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EP 0 708 865 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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13.06.2001 Bulletin 2001/24 |
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Date of filing: 29.06.1994 |
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International Patent Classification (IPC)7: E03B 7/07 |
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International application number: |
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PCT/GB9401/413 |
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International publication number: |
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WO 9501/483 (12.01.1995 Gazette 1995/03) |
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ELECTRICALLY OPERATED STOP-COCK FOR MAINS WATER SUPPLY
ELEKTRISCHER ABSPERRHAHN FÜR HAUPTWASSERVERSORGUNGSSYSTEM
ROBINET DE RETENUE ACTIONNE ELECTRIQUEMENT POUR ALIMENTATION EN EAU A PARTIR D'UN
RESEAU DE DISTRIBUTION
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Designated Contracting States: |
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AT BE CH DE DK ES FR GB IE IT LI NL SE |
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Priority: |
29.06.1993 GB 9313348
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Date of publication of application: |
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01.05.1996 Bulletin 1996/18 |
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Proprietor: Visser, William John |
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Lamberhurst,
Kent TN3 8EX (GB) |
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Inventor: |
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- Visser, William John
Lamberhurst,
Kent TN3 8EX (GB)
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Representative: Mayes, Stuart David et al |
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BOULT WADE TENNANT,
Verulam Gardens
70 Gray's Inn Road London WC1X 8BT London WC1X 8BT (GB) |
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References cited: :
GB-A- 2 248 469 US-A- 5 076 321
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US-A- 5 004 014 US-A- 5 107 883
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
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[0001] The present invention relates to a building having an electrically operated stop-cock
capable of isolating an internal water distribution system from an external mains
water supply and actuated by a manually operated switch, the use as a stop-cock of
an electrically operated valve in combination with a manually operated switch, and
a method of isolating the internal water distribution system of a building from an
external mains water supply.
[0002] In the past domestic and industrial buildings have been provided with a manual stop-cock
designed to isolate an internal water distribution system from an external mains water
supply. The internal water distribution system in a domestic building typically provides
hot and cold running water and may also form part of the building's heat distribution
system. In an industrial building the services provided by the internal water distribution
system may be far more diverse.
[0003] In order to isolate the internal system from the external mains, a stop-cock is usually
located at the point at which the mains water supply enters the building. A typical
arrangement is shown schematically in figure 1. The conduit 10 carrying the mains
water supply is laid a minimum of two feet six inches (0.762 m) below ground level
12 in order that it might be protected from frost damage and crosses the property
boundary 14 after first passing to a manual stop-cock 16 which is controlled by the
water company. It is at this point, as far as the United Kingdom is concerned, that
the responsibility for the water supply passes from the water company to the owner
or occupier of the building. The water supply then passes either under or through
a wall of the building 18 and rises to just above floor level 2C at which point there
is provided a private stop-cock 22 operable by the owner or occupier of the building
to control the quantity of water supplied thereto.
[0004] Turning now to a typical domestic situation, whilst people often consider turning
off their heating systems or even their electricity supply while they are away from
home either on holiday or on business, few people think to turn off their water supply.
The consequences of not turning off the water supply however are, if anything, potentially
more catastrophic. If the private stop-cock is left open the internal water distribution
system of the building is connected directly to the mains supply and, via the mains
supply, to a network of reservoirs. If there is a leak in the internal water distribution
system this can lead, at typical rates of flow, to 240 gallons (908 litres) of water
being deposited within the building every hour that the leak is not dealt with. If
left, this same leak would result in 5,760 gallons (21,801 litres) of water being
deposited within the building in a single period of twenty-four hours or 40,320 gallons
(152,611 litres) in a week. Clearly such quantities of water can have a devastating
effect both or the contents and structure of the building. Not only would it cause
irreparable damage to the electricity distribution system but the shear weight of
water could cause floors and ceilings to give way. After all, 240 gallons (908 litres)
of water has a weight of approximately one ton (1,016kg), while 5,760 gallons (21,801
litres) and 40,320 gallons (152,611 litres) have weights of approximately 26 and 183
tonnes (26,417kg and 185,937kg) respectively.
[0005] Furthermore, if the water supplied to the building is metered and charged for by
the water company in terms of the quantities used such a leak would result in a greatly
increased water bill.
[0006] Faced with this danger why it is then that people invariably fail to turn off their
water supply? It is thought that this situation arises for at two reasons.
[0007] Firstly, it is thought that many people do not know where their stop-cock is located
while, if they do, gaining access to it means getting down on their hands and knees
and fiddling around at the back of the cupboard under the sink.
