EP3339536B1 - Bassin de natation comprenant un canal d'alimentation délocalisé dans le sol - Google Patents

Bassin de natation comprenant un canal d'alimentation délocalisé dans le sol Download PDF

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Publication number
EP3339536B1
EP3339536B1 EP16205434.0A EP16205434A EP3339536B1 EP 3339536 B1 EP3339536 B1 EP 3339536B1 EP 16205434 A EP16205434 A EP 16205434A EP 3339536 B1 EP3339536 B1 EP 3339536B1
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EP
European Patent Office
Prior art keywords
swimming pool
feed channel
inflow openings
bottom wall
fresh water
Prior art date
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EP16205434.0A
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German (de)
English (en)
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EP3339536A1 (fr
Inventor
Robert Dittmann
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Bodan Schwimmbadbau & Co KG GmbH
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Bodan Schwimmbadbau & Co KG GmbH
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Publication of EP3339536A1 publication Critical patent/EP3339536A1/fr
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H4/00Swimming or splash baths or pools
    • E04H4/14Parts, details or accessories not otherwise provided for
    • E04H4/16Parts, details or accessories not otherwise provided for specially adapted for cleaning
    • E04H4/169Pool nozzles

Definitions

  • the present invention relates to a swimming pool or the like with an external ground supply channel, a supply channel and a method for producing or converting a swimming pool or the like, according to claims 1, 2, 10 and 12.
  • fresh water and/or water treatment agents are supplied to the relevant pool in the usual way, at least from time to time, via an appropriate supply system.
  • an appropriate supply system for example, by means of feed elements formed on the bottom of the basin and/or integrated into it.
  • DE 29 12 336 C2 a device consisting of inflow openings distributed over the bottom of a swimming pool or the like, which are covered by inflow plates arranged in built-in bodies for distributing and directing the water.
  • the DE 93 15 168 U1 reveals one Cover of a bottom inflow channel of a swimming pool lying in one plane with the rest of the pool floor, which has several openings spaced apart over the length with insert bodies inserted therein for the water inlet.
  • the EP 0 394 217 B1 discloses an inflow cover for fresh water or chemicals in swimming pool systems, which is arranged so that it covers an inflow channel embedded in the pool floor in alignment with the floor level of the swimming pool.
  • such "caught" objects can at least disrupt the proper supply of fresh water and/or water treatment products and/or the use of devices and/or pose a risk of damage to such devices.
  • the metals from coins, hairpins or the like can cause the pool material to become damaged cause damaging contact corrosion.
  • the prior art discloses the DE 24 24 775 Pool constructions for swimming pools in which, in order to solve expansion and flow problems, parts of the construction elements, preferably the edge parts, are simultaneously designed as a water management system, and further accommodate expansion of the pool elements.
  • the wall and floor elements have connecting parts on their edges that remain accessible from the inside of the pool.
  • beads, grooves or beads are formed into the bottom area, which can absorb temperature-related expansion stresses from the neighboring surface areas.
  • channel covers made of elastic material, such as hard PVC and the like are described for floor inflow channels sunk into the pool floor with continuous hook-shaped anchor tabs, which engage in grooves in the channel profile in such a way that they accommodate plus and minus tolerances in the width of the channel.
  • the water pressure in the canal should cause the anchor straps to be additionally pressed against the canal profile, thereby ensuring secure anchoring.
  • outflow nozzles are inserted into holes provided on the manhole covers. They are attached to the manhole covers by gluing or using elastically deformable clamps.
  • a conventional round tube is shown, on which a thin-walled pool floor is attached by hole welding.
  • Outflow openings or outflow nozzles can be installed in the center of the hole welding.
  • the US 4,324,009 discloses a swimming pool with a water supply line removably arranged on the bottom. This in turn is covered on the top with removable plates to allow access to its anchor bolts for dismantling purposes.
  • the FR 2 647 672 discloses a swimming pool structure for hydrotherapy with a trench formed in the pool floor, open towards the interior of the pool and covered with a removable grating. Fluid lines with perforations for introducing air bubbles into the trench and then into the basin are arranged on the bottom of the trench.
  • the object of the present invention is to eliminate, or at least minimize, these disadvantages.
  • the present invention relates, in a first embodiment, to a swimming pool or the like according to claim 1.
