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EP 1 050 627 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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03.03.2004 Bulletin 2004/10 |
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Date of filing: 20.04.2000 |
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System for stabilisation of sandy shores
System zum Stabilisieren von Sandküsten
Système pour la stabilisation des côtes sablonneuses
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Designated Contracting States: |
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AT BE CH CY DE DK ES FI FR GB GR IE IT LI LU MC NL PT SE |
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Priority: |
04.05.1999 EP 99870095
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Date of publication of application: |
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08.11.2000 Bulletin 2000/45 |
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Proprietor: Delvac N.V. |
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8421 De Haan (BE) |
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Inventor: |
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- Delbaere, Bernard
8421 De Haan (BE)
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Representative: Vandeberg, Marie-Paule L.G. et al |
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Office Kirkpatrick S.A.,
32, Avenue Wolfers 1310 La Hulpe 1310 La Hulpe (BE) |
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References cited: :
US-A- 4 087 572 US-A- 5 022 784
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US-A- 4 898 495
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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 invention relates to a system for stabilisation of sandy shores (see e.g. US-A-5
022 784).
[0002] It has been a problem for a long time that sandy shores, such as beaches, change
shape and form. In particular sand depletion in the winter season forms a problem.
At the beginning of the summer season the beach is too small for the planned commercial
activities and/or the beach is so small that dunes or dikes behind the beach are so
close to the sea that the sea threatens to break through.
[0003] Methods for reducing the effects of sand depletion comprise amongst others supplying
sand at the beginning of the summer season. The disadvantages of such supply are that
it is costly, often the sand is taken from the sea and has a different coarser constitution
than the sand of the shore for instance having more shells in it which leads to complaints
from beach goers, and the shore cannot be used for any other activity during and for
some time after the new sand has been supplied. Also the sand is taken away from the
sea bed, if such is done near the shore dangerous holes are made which may pose a
threat to the life of swimmers. If the sand is taken away from the sea bed at a large
'safe' distance from the shore this increases the cost of the method considerably
and furthermore generally the further away from the shore the coarser the sand is,
and/or the sand could have a different colour or other clearly distinguishing feature.
[0004] Other methods rely on planting obstacles of some sort or another (such as beach grass
or sand reed, or wind break nets) in and on the beach. Although such methods do retain
sand on the beach they suffer from the important short-coming that such obstacles
actually form small dunes. At the beginning of the summer season these small dunes
have to be flattened. This increases the costs and for some time the beach cannot
be used. If this flattening is not done, the actual size of the flat beach is reduced
and after some seasons the shore-line moves into the sea. Since roads and stands do
not move this effect causes an increase in the distance between roads and stands and
the shore line.
[0005] It is an object of the invention to provide a method and a system for stabilisation
to overcome or reduce the disadvantages of the known methods and systems.
[0006] To this end the system in accordance with the invention comprises :
- an water inlet preferably to draw water from a nearby water volume
- an inlet conduit from the inlet to a pumping station
- a outlet conduit from the pumping station to
- one or more water dispensing means on or at the sandy shore
- a pumping station to pump water from the inlet conduit to the outlet conduit
- a control unit to control the action of the pump
- a means for supplying a wind signal indicative of the wind force to the control unit
- the control unit having means to, in dependence on the wind signal, control the action
of the pump.
[0007] The invention is amongst others based on the insight that sand depletion is mainly
caused by the action of the wind. Above a certain wind speed (roughly 4-6 Beaufort,
depending somewhat on the coarseness of the sand) sand is blown away if it is dry.
Wet sand is not so easily (or not at all) blown away. The pumping action and thus
whether or not water is dispensed and or the amount of water dispensed through the
water dispensing means is controlled by the control unit, which does so in dependence
on the wind signals. This makes it possible to dispense water when needed. Preferably
the inlet is to draw water from a nearby water volume because when water is used from
a nearby water volume such as the nearby sea, ocean or lake, the system does not introduce
any contamination on the beach that isn't already there. There are therefor no environmental
problems. Preferably, the control unit has means for making or keeping the pump inactive
when the wind speed as indicated by the wind signal is below a predetermined value.
[0008] This prevents dispensing water when the wind force is below a value at which no or
only little sand is being transported by the wind, even if the sand is dry, thus reducing
the costs of operation of the system.
