zu bilden, und
- eine Drosselvorrichtung (6), wobei die Drosselvorrichtung innerhalb des Verbinderkragens
(2) zur Erhöhung der Ausblasrate der Abluft angeordnet ist,
dadurch gekennzeichnet, dass die Drosselvorrichtung (6) ein Nasenkonuselement (7) mit einer äußeren Kontur mit
einer aerodynamischen Gestalt eines Nasenkonus umfasst, wobei das Nasenkonuselement
(7) konzentrisch innerhalb des Verbinderkragens (2) angeordnet ist, wobei das Nasenkonuselement
(7) eine Spitze (T) umfasst, die in Richtung des Abluftstroms gerichtet ist, und eine
kreisförmige Hinterkante (8; 8
1, 8
2, 8
3, 8
4, 8
5) mit einem zweiten Durchmesser (D
2-1 - D
2-6) kleiner als der erste Durchmesser (D
1), was einen kreisförmigen Ausblasspalt (9) zwischen der inneren Oberfläche (3) des
Verbinderkragens (2) und der Hinterkante (8) des Nasenkonuselement (7) definiert,
wobei die Abluft über den kreisförmigen Spalt (9) ausgeblasen wird, der eine Drosseleinrichtung
bildet, wobei der zweite Durchmesser (D
2-1 - D
2-6) die Drosselrate definiert; und dass das Nasenkonuselement (7) einen Spitzenabschnitt
(9) und einen Satz (S) von Anpassabschnitten (10, 11, 12, 13, 14) umfasst, die sukzessive
mit dem Spitzenabstand (9) verbindbar sind, um eine Anordnung zu bilden, die das Nasenkonuselement
(7) mit einem gewünschten zweiten Durchmesser (D
2-1 - D
2-6) der Hinterkante (8) bildet, wobei jeder von den Anpassabschnitten (10, 11, 12, 13,
14) eine äußere Kontur hat, die ein Teil der Nasenkonusgestalt ist und schrittweise
zunehmende zweite Durchmesser (D
2-1 - D
2-6) der Hinterkanten hat, sodass die Zahl von Anpassabschnitten variiert werden kann,
um die Abluftausblasrate durch Anpassen der Anströmfläche des Ausblasspalts (9) anzupassen.
2. Abluftausblasvorrichtung nach Anspruch 1, dadurch gekennzeichnet, dass die Zahl der Anpassabschnitte (10, 11, 12, 13, 14) in dem Nasenkonuselement (7) derart
gewählt ist, dass eine Abluftausblasrate von wenigstens 5 m/s erhalten wird.
3. Abluftausblasvorrichtung nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass das Nasenkonuselement (7) einen länglichen Befestigungsbolzen (15) umfasst, und dass
der Spitzenabschnitt (9) und die Anpassabschnitte (10, 11, 12, 13, 14) jeweils ein
zentrales Loch (16) umfassen, durch das sich der Befestigungsbolzen (15) hindurch
erstrecken kann, um den Spitzenabschnitt und eine ausgewählte Zahl von Anpassabschnitten
miteinander zu verbinden.
4. Abluftausblasvorrichtung nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass die Abluftausblasvorrichtung (1) ein Wetterschutzgehäuse (17) umfasst, das mit der
Außenwand (W) des Gebäudes verbindbar ist, wobei das Wetterschutzgehäuse eine Ausblasöffnung
(18) umfasst, und ein Gitter (19), das mit dem Wetterschutzgehäuse (17) bei der Ausblasöffnung
(18) verbunden ist.
5. Abluftaufblasvorrichtung nach Anspruch 4 in Abhängigkeit von Anspruch 3, dadurch gekennzeichnet, dass das Gitter (19) eine zentrale Nabe (20) mit einem zentralen Loch (21) umfasst, durch
das sich der Befestigungsbolzen (15) hindurcherstrecken kann, um das Gitter (19),
den Spitzenabschnitt (9) und die gewählten Anpassabschnitte (10, 11, 12, 13, 14) miteinander
zu verbinden.
6. Abluftausblasvorrichtung nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass der Spitzenabstand (9) und/oder wenigstens einer der Anpassabschnitte (10, 11, 12,
13, 14) eine Schnappverbindung zur gegenseitigen Verbindung miteinander umfasst.
7. Abluftausblasvorrichtung nach einem der Ansprüche 1 bis 6, dadurch gekennzeichenet,
dass die Nasenkonusgestalt des Nasenkonuselements (7) elliptisch ist.
8. Abluftausblasvorrichtung nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass die Nasenkonusgestalt des Nasenkonuselements (7) parabolisch ist.