[0008] Secondly, since the stop-cock is typically as old as the building itself, they have
often seized or are so stiff as to make turning them impossible without the aid of
the appropriate tools. Even with the right tools there is the danger that the application
of an excessive torque might cause part of the stop-cock to shear off.
[0009] It is an aim of the present invention to address the problems associated with the
prior art.
[0010] In the past one way of addressing the problem of burst water pipes within a domestic
building has been to provide a plurality of flow-sensors and timing devices that cooperate
with a valve to shut-off the water supply after a predetermined period, typically
15 minutes, once the flow of water has been detected. An example of one such system
is described in US-A-5,004,014.
[0011] According to a first aspect of the present invention there is provided a building
having an internal water distribution system in communication with an external mains
water supply; and an electrically operated stop-cock connected to the mains water
supply, and capable of isolating the internal water distribution system from the external
mains water supply, characterised in that the building further comprises a manually
operated switch connected to the stop-cock such that when the switch is in a first
position water is able to flow continuously through the stop-cock from the external
mains water supply to the internal water distribution system and when the switch is
placed in a second position the stop-cock is actuated to immediately prevent further
flow therethrough.
[0012] Advantageously the switch may be located remotely from the stop-cock.
[0013] Advantageously the building may be provided with an intruder alarm system to which
the stop-cock is connected, the stop-cock being actuated on actuation of the alarm
system.
[0014] Advantageously the stop-cock may comprise a solenoid valve.
[0015] According to a second aspect of the present invention there is provided use as a
stop-cock of an electrically operated valve means in combination with, and actuated
by, a manually operated switch such that when the switch is in a first position water
is able to flow continuously through the valve means from a mains water supply to
a private water distribution system and when the switch is placed in a second position
the valve means is actuated to immediately isolate the private water distribution
system from the mains water supply.
[0016] According to a third aspect of the present invention there is provided a method of
isolating the internal water distribution system of a building from an external mains
water supply with which the internal water distribution system is in communication
comprising the step of providing an electrically operated stop-cock at the junction
between the internal water distribution system and the external mains water supply,
characterised in that the method further comprises the steps of providing a manually
operated switch connected to the stop-cock such that when the switch is in a first
position water is able to flow continuously through the stop-cock from the external
mains water supply to the internal water distribution system and when the switch is
placed in a second position the stop-cock is actuated to immediately isolate the internal
water distribution system; and operating the switch so as to move the switch from
the first position to the second position.
[0017] Advantageously the switch may be located remotely from the stop-cock.
[0018] Advantageously the building may be provided with an intruder alarm system to which
the stop-cock is connected and the stop-cock actuated on actuation of the alarm system.
[0019] Electrically operated valves, such as solenoid valves, are known and have in the
past been used to control the passage of liquids such as water. Their use however
as a mains water stop-cock has not previously been contemplated and enables the problems
associated with the prior art to overcome. Instead of requiring specialist tools in
order to rotate a stiff tap, all that is required to actuate a solenoid valve is the
flick of a switch. Likewise, since the switch may be located at a position remote
from the valve, the owner or occupier of the building need no longer crawl around
in search of the stop-cock. Instead, the switch may be located close to the front
door at the same height as the light switch so as to be easily actuated on departure.
[0020] In one preferred embodiment the stop-cock may be connected to an intruder alarm system
and actuated on actuation of the alarm system. In this way when the owner or occupier
leaves the building and as a matter of routine actuates the alarm system he simultaneously
actuates the stop-cock and isolates the internal water distribution system from the
mains water supply.
[0021] A range of electrically operated valves are manufactured by many companies such as,
for example, in United Kingdom by Danfoss Limited of Perivale Industrial Park, Greenford,
Middlesex UB6 7QE.
[0022] One advantage of using a solenoid valve as the electrically operated stop-cock is
that in the event of an electrical power failure, the valve will automatically close
isolating the building's internal water distribution system from the external mains
supply. If required, the valve can be reopened manually by the use of a suitable magnet
before the electricity supply is restored.
[0023] Another advantage of a solenoid valve is that its electrical components are completely
enclosed in a water-tight casing so that in the event of a leak elsewhere in the internal
water distribution system the solenoid valve may still be actuated to isolate the
system without endangering the user.
[0024] In existing buildings where a manual stop-cock is already provided, the electrically
operated stop-cock may be placed in series adjacent the existing stop-cock. The existing
stop-cock may then simply be left in the open position and the electrically operated
stop-cock actuated in the manner previously described in order to control the supply
of mains water to the building.