[0009] Said value is preferably between 4 and 6 Beaufort. The inventors have found that
the onset of sand transport through wind action lies generally in this regime.
[0010] Preferably the control means also has means for making or keeping the pump inactive
when the wind signal is above a predetermined signal.
[0011] Above a predetermined signal (for instance 10 or 11 Beaufort) the pump is shut down,
for protection as well as because usually above a certain wind speed so much moisture
from the sea or lake is blown inland that the sand is wet, and/or water supplied is
blown too far away from the shore.
[0012] Preferably the system comprises means for supplying a rain signal indicative of the
rain fall to the control unit.
[0013] Preferably, the control unit has means for making or keeping the pump inactive, if
it rains at the shore part where the water dispensing means are located.
[0014] This prevents dispensing of water when it is raining and reduces thereby the costs
of operating the system.
[0015] Instead of or in addition to a rain meter the system can also have means for supplying
a moisture signal indicative of the water content of the sand near the water dispensing
means to the control unit. Such means enable 'fine-tuning' of the pomp action.
[0016] Preferably the inlet is situated at some distance form the shore line, which reduces
the risk of swimmers being hurt by the inlet. The inlet can for instance situated
at some distance in the sea or lake or in a well. In the latter case the water is
drawn from ground water, but this is in effect also means drawing water from the nearby
water volume and at some (in this case vertical) distance from the shore line. Using
a well construction is preferred in those cases were the system is used for a longer
period of time and/or where damage to the inlet could be a problem due to for instance
regularly appearing storms or violent (under) currents or ships or damage to the undersea
environment could cause problems.
[0017] Preferably the inlet comprises means to prevent sand from entering the inlet conduit
and/or reduce the amount of sand entering the inlet conduit. Such means can for instance
comprise a filter. Sand in the inlet conduit has a corrosive action on the inlet conduit
and could reduce the pumping speed or plug up the water dispensing means.
[0018] Preferably the inlet conduit comprises plastic pipes. Such pipes are generally much
more corrosion resistant than metal pipes.
[0019] Preferably the outlet conduit comprises plastic pipes for the same reason.
[0020] The water dispensing means may comprise showers at some height above the beach. Such
showers may sprinkle water downwards or upwards. Alternatively the water dispensing
means may comprise one or more water squirts which squirt water in a circular motion.
The means for dispensing water, for instance in the form of a squirt, may be and preferably
is mobile. Such a system makes it possible to use the system when needed and makes
it easier to use the beach for other activities when the system is not in use. A mobile
system, however, may requires supervision, if only to prevent theft, but also out
of safety precaution to prevent e.g. children from climbing on the mobile water squirt,
whereas a stationary system can be operated without supervision.
[0021] The system preferably also comprises a means for measuring temperature, and means
for supplying a temperature signal indicative of the temperature from the means to
measure temperature to the control unit. The amount of water to be dispensed for most
efficient action can thereby be better controlled. This is in particular of importance
for such shores where even in the off-season relatively high temperatures may be reached.
[0022] Preferably, when the shore is provided with a breakwater, the inlet is situated near
the breakwater. Areas near the breakwater are off-limit for swimmers so that the risk
that a swimmer comes near the inlet is strongly reduced.
[0023] Preferably a safety device is provided around the inlet. Such a safety device e.g.
is used to prevent swimmers from coming near the inlet.
[0024] This reduces the risk of injuries to swimmers and it makes it possible for the inlet
to remain in place during the summer season.
[0025] Preferably the safety device comprises a grid with small openings. Such grid also
prevents objects larger than the grid size form entering the system, thus also protecting
the system itself.
[0026] Preferably the control unit comprises an automatic mode, enabling the system to run
automatically as well as an operator mode enabling the system to be run by an operator.
Although in some circumstances automatic mode is preferred, in other, for instance
on a bright winter day, when, despite the fact that wind action may cause sand to
be transported, economic activities on the beach would be greatly jeopardised by activation
of the system. 'Operator controlled' could in embodiments mean remotely controlled
by some general operator overlooking several systems.
