[0001] The invention relates to a device for providing shade. More in particular, the invention
relates to a device which reacts to the amount of sun and controls the amount of shade
it provides. Applicable on a broad variety of buildings, constructions, facades, roofs,
windows as it can vary in scale, size, material and form.
[0002] Such a device according to the preamble of claim 1 is known from
FR 2476200 A3.
[0003] Building environmental systems are known, which control heating, cooling and ventilation
within a building. Such systems rely on a large number of sensors to measure the conditions
in a building and which they use to control a number of flaps, valves and the like
to direct heat and/or cold to the desired portions of a building. Such known building
environmental systems are costly to install and energy consuming.
[0004] Some of the known building environmental systems use shading means arranged on the
outside of the building, to block heat from the sun when it is desired to cool the
building
[0005] US 5608995 describes a shading device having a solar-actuated fluid window shutter for automatic
regulation of illumination that responds to variations in external sunlight. The device
has a container exposed to solar radiation that causes a gas pressure change which
causes fluid displacement between two transparent window panes. A transparent fluid
is displaced by another fluid, which blocks part of the sunlight falling on the panes.
Typically, the blocking fluid enters the space between the two transparent window
panes from above, similar to the operation of blinds.
[0006] However, heat dissipated in the blocking fluid will be in direct contact with the
building, such that the building is still heated despite the blocking of sunlight.
Also the usage of some flammable and hazardous elements in the displacement fluids
might be undesired in a building component, because of safety regulations, fire protection
and / or environmental requirements.
[0007] It is an object of the invention to provide a shading device, in which the above
mentioned disadvantages are reduces or even removed.
[0008] This object is achieved with a device according to claim 1.
[0009] The actuator used in the device according to the invention is a hydraulic cylinder
or a pneumatic cylinder depending on whether the heat expandable medium is a fluid
or a gas.
[0010] When the vessel is heated by for example sun radiation, the medium will try to expand.
Because the vessel is in fluid communication with the pressure chamber of the actuator,
the pressure increase due to the heating of the medium will also have its effect within
the pressure chamber. As the pressure chamber is defined by the closed end of the
cylinder barrel and the movable piston, the pressure will try to move the movable
piston. This movement of the movable piston it then transferred via the piston rod
onto shading means, in order to move the shading means towards the active, shading
position.
[0011] When the sun radiation is reduced, for example because of a cloudy sky, the heat
expandable medium will cool off and the pressure in the medium will drop. Due to the
pressure drop, the movable piston will be moved back causing the shading means to
move towards the non-active, non-shading position. This movement could be assisted
by spring means to overcome internal friction within the actuator.
[0012] Another way to reduce the friction would be to use a rolling diaphragm pneumatic
cylinder. In such a cylinder, the sealing between the movable piston and the cylinder
barrel is by a flexible diaphragm. This reduces friction considerably, such that the
force generated by the heat expandable medium can optimally be used for operating
the shading means.
[0013] The heat expandable medium is preferably a gas, such as filtered air, but could also
be a suitable fluid.
[0014] The device according to the invention thus provides a self-sustaining responsive
shading, requiring no additional external energy or active control. The device is
based on a simple natural process of heat expansion of a medium, making it a fully
passive system.
[0015] In an embodiment of the device according to the invention the vessel is arranged
at the actuator adjacent the pressure chamber. This provides for a compact design,
in which the actuator can be directed with the vessel towards the heat source, in
particular the sun.
[0016] In a preferred embodiment of the device according to the invention the shading means
comprise at least one shading panel connected hingedly to the cylinder barrel by at
least one hinge and wherein the piston rod is connected to the shading panel at a
distance from the at least one hinge.
[0017] The shading panel could for example be an elongate panel, such as with horizontal
blinds. By connection the one elongate panel to a plurality of parallel panels, the
movement of the piston rod, could control a number of shading panels. So, if the sun
would warm up the medium in the vessel, the elongated panels would move towards a
closed position, in which the sun light is blocked from passing. If the device is
mounted on the outside of a building, then the heat from the sun would be kept outside
and the warming of the building by the sun would be effectively be prevented. The
device of the invention could for example also be used as a parasol, wherein the device
will provide shade when sufficient sun radiation is available to heat the medium in
the vessel.