  • the inflow openings are preferably designed as passages in the wall in question. E.g. in the form of punchings, holes, cutouts and/or the like.
  • the swimming pool floor surface be kept free of any covers, in particular channel covers and/or related accessory elements and the like, as well as associated depressions, slots, grooves and the like. In particular also free of unfixed parts. This has the effect of eliminating the possibility of misplacement of such parts and/or objects becoming entangled therein, and the associated hazards to persons and equipment.
  • the present invention relates to a swimming pool or the like, according to claim 2.
  • these two embodiments offer, in a technically advantageous manner, the possibility of designing the supply channel separately from the swimming pool base body, and in particular of arranging it outside the interior of the swimming pool.
  • At least one opening can be provided in the base body of the bottom wall. Especially for the integration of the coverage-free trained inflow openings and / or for the formation of the partial area of the swimming pool floor formed by the supply channel.
  • the opening in the bottom wall thus enables access to the interior of the swimming pool from the outside and the necessary supplies, such as. B. the supply channel. This in turn facilitates and simplifies its production and handling.
  • the swimming pool can be designed such that the supply channel is connected to the bottom wall so that it is flush with the material.
  • the supply channel can z. B. be attached with its outer surface against the underside of the pool wall, so that a height offset occurs in the connection cross section to the extent of the material thickness of the bottom wall.
  • This height offset can be achieved by appropriate measures, e.g. B. with a view to smoothing the swimming pool floor, can be designed to run. For example, by beveling the edges and/or by a correspondingly designed connection of the two materials, e.g. B. by means of a weld seam that fills the height difference with an inclined surface.
  • the supply channel can have a greater width than the opening in the bottom wall to be closed by it, which enables the overall cross-section of the supply channel to be adapted to the required delivery rate of fresh water, regardless of the width of the opening in the bottom wall.
  • the supply channel can z. B. also inserted into the opening formed in the bottom wall and, preferably flush with the surface of the bottom wall on the inside of the swimming pool, connected to it. This has the advantage that the swimming pool floor can be made completely smooth.
  • any formation of projections and/or depressions, gaps, recesses and the like can be prevented, which in turn advantageously eliminates the associated risks of injuries to bathers, snagging and/or jamming of objects and/or devices, in particular Cleaning devices and their damage.
  • the supply channel can be particularly advantageously a hollow body formed separately from the bottom wall.
  • Another advantage is the possibility of providing a flat support surface for the bottom wall or the bottom plate of the swimming pool.
  • a flat support surface for the bottom wall or the bottom plate of the swimming pool Particularly in the joint areas of two floor walls or floor panels that are to be connected to one another.
  • at least one opening, but preferably several openings, can be formed in the base body in the joint area of the floor wall parts or floor plate parts to be connected. This means that when connecting the two floor walls, in particular through Welding, at the same time the corresponding connection to the supply channel can be made. In a single step.
  • this cover-free and recess-free design of the supply channel can also avoid negative effects with regard to flow behavior, dirt trapping and/or susceptibility to corrosion.
  • U profiles are easy to manufacture, e.g. B. also with rounded corner areas, i.e. without disadvantageous bends. They can also be easily connected to another workpiece, e.g. B. with a second “U” profile.
  • a corrosion-preventing, formed weld connection of the partial base body is considered particularly advantageous with regard to special surface quality.
  • a partial base body of the supply channel can have a cross-sectional taper along its course, in particular a trapezoidal cross-sectional taper.
  • a distributed arrangement of inflow openings, in particular with different inflow directions into the swimming pool, can also enable good distribution and rapid mixing of the fresh water supplied with the bathing water in the swimming pool.
  • the supply channel and/or a supply line supplying it can comprise an inspection opening, and/or also the pool floor.
  • Arranging an inspection opening in the supply line has the advantage that the supply channel is accessible from outside the swimming pool and no changes and/or interventions are required on either the supply channel or the pool floor.
  • arranging an inspection opening in the supply channel has the advantage that, in conjunction with an appropriately designed cover, this can simultaneously provide a further supply of fresh water into the swimming pool. This makes it possible to provide access to the interior of the feed channel for inspection, maintenance and/or repair purposes. In particular, this enables the introduction of e.g. B. a high-pressure cleaner, a so-called sewer robot and / or other maintenance and / or repair equipment in the feed channel.
  • the invention further relates to a supply channel according to claim 10.