[0027] The method in accordance with the invention comprises the steps of pumping water
from
- an inlet to draw water from a nearby water volume, preferably at some distance from
the shore line, via an inlet conduit from the inlet, a pumping station and a outlet
conduit from the pumping station to
- one or more water dispensing means on or at the sandy shore to moisten sand around
and/or near the water dispensing means, supplying a wind signal indicative of the
wind force to the control unit and controlling via the control means the action of
the pump.
[0028] These and others aspects of the invention will hereinbelow be further disclosed and
discussed with the reference to the drawings in which
[0029] Fig.1 schematically shows as system in accordance with the invention.
[0030] Fig.2 and 3 show in top view two embodiments of the system in accordance with the
invention.
[0031] Figure 4 shows schematically how, in different embodiments of the invention the control
unit controls the action of the pump.
[0032] Figure 5 illustrates a mobile water dispensing means.
[0033] Figure 6 illustrates an embodiment of the system.
[0034] Figure 1 shows a side view of a system in accordance with the invention. An inlet
(A) is positioned in the water 1 some distance from the shoreline near a water breaker
2 extending from the shore 3. Water is pumped, via an inlet conduit D, through a pumping
station B, having a pump 6, via outlet conduit E to water dispersing means C. Figures
2 and 3 show in top view two possible systems of water dispersing means. A wind meter
7 is provided, for instance on top of pumping station B. Pumping station B comprises
in this example control unit 5, which control the action of pump 6. Energy is supplied
via lead 4. A rainfall meter 8 is provided on one of the dispersing means (showers)
C. On the sand a moistness meter 9 may be provided.
[0035] Figure 4 shows schematically how, in different embodiments of the invention, the
control unit controls the action of the pump.
[0036] The control unit 5 receives signals from the wind meter 7, and possibly also from
the rain fall meter 8 and/or the moistness meter 9 and/or a temperature meter 10.
These signals are compared to gauge signals or in another manner used to compute a
control signal 11 to control the action (on-off and/or pump speed) of pump 6 to pump
water from inlet conduit D into outlet conduit E. The wind meter signal 7 may be a
signal comprising, apart from the wind speed also information on the wind direction.
Below a certain wind speed the pump is inactive. Above a certain wind speed the pump
is also inactive out of security precautions. The wind direction may also be of importance,
if the wind is blowing inland the wind speed at which the pump is made active may
be higher than when the wind is blowing from land into the sea. The control unit may
have an internal memory keeping track of the rain fall over a period of time. Such
would give an indication of the 'wetness' of the sand and thus of the need to supply
water.
[0037] Figure 5 shows a mobile water dispensing means. It comprises a mobile vehicle 12,
upon which a rotating water squirt 13 is mounted. The vehicle is able to move back
and forth along the beach, while the squirt is rotating. In this manner the sand can
be made wet.
[0038] Within the concept of the invention many further variations are possible for a person
skilled in the art.
[0039] Figure 6 for instance shows a system in which the inlet A is provided in a well (i.e.
draws ground water). The ground water, however, forms one water volume with the nearby
sea or lake.
[0040] In short the invention can be described as follows:
[0041] To battle the problem of sand loss due to wind action on a sandy shore a system is
used which pumps water from the nearby water volume and make the sand wet depending
on wind speed and possibly other conditions such as rain, moistness of the sand, wind
direction and temperature.
1. A system for stabilisation of a sandy shore,
characterised by
- an inlet (A) for water
- an inlet conduit (D) from the inlet to a pumping station (B)
- an outlet conduit (E) from the pumping station to
- one or more water dispensing means (C) on or at the sandy shore
- a pumping means (6) for pumping water from the inlet (A) via the inlet conduit (D)
and the outlet conduit (E) to the water dispensing means (C)
- a control unit (5) to control the action of the pump (6)
- a means (7) for supplying a wind signal indicative of the wind force to the control
unit
- the control unit having a means to, in dependence on the wind signal, control the
action of the pump.
2. System as claimed in claim 1, characterised in that the control unit has means for making or keeping the pump inactive when the wind
speed as indicated by the wind signal is below a predetermined value.
3. System as claimed in claim 1 or 2, characterised in that the control unit has means for making or keeping the pump inactive when the wind
speed as indicated by the wind signal is above a predetermined value.
4. System as claimed in any of the preceding claims, characterised in that system comprises means (8) for supplying a rain signal indicative of the rain fall
to the control unit and the control unit has means for making or keeping the pump
inactive, if it rains at the shore part where the water dispensing means are located.
