EP2400081A1 - Construction de piscine flottante - Google Patents
Construction de piscine flottante Download PDFInfo
- Publication number
- EP2400081A1 EP2400081A1 EP11170754A EP11170754A EP2400081A1 EP 2400081 A1 EP2400081 A1 EP 2400081A1 EP 11170754 A EP11170754 A EP 11170754A EP 11170754 A EP11170754 A EP 11170754A EP 2400081 A1 EP2400081 A1 EP 2400081A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- water
- pool
- side barrier
- construction
- pool construction
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
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Classifications
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04H—BUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
- E04H4/00—Swimming or splash baths or pools
- E04H4/0012—Floating swimming pools
Definitions
- the present invention relates to a floating pool construction with an insulating side barrier.
- Floating pool constructions are known. The main purpose for most floating pool constructions are, to create a safe zone to protect the swimmers from dangers occurring when swimming in open sea, or to assure hygienic and clean water.
- the object of the invention is to suggest a pool construction that can facilitate a pleasant swimming environment in natural cold waters, and which is relative inexpensive in construction and maintenance.
- the invention is based on the fact that as long as water has a temperature above 4°C, the density of the warmer water is lower than the density of the colder water, and further on the discovery that a very low temperature exchange appears between two horizontal layers of water with different temperatures.
- a floating pool construction is provided with a side barrier comprising at least a side wall with at least a first thermal insulating layer.
- Pool construction comprising a frame of floating elements and a side barrier, whereby the pool construction is adapted to float in water.
- the floating elements are dimensioned to keep the pool construction floating.
- the side barrier is attached to the frame of floating elements and is adapted to enclose a surface area defining a pool.
- the side barrier is adapted to extend from the floating elements, down in the water and thereby defining a depth of the pool. Said side barrier continues around the whole circumference of the surface area of the pool such that, water on one side of the first side barrier is horizontally isolated from water on the other side of the first side barrier.
- the shape of the pool is not limited; it can be rectangular, circular, oval, or arbitrary. In a standard construction both the floating elements and the pool have a rectangular shape.
- the floating elements can be any common used floating elements, however floating elements with a first material for structural support and a second light weight buoyancy material is preferred.
- the elements can be forced together with known means such as a wire connection.
- the floating elements can also be placed with a distance to each other, as long as the side barrier still extends continuously around the pool.
- said barrier comprises at least a first thermal insulating layer, which insulates the mass of water on a first side of the side barrier and the mass of water the other side of the side barrier such, that just an insignificant, or no temperature exchange, can take place between the two water masses.
- the first side barrier is water impermeable, whereby the water within the first side barrier and the water outside it can not mix with each other and thereby can the temperature of the two bodies of water not been even out through blending.
- the side barrier has the thermal insulating layer, which secures that there will be just an insignificant or none temperature exchange between the body of water inside the pool and the surrounding body of water. Thereby, the body of water in the floating pool can keep a higher water temperature than the surrounding body of water, without any significant energy losses.
- said side barrier comprises at least a first and a second wall, wherein said first and second wall are located essentially parallel to one another and that a gap is located between the two walls.
- the walls comprise at least a first material adapted to structural support the wall.
- the gap is open at least at its lower end, wherein said gap is adapted to be filled with water, when the pool is floating in a body of water.
- the water filled gap thereby forms said first insulating layer.
- the water within the gap will have a temperature in between the temperature within the pool and the water temperature of the surrounding water body.
- first and the second wall can be formed such, that it is open just in its lower end and the gap can be filled with air, that than forms the first insulating layer.
- An embodiments with at least two walls with a gap between as the first side barrier has the advantage that no extra material have to be added to create the insulating layer. Thereby, the cost for production of such an embodiment of the floating pool construction is cut and it is light weight.
- Said first and second wall according to the above described embodiments are adapted to horizontally isolate water on first respectively second walls one side from water on its second side.
- both the first and the second side wall is water impermeable.
- the side barrier is adapted to extend at least 1,5 and preferably 2,5 and even more preferably 4 meters down in the body of water. Obviously, the side barrier can extend even further down in the water if desired. Further, the side barrier can be extended with an extension wall without an insulating layer, this extension wall would than just be to isolate the body of water in the pool from the body of water outside the pool such that, any currents or disturbances in the body of water surrounding the pool does not disturb the body of water inside the pool and vice versa.
- the swimming season can be extended in areas with an otherwise short summer season and with unreliable weather conditions.
- the water inside the pool is can be heated and is kept in the pool, even by changed wind conditions.
- the insulating layer prevent an extensive heat transfer from the body of water inside the pool to the surrounding body of water, even when the surrounding body of water has become a lower temperature.