1. A building having an internal water distribution system in communication with an external
mains water supply; and an electrically operated stop-cock connected to the mains
water supply, and capable of isolating the internal water distribution system from
the external mains water supply, characterised in that the building further comprises
a manually operated switch connected to the stop-cock such that when the switch is
in a first position water is able to flow continuously through the stop-cock from
the external mains water supply to the internal water distribution system and when
the switch is placed in a second position the stop-cock is actuated to immediately
prevent further flow therethrough.
2. A building in accordance with claim 1, wherein the switch is located remotely from
the stop-cock.
3. A building in accordance with claim 1 or claim 2, wherein the building is provided
with an intruder alarm system to which the stop-cock is connected, the stop-cock being
actuated on actuation of said alarm system.
4. A building in accordance with any of claims 1 to 3, wherein the stop-cock comprises
a solenoid valve.
5. A building in accordance with any of claims 1 to 4, wherein the stop-cock is connected
in series with a manually operated stop-cock.
6. Use as a stop-cock of an electrically operated valve means in combination with, and
actuated by, a manually operated switch such that when the switch is in a first position
water is able to flow continuously through the valve means from a mains water supply
to a private water distribution system and when the switch is placed in a second position
the valve means is actuated to immediately isolate the private water distribution
system from the mains water supply.
7. A method of isolating the internal water distribution system of a building from an
external mains water supply with which the internal water distribution system is in
communication comprising the step of providing an electrically operated stop-cock
at the junction between the internal water distribution system and the external mains
water supply, characterised in that the method further comprises the steps of providing
a manually operated switch connected to the stop-cock such that when the switch is
in a first position water is able to flow continuously through the stop-cock from
the external mains water supply to the internal water distribution system and when
the switch is placed in a second position the stop-cock is actuated to immediately
isolate the internal water distribution system; and operating the switch so as to
move the switch from the first position to the second position.
8. A method in accordance with claim 7, wherein the switch is located remotely from the
stop-cock.
9. A method in accordance with claim 7 or claim 8, wherein the building is provided with
an intruder alarm system to which the stop-cock is connected and the stop-cock is
actuated on actuation of said alarm system.
1. Gebäude mit einem inneren Wasserverteilersystem in Verbindung mit einer externen Hauptwasserversorgung;
und einem elektrisch betätigten Absperrhahn, der mit der Hauptwasserversorgung verbunden
ist und in der Lage ist, das innere Wasserverteilersystem von der externen Wasserversorgung
zu isolieren, dadurch gekennzeichnet, dass das Gebäude ferner einen manuell betätigten Schalter aufweist, der mit dem Absperrhahn
verbunden ist, sodass dann, wenn sich der Schalter in einer ersten Position befindet,
Wasser kontinuierlich durch den Absperrhahn von der externen Hauptwasserversorgung
zu dem inneren Wasserverteilersystem fließen kann, und wenn der Schalter in einer
zweiten Position angeordnet wird, der Absperrhahn aktiviert wird, um einen weiteren
Durchfluss durch ihn hindurch sofort zu verhindern.
2. Gebäude nach Anspruch 1, wobei der Schalter von dem Absperrhahn entfernt angeordnet
ist.
3. Gebäude nach Anspruch 1 oder Anspruch 2, wobei das Gebäude mit einem Einbruchsalarmsystem
versehen ist, mit dem der Absperrhahn verbunden ist, wobei der Absperrhahn bei Aktivierung
des Alarmsystems aktiviert wird.
4. Gebäude nach einem der Ansprüche 1 bis 3, wobei der Absperrhahn ein Solenoidventil
aufweist.
5. Gebäude nach einem der Ansprüche 1 bis 4, wobei der Absperrhahn in Serie mit einem
manuell betätigten Absperrhahn verbunden ist.
6. Verwendung eines elektrisch betätigten Ventilmittels als Absperrhahn in Kombination
mit und betätigt durch einen manuell betätigten Schalter, sodass dann, wenn sich der
Schalter in einer ersten Position befindet, Wasser kontinuierlich durch das Ventilmittel
von der Hauptwasserversorgung zu einem privaten Wasserverteilersystem fließen kann,
und wenn der Schalter in einer zweiten Position angeordnet wird, das Ventilmittel
aktiviert wird, um das private Wasserverteilersystem von der Hauptwasserversorgung
sofort zu isolieren.