5. System as claimed in any of the preceding claims, characterised in that the system comprises means (9) for supplying a moisture signal indicative of the
water content of the sand near the water dispensing means to the control unit.
6. System as claimed in any of the preceding claims characterised in that the inlet comprises means to prevent sand from entering the inlet conduit and/or
reduce the amount of sand entering the inlet conduit.
7. System as claimed in any of the preceding claims, characterised in that the means for dispensing water is mobile.
8. System as claimed in any of the preceding claims, characterised in that a safety device is provided around the inlet.
9. System as claimed in any of the preceding claims, characterised in that the inlet, in operation draws water from a nearby water volume.
10. System as claimed in claim 9, characterised in that the inlet is situated at some distance of the shore line.
11. System as claimed in claim 10, characterised in that the inlet in operation draws ground water.
12. Method for stabilising a sandy shore comprising the steps of pumping water from
- an inlet for water, via an inlet conduit from the inlet, a pumping station and a
outlet conduit from the pumping station to
- one or more water dispensing means on or at the sandy shore to moisten sand around
and/or near the water dispensing means, supplying a wind signal indicative of the
wind force to the control unit and controlling via the control means the action of
the pump.
1. System zur Stabilisierung einer Sandküste,
gekennzeichnet durch
- einen Einlass (A) für Wasser
- eine Einlassleitung (D) vom Einlass zu einer Pumpstation (B)
- eine Auslassleitung (E) von der Pumpstation zu
- einem oder mehreren Wasserabgabemitteln (C) auf oder an der Sandküste
- ein Pumpmittel (6) zum Pumpen von Wasser vom Einlass (A) über die Einlassleitung
(D) und die Auslassleitung (E) zu den Wasserabgabemitteln (C)
- eine Steuereinheit (5) zur Steuerung des Betriebs der Pumpe (6)
- ein Mittel (7) zur Zuführung eines die Windstärke anzeigenden Windsignals zu der
Steuereinheit,
- wobei diese ein Mittel zur Steuerung des Betriebs der Pumpe in Abhängigkeit des
Windsignals aufweist.
2. System nach Anspruch 1, dadurch gekennzeichnet, dass die Steuereinheit Mittel aufweist, um die Pumpe außer Betrieb zu setzen bzw. nicht
in Betrieb zu nehmen, wenn die durch das Windsignal angezeigte Windgeschwindigkeit
einen zuvor festgelegten Wert unterschreitet.
3. System nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass die Steuereinheit Mittel aufweist, um die Pumpe außer Betrieb zu setzen bzw. nicht
in Betrieb zu nehmen, wenn die durch das Windsignal angezeigte Windgeschwindigkeit
einen zuvor festgelegten Wert überschreitet.
4. System nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass das System Mittel (8) zur Zuführung eines den Niederschlag anzeigenden Niederschlagssignals
zu der Steuereinheit umfasst und die Steuereinheit Mittel aufweist, um die Pumpe außer
Betrieb zu setzen bzw. nicht in Betrieb zu nehmen, wenn es in dem Küstenabschnitt
regnet, wo sich die Wasserabgabemittel befinden.
5. System nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass das System Mittel (9) zur Zuführung eines den Wassergehalt des sich in der Nähe der
Wasserabgabemittel befindlichen Sandes anzeigenden Feuchtigkeitssignals zu der Steuereinheit
umfasst.
6. System nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Einlass Mittel zur Verhinderung des Eindringens von Sand in die Einlassleitung
und/oder zur Verringerung der in die Einlassleitung eindringenden Menge an Sand umfasst.
7. System nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Standort des Wasserabgabemittels veränderbar ist.
8. System nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass um den Einlass herum eine Sicherheitsvorrichtung vorgesehen ist.
9. System nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Einlass bei Betrieb Wasser aus einem nahe gelegenen Wasserreservoir entnimmt.
10. System nach Anspruch 9, dadurch gekennzeichnet, dass sich der Einlass in einigem Abstand von der Küstenlinie befindet.