[0018] In another preferred embodiment of the device according to the invention the shading
panel comprises at least two main rods each connected with one end to the at least
one hinge, at least two control rods, hingedly arranged in a center zone each to a
main rod and a shading cloth arranged to the at least two main rods.
[0019] Preferably, the shading panel is umbrella like.
[0020] With such a device according to the invention, the vessel would be arranged typically
at the top of the umbrella and be directed towards the sun. When the vessel is heated,
the piston rod will cause the umbrella like shading means to unfold and provide shade.
[0021] Yet another embodiment of the device according to the invention further comprises
a frame arranged to the cylinder barrel, wherein the frame has a base arranged at
the distal end of the vessel.
[0022] With this frame and base, the device according to the invention can easily be mounted
to a surface, which needs to be provided with shade. This could be for example a horizontal
surface, such as a roof of a building or a facade of a building.
[0023] In yet another embodiment of the device according to the invention the outer surface
of the vessel is provided with a heat absorbing layer. By providing a heat absorbing
layer, the incident sun light can be optimally converted into heat for the heat expandable
medium.
[0024] In still another embodiment of the device according to the invention the content
of the vessel is at least 10 times larger than the content of the cylinder barrel.
[0025] In order to obtain a sufficient operable stroke of the piston rod, the content of
the vessel is at least 10 times larger, than the content of the cylinder barrel. As
a result an expansion of the medium in the vessel will have an at least 10 times bigger
effect on the stroke of the piston rod.
[0026] In yet another embodiment of the device according to the invention the pressure of
the heat expandable medium at ambient temperature, in the non-active, non-shading
position, is higher than the ambient pressure.
[0027] By increasing the pressure of the heat expandable medium in the non-active, non-shading
position, it is possible to counteract any force of the shading means exerted onto
the piston rod. For example, the weight of the shading means can be compensated, such
that the shading means are at an equilibrium between the non-active position and the
active position. Only a small pressure increase due to the heating of the heat expandable
medium is then needed to move the shading means.
[0028] In another preferred embodiment of the invention, the shutter units have an optional
opening and closing mechanism that would allow the system to open or close in cases
of emergency (e.g. fire) operated by manual or electrical means.
[0029] The invention further relates to a building having a facade and a plurality of devices
according to the invention, wherein the vessel of each device is arranged in front
of the shading means as seen in the direction towards the facade of the building.
[0030] These and other features of the invention will be elucidated in conjunction with
the accompanying drawings.
Figure 1 shows a perspective view of a first embodiment of the device according to
the invention.
Figures 2A and 2B show a cross-sectional view of the embodiment of figure 1 in two
different positions
Figure 3 shows a schematic perspective view of a first embodiment of a building according
to the invention.
Figure 4 shows a schematic perspective view of a second embodiment of a building according
to the invention.
Figure 5 shows a schematic cross-sectional view of the building according to figure
3 during a period of time.
Figure 6 shows a perspective view of a second embodiment of the device according to
the invention.
Figures 7A and 7B show a cross-sectional view of the embodiment of figure 6 in two
different positions.
[0031] Figure 1 shows a perspective view of a first embodiment 1 of the device according
to the invention. This device 1 has a cylindrical frame 2 with a base 3. On top of
the frame 2 a vessel 4 is arranged. Furthermore a number of main rods 5 is hingedly
arranged to the frame, which main rods 5 are controlled by control rods 6. A shading
cloth 7 is arranged between the main rods 5.
[0032] Figures 2A and 2B show a cross-sectional view of the device 1 of figure 1 in a non-active,
non-shading position (figure 2A) and an active, shading position (figure 2B).
[0033] The device 1 has an actuator arranged in the frame 2, which actuator has a cylinder
barrel 8 with a closed end 9, a piston 10 movable within the cylinder barrel 8 and
a piston rod 11 connected to the movable piston 10. The free end of the piston rod
11 is connected to the control rods 6.
[0034] The closed end 9 together with part of the cylinder barrel 8 and the movable piston
10 form the pressure chamber 12, which is in direct contact with the vessel 4. In
the figure the wall of the closed end 9 is integrated and connected with the vessel
4 via a large opening. However, if the vessel 4 would be arranged at a distance from
the barrel 8, this end 9 would be closed and connected to the vessel 4 via for example
a conduit.