7. Verfahren zum isolieren des inneren Wasserverteilersystems eines Gebäudes von einer
externen Hauptwasserversorgung, mit der das innere Wasserverteilersystem verbunden
ist, umfassend den Schritt, einen elektrisch betätigten Absperrhahn an der Verknüpfung
zwischen dem inneren Wasserverteilersystem und der externen Hauptwasserversorgung
vorzusehen, dadurch gekennzeichnet, dass das Verfahren ferner die Schritte umfasst, einen mit dem Absperrhahn verbundenen
manuell betätigten Schalter vorzusehen, sodass dann, wenn sich der Schalter in einer
ersten Position befindet, Wasser kontinuierlich durch den Absperrhahn von der externen
Hauptwasserversorgung zu dem inneren Wasserverteilersystem fließen kann, und dann,
wenn der Schalter in einer zweiten Position angeordnet wird, der Absperrhahn aktiviert
wird, um das innere Wasserverteilersystem sofort zu isolieren; und Betätigen des Schalters
zur Bewegung des Schalters von der ersten Position zu der zweiten Position.
8. Verfahren nach Anspruch 7, wobei der Schalter von dem Absperrhahn entfernt angeordnet
ist.
9. Verfahren nach Anspruch 7 oder Anspruch 8, wobei das Gebäude mit einem Einbruchsalarmsystem
versehen ist, mit dem der Absperrhahn verbunden ist, und der Absperrhahn bei Aktivierung
des Alarmsystems aktiviert wird.
1. Bâtiment comportant un système de distribution d'eau interne en communication avec
un réseau d'alimentation en eau externe ; et un robinet d'arrêt actionné électriquement
raccordé au réseau d'alimentation en eau, et adapté à isoler le système de distribution
d'eau interne du réseau d'alimentation en eau externe, caractérisé en ce que le bâtiment
comprend également un interrupteur actionné manuellement relié au robinet d'arrêt
de manière que lorsque l'interrupteur est placé dans une première position, l'eau
puisse s'écouler en continu via le robinet d'arrêt du réseau d'alimentation en eau
externe au système de distribution d'eau interne et lorsque l'interrupteur est placé
dans une deuxième position, le robinet d'arrêt soit actionné pour empêcher immédiatement
la poursuite de l'écoulement d'eau via le robinet d'arrêt.
2. Bâtiment selon la revendication 1, dans lequel l'interrupteur est situé à distance
du robinet d'arrêt.
3. Bâtiment selon la revendication 1 ou la revendication 2, dans lequel le bâtiment est
équipé d'un système d'alarme d'effraction auquel le robinet d'arrêt est raccordé,
le robinet d'arrêt étant actionné lors de l'actionnement dudit système d'alarme.
4. Bâtiment selon l'une quelconque des revendications 1 à 3, dans lequel le robinet d'arrêt
comprend une électrovanne.
5. Bâtiment selon l'une quelconque des revendications 1 à 4, dans lequel le robinet d'arrêt
est raccordé en série avec un robinet d'arrêt actionné manuellement.
6. Utilisation comme robinet d'arrêt d'un moyen de vanne actionné électriquement en combinaison
avec, et actionné par, un interrupteur actionné manuellement de manière que lorsque
l'interrupteur est placé dans une première position, l'eau puisse s'écouler en continu
via le moyen de vanne d'un réseau d'alimentation en eau à un système de distribution
d'eau privé et lorsque l'interrupteur est placé dans une deuxième position, le moyen
de vanne soit actionné pour isoler immédiatement le système de distribution d'eau
privé du réseau d'alimentation en eau.
7. Procédé pour isoler le système de distribution d'eau interne d'un bâtiment d'un réseau
d'alimentation en eau externe avec lequel le système de distribution d'eau interne
est en communication, comprenant les opérations consistant à disposer un robinet d'arrêt
actionné électriquement à la jonction entre le système de distribution d'eau interne
et le réseau d'alimentation en eau externe, caractérisé en ce que le procédé comprend
également les opérations consistant à employer un interrupteur actionné manuellement
relié au robinet d'arrêt de manière que lorsque l'interrupteur est placé dans une
première position, l'eau puisse s'écouler en continu via le robinet d'arrêt du réseau
d'alimentation en eau externe au système de distribution d'eau interne et lorsque
l'interrupteur est placé dans une deuxième position, le robinet d'arrêt soit actionné
pour isoler immédiatement le système de distribution d'eau interne ; et actionner
l'interrupteur de manière à déplacer l'interrupteur de la première position à la deuxième
position.
8. Procédé selon la revendication 7, dans lequel l'interrupteur est situé à distance
du robinet d'arrêt.
9. Procédé selon la revendication 7 ou la revendication 8, dans lequel le bâtiment est
équipé d'un système d'alarme d'effraction auquel le robinet d'arrêt est raccordé et
le robinet d'arrêt est actionné lors de l'actionnement dudit système d'alarme.