11. System nach Anspruch 10, dadurch gekennzeichnet, dass der Einlass bei Betrieb Grundwasser aufnimmt.
12. Verfahren zur Stabilisierung einer Sandküste, bei dem Wasser von
- einem Einlass für Wasser über eine von dem Einlass abgehende Einlassleitung, eine
Pumpstation und eine von der Pumpstation abgehende Auslassleitung zu
- einem oder mehreren Wasserabgabemitteln auf oder an der Sandküste gepumpt wird,
um den Sand um die Wasserabgabemittel herum und/oder in deren Nähe zu befeuchten,
unter Zuführung eines die Windstärke anzeigenden Windsignals zu der Steuereinheit
und unter Steuerung des Betriebs der Pumpe durch die Steuereinheit.
1. Système pour la stabilisation d'une côte sablonneuse,
caractérisé par:
- une entrée (A) pour l'eau,
- une conduite d'entrée (D) reliant l'entrée à une station de pompage (B),
- une conduite de sortie (E) reliant la station de pompage à un ou plusieurs moyen(s)
de distribution d'eau (C) situé(s) sur la côte sablonneuse ou au niveau de celle-ci,
- un moyen de pompage (6) pour pomper l'eau à partir de l'entrée (A) par l'intermédiaire
de la conduite d'entrée (D) et de la conduite de sortie (E) jusqu'au moyen de distribution
d'eau (C),
- une unité de commande (5) pour commander l'action de la pompe (6),
- un moyen (7) pour transmettre à l'unité de commande un signal de vent indicatif
de la force du vent,
- l'unité de commande comprenant un moyen lui permettant de commander l'action de
la pompe en fonction du signal de vent.
2. Système suivant la revendication 1 caractérisé en ce que l'unité de commande comprend un moyen pour rendre ou maintenir la pompe inactive
lorsque la vitesse du vent, telle qu'elle est indiquée par le signal de vent, est
inférieure à une valeur prédéterminée.
3. Système suivant la revendication 1 ou 2 caractérisé en ce que l'unité de commande comprend un moyen pour rendre ou maintenir la pompe inactive
lorsque la vitesse du vent, telle qu'elle est indiquée par le signal de vent, est
supérieure à une valeur prédéterminée.
4. Système suivant l'une quelconque des revendications précédentes caractérisé en ce que le système comprend un moyen (8) pour transmettre à l'unité de commande un signal
de pluie indicatif d'une chute de pluie, et l'unité de commande comprend un moyen
pour rendre ou maintenir la pompe inactive s'il pleut à l'endroit de la côte où les
moyens de distribution d'eau sont situés.
5. Système suivant l'une quelconque des revendications précédentes caractérisé en ce que le système comprend un moyen (9) pour transmettre à l'unité de commande un signal
d'humidité indicatif de la teneur en eau du sable à proximité du moyen de distribution
d'eau.
6. Système suivant l'une quelconque des revendications précédentes caractérisé en ce que l'entrée comprend un moyen pour empêcher le sable de pénétrer dans la conduite d'entrée
et/ou pour réduire la quantité de sable qui pénètre dans la conduite d'entrée.
7. Système suivant l'une quelconque des revendications précédentes caractérisé en ce que le moyen de distribution d'eau est mobile.
8. Système suivant l'une quelconque des revendications précédentes caractérisé en ce qu'un dispositif de sécurité est prévu autour de l'entrée.
9. Système suivant l'une quelconque des revendications précédentes caractérisé en ce que l'entrée, en service, aspire l'eau à partir d'un volume d'eau situé à proximité.
10. Système suivant la revendication 9 caractérisé en ce que l'entrée est située à une certaine distance du rivage.
11. Système suivant la revendication 10 caractérisé en ce que, en service, l'entrée aspire des eaux souterraines du sol.
12. Procédé pour la stabilisation d'une côte sablonneuse comprenant les étapes de pompage
d'eau à partir:
- d'une entrée pour l'eau, par l'intermédiaire d'une conduite d'entrée partant de
l'entrée, d'une station de pompage et d'une conduite de sortie partant de la station
de pompage, jusqu'à
- un ou plusieurs moyen(s) de distribution d'eau situé(s) sur la côte sablonneuse
ou au niveau de celle-ci afin d'humidifier le sable autour et/ou à proximité des moyens
de distribution d'eau, en transmettant à l'unité de commande un signal de vent indicatif
de la force du vent et en commandant l'action de la pompe par l'intermédiaire du moyen
de commande.