[0035] When the heat expandable medium inside of the vessel 4 is heated by the sun S, then
the medium would expand and move the piston 10 downward. As a result, the main rods
5 will hinge upwardly, such that the umbrella like shading cloth 7 is expanded to
provide shade.
[0036] Figure 3 shows a schematic perspective view of a first embodiment of a building 20
according to the invention. This building 20 has a facade 21 which is provided with
a plurality of device 1 according to figure 1.
[0037] When the facade 21 is illuminated by the sun S, the devices 1 will assume an active
position (as shown in figure 2B). Only where a tree T casts its shadow on the facade,
the devices 1 will keep there non-active position (as shown in figure 2A).
[0038] Figure 4 shows a schematic perspective view of a second embodiment of a building
30 according to the invention. This building 30 is provided over its full outer surface
with a plurality of devices 1. When the sun S illuminates the building 30, the devices
1 will move towards the active position, except for the devices 1, which are in the
shadow of the building B.
[0039] Figure 5 shows a schematic cross-sectional view of the building 20 according to figure
3 during a period of time. The facade 21 is provided with a number of devices 1.
[0040] The shown period of time starts at 11.00 and ends at 18.00. At 11.00 the facade 21
is fully illuminated by the sun S and all devices 1 are expanded. At 13.00 the sun
moves away from the facade 21, such that gradiently less sun shines on the facade
21. As a result, the devices 1 will slowly collapse, such that around 18.00, when
no sun shines on the facade 21, all devices 1 are in non-active state.
[0041] Figure 6 shows a perspective view of a second embodiment 40 of the device according
to the invention. This device 40 also has a vessel 41 connected to a cylinder barrel
42 with a movable piston 43 and a connected piston rod 44.
[0042] The actuator 42, 43, 44 is arranged in a cylindrical frame 44 having a large base
45. This large base 45 is provided with a number of guide rails 46, along which main
rods 47 are guided. These main rods 47 are also connected to the piston rod 44. A
shading cloth (not shown) can be arranged between the main rods 47.
[0043] Figures 7A and 7B show a cross-sectional view of the device 40 in a non-active, non-shading
position (figure 7A) and an active, shading position (figure 7B). The advantage of
the large base 45 with the guide rails 46, is that the device 40 can withstand high
wind loads.
1. Device (1; 40) for providing shade, which device (1; 40) comprises:
- an actuator having a cylinder barrel (8; 42), a piston (10; 43) movable within the
cylinder barrel (8; 42) and a piston rod (11; 44) connected to the movable piston
(10; 43); and
- shading means (7) operable between an active, shading position and a non-active,
non-shading position, wherein the piston rod (11; 44) is coupled to the shading means
(7) for controlling the position of the shading means (7) characterized in that
- the cylinder barrel (8; 42) is a cylinder barrel (8; 42) with a closed end (9);
- the device (1; 40) comprises a vessel (4; 41) filled with a heat expandable medium;
and
- the pressure chamber (12), defined by the closed end (9) of the cylinder barrel
(8; 42) and the movable piston (10; 43), of the actuator is in fluid connection with
the vessel (4; 41).
2. Device (1; 40) according to claim 1, wherein the vessel (4; 41) is arranged at the
actuator adjacent the pressure chamber (12).
3. Device (1; 40) according to claim 1 or 2, wherein the shading means (7) comprise at
least one shading panel (7) connected hingedly to the cylinder barrel (8; 42) by at
least one hinge and wherein the piston rod (11; 44) is connected to the shading panel
(7) at a distance from the at least one hinge.
4. Device (1; 40) according to claim 3, wherein the shading panel (7) comprises at least
two main rods (5; 47) each connected with one end to the at least one hinge, at least
two control rods (6), hingedly arranged in a center zone each to a main rod and a
shading cloth (7) arranged to the at least two main rods (5; 47).
5. Device (1; 40) according to claim 4, wherein the shading panel (7) is umbrella like.
6. Device (1; 40) according to any of the claims 2 - 5, further comprising a frame (2)
arranged to the cylinder barrel (8; 42), wherein the frame (2) has a base (3; 45)
arranged at the distal end of the vessel (4; 41).