- the floating pool construction can further be equipped with a deck for sunbathing, game areas, cafés and/or other recreational areas.
- the floating pool construction is adapted to be anchored in the bottom of lake/sea, a boat/other floating construction, or anchored to the shore. Due to its modular construction, it can be manufactured on a production site and whereby the modules can be transported to the place where the pool construction is to be used. The pool can also be dragged in water to the wished location.
- said side barrier consists of a first wall, wherein said first wall comprises just the insulating layer.
- the first wall can alternatively comprise at least two different materials, a first material adapted to structural support of the wall, and a second material adapted to have insulation properties better than the first material.
- the insulating layer is thereby mainly formed by the second material.
- the first material is supporting the wall such that it keeps it form and withstands outer influences on the structure.
- An improved embodiment of the floating pool construction with a barrier with two side walls comprises a second insulating layer of a second material.
- the second material is adapted to have insulation properties better than the first material.
- Said second material is arranged on or at least in close contact with either the first or the second wall.
- the first material i.e. the material which brings the structural support to the first and/or second side wall is advantageously reinforced concrete or a flexible sheet material or a metallic sheet material or wooden material. These materials have different properties, and each can be chosen by the person skilled in the art, depending on the occasion.
- reinforced concrete chosen as a support material.
- the reinforced concrete gives a rigid, durable structure which also is inexpensive to produce.
- a flexible sheet material of for example a polymer gives a flexible wall which takes less space during transport and is light weight, a flexible sheet material would also be inexpensive.
- a metallic material as the first material will offer a rigid and durable structure.
- the second material i.e. the material with the better insulation properties than the support material, advantageously comprises a cellular polymer, e.g. polystyrene foam, or a wooden material.
- a cellular polymer e.g. polystyrene foam, or a wooden material.
- a cellular polymer has very good thermal insulating properties and adheres to the buoyancy of the construction.
- the pool construction is supplied with a heating device.
- Said heating device is adapted to heat the body of water within the pool.
- a suitable heating device is a heat pump or connection to a district central heating.
- a further improvement that extends the season for using the pool is a top construction defining a roof and/or a wall to the floating pool construction.
- Said top construction is preferably adapted to use the solar energy to heat the water within the first side barrier, thereby can the pool be heated by the sun energy during sunny days and/or by other heating devices when necessary.
- the floating pool construction according to the present invention is not in need of a floor or bottom. It has been discovered, that the heat exchange between two layers of water with different temperature is negligible in comparison with the heat horizontal heat transfer and the heat lost to the atmosphere during colder days. However, if desired, the floating pool construction according to the invention can still be equipped with a floor or bottom, for example a wire netting to prevent fish and other water animals to swim into the pool.
- the side barrier shall have a heat transfer rate lower than 30 W/(m 2* K), (watts per meter squared-Kelvin), preferably lower than 15 W/(m 2* K) and even more preferably lower than 5 W/(m 2* K).
- the heat transfer rate is calculated for the barrier when it is submerged in water, and shows the amount of heat in Joule that is transferred, from a warmer body of water on one side of the side barrier to a colder body of water, through one m 2 of the barrier per second, if the temperature difference between the two bodies of water is 1 Kelvin.
- a low heat transfer rate as presented above, would secure that the temperature of the water in the pool could be kept at a pleasant temperature, without high energy consumption and during a long time.
- FIG 1 is a side view of a floating pool construction 1 according to invention shown.
- the floating pool construction 1 is characterised by the inventive side barrier 4, which comprises at least one insulating layer 7.
- the side barrier 4 and different embodiments thereof are shown in figure 3a - 3b .
- the side barrier 4 assures that the heat transfer between the body of water 2 surrounding the pool construction and the body of water 2' inside the pool is kept to a minimum.
- the side barrier 4 can be made of one insulating material or of several materials, wherein at least one material has insulating properties.
- the top construction 15 can be seen.
- the top construction 15 of this example has both a roof and side walls, whereby it protects the users of the pool from external forces, such as wind, rain and possibly hazardous radiation from the sun.
- the top construction 15 allows a suitable air temperature within it.
- the air temperature within the top construction can thereby be held closer to, and preferably above, the temperature of the body of water 2' in the pool.
- FIG. 2 A view from above of a floating pool construction 1 with a frame 3 of floating elements 6 is shown in figure 2 .
- the floating elements 6 are rectangular, just as the frame 6 they form.
- the invention is not dependent thereon; the floating elements 3 as well as the frame 3 can be constructed to have any other suitable shape.
- the floating elements 3 forms just a half circle or any other not closed shape, whereby the side barrier extends between the ends of the not closed shape and defines the surface area 5 of the pool. Nevertheless, a closed and rectangular shape will be used for reasons of simplicity of explanation.