  • An outer surface that can be firmly connected to a bottom wall of the swimming pool is formed on the supply channel.
  • the present invention also relates to a method for producing or converting a swimming pool or the like according to claim 12.
  • a supply channel for fresh water and / or water treatment agents is arranged with a bottom wall of the swimming pool, in the area of an opening of the swimming pool Bottom wall, firmly connected, in particular welded, so that its outer surface forms an inner part of the swimming pool floor.
  • FIG. 1 By way of example and schematically, a sectional view of a swimming pool 1 or the like, comprising a bottom wall 2 and a supply channel 3 for fresh water and/or water treatment agents.
  • the bottom wall 2 includes, for example, two bottom wall elements 2.1 and 2.2, which are connected by means of a bottom wall connection 2.3, e.g. B. a weld seam, are connected to one another in a fluid-tight manner.
  • Bottom wall elements 2.1 and 2.2 connected to one another in this way form the swimming pool floor on the inside of the swimming pool, which adjoins a side wall 5 of the swimming pool 1 at its edge area.
  • the side wall 5 in turn connects to an overflow channel 6 of the swimming pool 1.
  • a recess 2.4 and 2.5 are formed opposite each other in their abutting end faces.
  • each is semicircular, so that overall there is a circular recess in this area of the bottom wall 2.
  • a swimming pool element 7 This can either be formed in the bottom wall 2 and/or in a wall 4 of the feed channel 3 or be formed separately and connected to the bottom wall 2 and/or the feed channel 3. Particularly preferably again by means of a welded connection.
  • Such a swimming pool element 7 includes inflow openings 7.1, 7.2, 7.3 for supplying fresh water and/or water treatment agents from the supply channel 3 into the swimming pool 1.
  • the two inflow openings 7.1 and 7.2 shown have lateral flow components in order, for example, to achieve a good surface distribution of the fresh water supplied.
  • the inflow opening 7.3 can be designed with a substantially vertical flow guide.
  • several such swimming pool elements 7 can be arranged along the flow channel 3.
  • the orientation of the individual swimming pool elements 7 to one another, with regard to their lateral flow guides, can be different. For example, rotated by 45 degrees or 90 degrees around a vertical component.
  • the swimming pool element 7 is formed in the wall 4 of the supply channel 3 facing the bottom wall 2 of the swimming pool 1.
  • the swimming pool floor 2 provides the passage of fluid from the inside of the supply channel 3 into the interior of the swimming pool 1 by means of the recess 2.4, 2.5 formed therein.
  • connection between the pelvic floor 2 and the supply channel 3 can be reduced to the fluid-tight connection between the edges of the recesses 2.4, 2.5 and the wall 4 of the supply channel 3 arranged underneath.
  • Another advantage of arranging the supply channel 3 below the bottom wall 2 of the swimming pool 1 is that during the production of the swimming pool 1, a smooth and flat support surface can be provided for the individual bottom wall elements 2.1, 2.2, on which they can be easily arranged , aligned and finally connected to each other.
  • the supply channel 3 is composed of two elements 3.1 and 3.2 with a “U” profile in cross section. This can, for example, be joined together at the front and correspondingly connected to one another, for example welded. This makes it possible to provide a feed structure that is optimized with regard to flow guidance that is as resistance and turbulence-free as possible.
  • the interior of the supply channel 3, which here has a rectangular cross-section as an example no flow-hindering stabilization structures or the like are required anymore, such as would arise, for example, from the side walls of covers or manhole covers designed as folds of supply channels formed in the interior of swimming pools.
  • fixing elements 3.3 are arranged on this, here for example in the form of an angle with a fastening hole.
  • a part of the outer surface 4.1 of the supply channel 3 is a partial surface 2.6 of the swimming pool bottom that is connected to the bottom wall 2, in particular welded thereto.
  • this is the area of the surface 4.1 of the wall 4 of the supply channel 3 located within the recess formed from the two recess halves 2.4 and 2.5.
  • this partial area 2.6 includes the two elements 7.5 of the surface delimiting the inflow openings 7.1 and 7.2 4.1, which are deformed towards the inside of the supply channel and form the outlet openings 7.1 and 7.2 for the fresh water supply compared to the web 7.6 remaining between them in the surface 4.1 and itself (see also Fig. 4 ).