7. Device (1; 40) according to any of the preceding claims, wherein the outer surface
of the vessel (4; 41) is provided with a heat absorbing layer.
8. Device (1; 40) according to any of the preceding claims, wherein the content of the
vessel (4; 41) is at least 10 times larger than the content of the cylinder barrel
(8; 42).
9. Device (1; 40) according to any of the preceding claims, wherein in the non-active,
non-shading position the pressure of the heat expandable medium at ambient temperature
is higher than the ambient pressure.
10. Building (20; 30) having a facade (21) and a plurality of devices (1; 40) according
to the any of the preceding claims, wherein the vessel (4; 41) of each device (1;
40) is arranged in front of the shading means (7) as seen in the direction towards
the facade (21) of the building (20; 30).
1. Vorrichtung (1; 40) zur Bereitstellung von Schatten, welche Vorrichtung (1; 40) umfasst:
- einen Stellantrieb mit einer Zylinderrohre (8; 42), einen in der Zylinderrohre (8;
42) bewegbaren Kolben (10; 43) und eine mit dem bewegbaren Kolben (10; 43) verbundene
Kolbenstange (11; 44); und
- Beschattungsmittel (7), die zwischen einer aktiven, schattenspendenden Position
und einer nicht aktiven, nicht schattenspendenden Position betreibbar sind, wobei
die Kolbenstange (11; 44) mit den Beschattungsmitteln (7) verbunden ist, um die Position
der Beschattungsmittel (7) zu steuern,
dadurch gekennzeichnet, dass
- die Zylinderrohre (8; 42) eine Zylinderrohre (8; 42) mit einem geschlossenen Ende
(9) ist;
- die Vorrichtung (1; 40) einen mit einem wärmedehnbaren Medium gefüllten Behälter
(4; 41) umfasst; und
- die durch das geschlossene Ende (9) der Zylinderrohre (8; 42) und den bewegbaren
Kolben (10; 43) definierte Druckkammer (12) des Stellantriebs in Fluidverbindung mit
dem Behälter (4; 41) steht.
2. Vorrichtung (1; 40) nach Anspruch 1, wobei der Behälter (4; 41) an dem Stellantrieb
benachbart zu der Druckkammer (12) angeordnet ist.
3. Vorrichtung (1; 40) nach Anspruch 1 oder 2, wobei die Beschattungsmittel (7) mindestens
ein Beschattungspaneel (7) umfassen, das durch mindestens ein Scharnier scharnierbeweglich
mit der Zylinderrohre (8; 42) verbunden ist, und wobei die Kolbenstange (11; 44) in
einem Abstand von dem mindestens einen Scharnier mit dem Beschattungspaneel (7) verbunden
ist.
4. Vorrichtung (1; 40) nach Anspruch 3, wobei das Beschattungspaneel (7) mindestens zwei
Hauptstangen (5; 47), die jede mit einem Ende mit dem mindestens einen Scharnier verbunden
sind, mindestens zwei Steuerstangen (6), die jede scharnierbeweglich in einem Mittelbereich
an einer Hauptstange angeordnet sind, und ein an den mindestens zwei Hauptstangen
(5; 47) angeordnetes Beschattungstuch (7) umfasst.
5. Vorrichtung (1; 40) nach Anspruch 4, wobei das Beschattungspaneel (7) schirmartig
ist.
6. Vorrichtung (1; 40) nach einem der Ansprüche 2 bis 5, weiter ein an der Zylinderrohre
(8; 42) angeordnetes Gestell (2) umfassend, wobei das Gestell (2) eine Basis (3; 45)
aufweist, die am distalen Ende des Behälters (4; 41) angeordnet ist.
7. Vorrichtung (1; 40) nach einem der vorstehenden Ansprüche, wobei die Außenfläche des
Behälters (4; 41) mit einer wärmeabsorbierenden Schicht versehen ist.
8. Vorrichtung (1; 40) nach einem der vorstehenden Ansprüche, wobei der Inhalt des Behälters
(4; 41) mindestens 10 Mal größer als der Inhalt der Zylinderrohre (8; 42) ist.