- the figures 3a - 3e shows a cut out view of the floating pool construction 1 of figure 2 , wherein each figure shows a different embodiment of the side barrier 4.
- the side barrier in figure 3a is integrally formed with the floating elements 6, whereby a first side wall 8 extends downwards from the floating element 6 and thereby forms the side barrier 4.
- the wall 8 comprises a first and a second material 9, 10.
- the first material 9 is for structural support of the wall 8 and the second material 10 is attached to or at least in close contact with the first material 9 and forms the thermal insulating layer 7.
- the second material is according to the shown embodiment integrally formed with the floating material of the floating element 6.
- the side barrier 4 also formed as a first side wall 8, wherein in this embodiment is the side wall 8 a separate module which is attached to the floating element 6.
- the first wall 8 comprises a first and a second material 9, 10.
- the first material 9 is for contractual support of the wall 8 and the second material 10 is attached to or at least in close contact with the first material 9 and forms the thermal insulating layer 7.
- the side barrier 4 has a first and a second side wall 11, 12.
- the two side walls 11, 12 are parallel to each other and between them a gap 13 is formed.
- the gap 13 is adapted to be filled with water, wherein the water within the gap 13 forms the insulating layer 14.
- the water filled gap 13 will become a temperature in between the temperature of the body of water 2' within the pool and the surrounding body of water 2. For example as shown in the figures 15°C, if the temperature of the body of water 2' in the pool is 22°C and the body of water 2 surrounding the pool is 10°C.
- the side barrier 4 also has a first and a second side wall 11, 12, as in figure 3c .
- the first side wall 11 has both a first and a second material 9, 10.
- the first material 9 is for structural support of the wall 11 and the second material 10 is attached to, or at least in close contact with the first material 9 and forms the thermal insulating layer 7.
- the side barrier 4 becomes thereby two insulating layers 7, 14; the water filled gap 13 and the second material 10.
- the embodiment of the floating pool construction 1 according to figure 3e only differs from the embodiment in figure 3d in that it has a third insulating layer 16, in that both it walls 11, 12 are coated with the second material 10.
- the two walls 11, 12 of the side barrier 4 can be connected with a bottom (not shown) at their lower edge.
- the gap is slowly filled with water as the side barrier 4 is launched in the water.
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- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Building Environments (AREA)
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
SE1050664 | 2010-06-22 |
Publications (2)
Publication Number | Publication Date |
---|---|
EP2400081A1 true EP2400081A1 (fr) | 2011-12-28 |
EP2400081B1 EP2400081B1 (fr) | 2015-12-16 |
Family
ID=44721132
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP11170754.3A Not-in-force EP2400081B1 (fr) | 2010-06-22 | 2011-06-21 | Construction de piscine flottante |
Country Status (2)
Country | Link |
---|---|
EP (1) | EP2400081B1 (fr) |
DK (1) | DK2400081T3 (fr) |
Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
FR2229026A1 (fr) * | 1973-05-12 | 1974-12-06 | Friedel Wolfgang | |
FR2363754A1 (fr) * | 1976-08-31 | 1978-03-31 | Cicero | Jupe pour le stockage de l'eau chaude |
DE20300710U1 (de) * | 2002-01-25 | 2003-03-27 | Di Francesconi Edelstahltechnik Gmbh, Kapfenberg | Einrichtung zur Abgrenzung und Erwärmung eines Schwimmbereiches innerhalb eines Gewässers |
US20030228195A1 (en) | 2000-08-21 | 2003-12-11 | Masaru Mizutani | Pool using deep-sea water and its surrounding facilities |
-
2011
- 2011-06-21 DK DK11170754.3T patent/DK2400081T3/en active
- 2011-06-21 EP EP11170754.3A patent/EP2400081B1/fr not_active Not-in-force
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
FR2229026A1 (fr) * | 1973-05-12 | 1974-12-06 | Friedel Wolfgang | |
FR2363754A1 (fr) * | 1976-08-31 | 1978-03-31 | Cicero | Jupe pour le stockage de l'eau chaude |
US20030228195A1 (en) | 2000-08-21 | 2003-12-11 | Masaru Mizutani | Pool using deep-sea water and its surrounding facilities |
DE20300710U1 (de) * | 2002-01-25 | 2003-03-27 | Di Francesconi Edelstahltechnik Gmbh, Kapfenberg | Einrichtung zur Abgrenzung und Erwärmung eines Schwimmbereiches innerhalb eines Gewässers |
Also Published As
Publication number | Publication date |
---|---|
EP2400081B1 (fr) | 2015-12-16 |
DK2400081T3 (en) | 2016-03-14 |
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