1. Dispositif de soufflage d'air d'évacuation (1) adapté pour être monté sur le mur extérieur
(W) d'un bâtiment, le dispositif de soufflage d'air d'évacuation (1) comprenant
- un collier connecteur (2), le collier connecteur (2) ayant une section transversale
circulaire et une surface intérieure (3) ayant un premier diamètre intérieur (D1), le collier connecteur pouvant être connecté à un canal d'air d'évacuation (4) d'un
système de ventilation de maison mécanique (5) pour faire partie du canal d'air d'évacuation,
et
- un dispositif d'étranglement (6), le dispositif d'étranglement étant agencé à l'intérieur
du collier connecteur (2) pour augmenter le taux de soufflage de l'air d'évacuation,
caractérisé en ce que le dispositif d'étranglement (6) comprend un élément de coiffe (7) ayant un contour
extérieur à forme aérodynamique d'une coiffe, l'élément de coiffe (7) étant agencé
de manière concentrique à l'intérieur du collier connecteur (2), l'élément de coiffe
(7) comprenant une pointe (T) dirigée vers le flux d'air d'évacuation et un bord de
fuite circulaire (8 ; 81, 82, 83, 84, 85) ayant un deuxième diamètre (D2-1 - D2-6) plus petit que le premier diamètre (D1) définissant un espace de soufflage circulaire (9) entre la surface intérieure (3)
du collier connecteur (2) et le bord de fuite (8) de l'élément de coiffe (7), l'air
d'évacuation étant soufflé par l'intermédiaire dudit espace circulaire (9) formant
un moyen d'étranglement, le deuxième diamètre (D2-1 - D2-6) définissant le taux d'étranglement ; et en ce que l'élément de coiffe (7) comprend une section de pointe (9) et un ensemble (S) de
sections de réglage (10, 11, 12, 13, 14) pouvant être connectées successivement à
la section de pointe (9) pour former un assemblage formant l'élément de coiffe (7)
ayant un deuxième diamètre souhaité (D2-1 - D2-6) du bord de fuite (8), chacune des sections de réglage (10, 11, 12, 13, 14) ayant
un contour extérieur qui fait partie de ladite forme de coiffe et ayant des deuxièmes
diamètres (D2-1 - D2-6) progressivement croissants des bords de fuite, de sorte que le nombre de sections
de réglage puisse être modifié pour régler le taux de soufflage d'air d'évacuation
en réglant la surface frontale de l'espace de soufflage (9).
2. Dispositif de soufflage d'air d'évacuation selon la revendication 1, caractérisé en ce que le nombre de sections de réglage (10, 11, 12, 13, 14) dans l'élément de coiffe (7)
est sélectionné afin d'obtenir le taux de soufflage d'air d'évacuation d'au moins
5 m/s.
3. Dispositif de soufflage d'air d'évacuation selon la revendication 1 ou 2, caractérisé en ce que l'élément de coiffe (7) comprend un boulon de fixation allongé (15), et en ce que la section de pointe (9) et les sections de réglage (10, 11, 12, 13, 14) comprennent
chacune un trou central (16) à travers lequel le boulon de fixation (15) peut s'étendre
pour connecter ensemble la section de pointe et un nombre sélectionné de sections
de réglage.
4. Dispositif de soufflage d'air d'évacuation selon l'une quelconque des revendications
1 à 3, caractérisé en ce que le dispositif de soufflage d'air d'évacuation (1) comprend un boîtier de protection
contre les intempéries (17) pouvant être connecté au mur extérieur (W) du bâtiment,
le boîtier de protection contre les intempéries comprenant une ouverture de soufflage
(18) et une grille (19) connectée au boîtier de protection contre les intempéries
(17) au niveau de l'ouverture de soufflage (18).
5. Dispositif de soufflage d'air d'évacuation selon la revendication 4 lorsqu'elle dépend
de la revendication 3, caractérisé en ce que la grille (19) comprend un moyeu central (20) présentant un trou central (21) à travers
lequel le boulon de fixation (15) peut s'étendre pour connecter ensemble la grille
(19), la section de pointe (9) et les sections de réglage sélectionnées (10, 11, 12,
13, 14).
6. Dispositif de soufflage d'air d'évacuation selon l'une quelconque des revendications
1 à 5, caractérisé en ce que la section de pointe (9) et/ou au moins l'une des sections de réglage (10, 11, 12,
13, 14) comprend/comprennent un raccord à encliqueter pour une interconnexion mutuelle.
7. Dispositif de soufflage d'air d'évacuation selon l'une quelconque des revendications
1 à 6, caractérisé en ce que la forme de coiffe de l'élément de coiffe (7) est elliptique.
8. Dispositif de soufflage d'air d'évacuation selon l'une quelconque des revendications
1 à 6, caractérisé en ce que la forme de coiffe de l'élément de coiffe (7) est parabolique.