9. Vorrichtung (1; 40) nach einem der vorstehenden Ansprüche, wobei in der nicht aktiven,
nicht schattenspendenden Position der Druck des wärmedehnbaren Mediums bei Umgebungstemperatur
höher als der Umgebungsdruck ist.
10. Gebäude (20; 30), das eine Fassade (21) und eine Vielzahl von Vorrichtungen (1; 40)
nach einem der vorstehenden Ansprüche aufweist, wobei der Behälter (4; 41) jeder Vorrichtung
(1; 40) vor dem Beschattungsmittel (7), gesehen in der Richtung zur Fassade (21) des
Gebäudes (20; 30), angeordnet ist.
1. Dispositif (1 ; 40) pour fournir de l'ombre, lequel dispositif (1; 40) comprend:
- un actionneur ayant un corps de cylindre (8 ; 42), un piston (10 ; 43) mobile à
l'intérieur du corps de cylindre (8 ; 42) et une tige de piston (11 ; 44) raccordée
au piston mobile (10 ; 43) ; et
- des moyens d'ombrage (7) opérant entre une position d'ombrage active et une position
de non-ombrage non active, dans lequel la tige de piston (11 ; 44) est couplée aux
moyens d'ombrage (7) pour commander la position des moyens d'ombrage (7),
caractérisé en ce que :
- le corps de cylindre (8 ; 42) est un corps de cylindre (8 ; 42) avec une extrémité
fermée (9) ;
- le dispositif (1 ; 40) comprend un récipient (4 ; 41) rempli d'un agent thermo-expansible
; et
- la chambre de pression (12) définie par l'extrémité fermée (9) du corps de cylindre
(8 ; 42) et le piston mobile (10 ; 43) de l'actionneur est en communication fluidique
avec le récipient (4 ; 41).
2. Dispositif (1 ; 40) selon la revendication 1, dans lequel le récipient (4 ; 41) est
agencé dans l'actionneur de manière adjacente à la chambre de pression (12).
3. Dispositif (1 ; 40) selon la revendication 1 ou 2, dans lequel les moyens d'ombrage
(7) comprennent au moins un panneau d'ombrage (7) articulé sur le corps de cylindre
(8 ; 42) par au moins une charnière et dans lequel la tige de piston (11 ; 44) est
raccordée au panneau d'ombrage (7) à une certaine distance de la au moins une charnière.
4. Dispositif (1 ; 40) selon la revendication 3, dans lequel le panneau d'ombrage (7)
comprend au moins deux tiges principales (5 ; 47) raccordées chacune à une extrémité
de la au moins une charnière, au moins deux tiges de commande (6) articulées dans
une zone centrale chacune à une tige principale et une toile d'ombrage (7) agencée
sur les au moins deux tiges principales (5 ; 47).
5. Dispositif (1 ; 40) selon la revendication 4, dans lequel le panneau d'ombrage (7)
est similaire à un parapluie.
6. Dispositif (1 ; 40) selon l'une quelconque des revendications 2 à 5, comprenant en
outre un châssis (2) agencé sur le corps de cylindre (8 ; 42), dans lequel le châssis
(2) a une base (3 ; 45) agencée à l'extrémité distale du récipient (4 ; 41).
7. Dispositif (1 ; 40) selon l'une quelconque des revendications précédentes, dans lequel
la surface externe du récipient (4 ; 41) est pourvue d'une couche absorbant la chaleur.
8. Dispositif (1 ; 40) selon l'une quelconque des revendications précédentes, dans lequel
le contenu du récipient (4 ; 41) est au moins 10 fois plus important que le contenu
du corps de cylindre (8 ; 42).
9. Dispositif (1 ; 40) selon l'une quelconque des revendications précédentes, dans lequel,
dans la position de non-ombrage non active, la pression de l'agent thermo-expansible
à température ambiante est plus élevée que la pression ambiante.
10. Edifice (20 ; 30) ayant une façade (21) et une pluralité de dispositifs (1 ; 40) selon
l'une quelconque des revendications précédentes, dans lequel le récipient (4 ; 41)
de chaque dispositif (1 ; 40) est agencé devant les moyens d'ombrage (7) comme on
peut l'observer dans la direction de la façade (21) de l'édifice (20 ; 30).