  • a comparatively larger opening can also be formed in the bottom wall 2, along the edges of which the supply channel 3 is connected to it in a fluid-tight manner, again preferably by welding.
  • These recesses which can basically be referred to as “windows”, can be designed in relation to the supply channel 3 in such a way that it is from the The underside of the bottom wall 2 can be fastened adjacent to the swimming pool floor and an offset in height is formed between the outer surface 4.1 of the supply channel 3 and the inside surface of the bottom wall 2 of the swimming pool.
  • the "window" in the bottom wall 2 of the swimming pool 1 is so large in relation to the supply channel 3 that it can be inserted into it and connected to it with essentially the same horizontal orientation, again preferably by welding, so that a total of essentially one smooth surface can be formed without vertical offset.
  • the Figure 2 shows, by way of example and schematically, a top view of a feed channel 3 with fixing elements 3.3 and inflow openings 7.1, 7.2, and 7.3.
  • a supply line 8 supplying it with fresh water and/or water treatment agents is shown on one end face of the supply channel 3.
  • this supply line 8 includes an inspection opening 10 in order to be able to provide access to the interior of the supply channel if necessary.
  • an inspection opening 10' can also be formed in the wall 4 of the supply channel, with a correspondingly designed cover 10'1, or 10.1 in the first embodiment.
  • Figure 3 is one for Figure 2 alternative embodiment of a supply channel 3 shown, in which the inflow openings 7.1 and 7.2 are shown with horizontal flow guides that are aligned twisted by, for example, 90 degrees relative to one another or between horizontal and vertical alignment.
  • the supply line 8 is connected here at the front to the supply channel 3 via an angle piece 8.1.
  • the Figure 4 shows a cross-sectional view of a supply channel according to the invention with a swimming pool element 7 formed therein.
  • Flow arrows 7.4 are symbolically represented for the water flows flowing out of the inflow openings 7.1, 7.2 and 7.3.
  • the Figure 5 shows, again by way of example and schematically, a comparatively enlarged section of a floor wall 2, consisting of two floor wall elements 2.1 and 2.2 connected to one another along a floor wall connection 2.3.
  • a floor wall 2 consisting of two floor wall elements 2.1 and 2.2 connected to one another along a floor wall connection 2.3.
  • two inflow openings 7.1 and 7.2 with horizontal flow guides or flow guides lying obliquely between horizontal and vertical orientation are shown, and three inflow openings 7.3 with a substantially vertical inflow direction.
  • the dashed lines along the bottom wall connection 2.3 and along the two, here for example semicircular recesses 2.4 and 2.5 symbolize welded connections 9, as are also partly shown in the example Figure 1 are shown.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Devices For Medical Bathing And Washing (AREA)

Claims (12)

  1. Bassin de natation (1) ou similaire, comprenant une paroi de fond (2), notamment une tôle de fond, et un canal d'amenée (3) pour de l'eau fraîche et/ou des agents de traitement de l'eau, le canal d'amenée (3) étant réalisé séparément du corps de base de bassin de natation et étant agencé à l'extérieur de l'espace intérieur de bassin de natation et réalisant une surface d'appui plane pour la paroi de fond (2) et/ou la tôle de fond du bassin de natation (1), caractérisé en ce que des ouvertures d'entrée (7.1, 7.2, 7.3) réalisées sans couverture sont intégrées dans une paroi (4) du canal d'amenée (3), vers le côté intérieur du bassin de natation (1), les ouvertures d'entrée (7.1, 7.2) présentant des composants d'écoulement latéraux afin d'obtenir une bonne répartition en surface de l'eau fraîche amenée et des éléments (7.5) de la surface (4.1) du canal d'amenée (3) délimitant les ouvertures d'entrée (7.1 et 7.2) étant présents, qui sont déformés en direction du côté intérieur du canal d'amenée, et en ce que les ouvertures d'entrée (7.1 et 7.2) pour l'amenée d'eau fraîche et/ou d'agents de traitement de l'eau sont réalisées entre une nervure (7.6) subsistant entre les éléments (7.5) dans la surface (4.1) du canal d'amenée (3) et l'élément respectif (7.5) lui-même.
  2. Bassin de natation (1) ou similaire, comprenant une paroi de fond (2), notamment une tôle de fond, et un canal d'amenée (3) pour de l'eau fraîche et/ou des agents de traitement de l'eau, le canal d'amenée (3) étant réalisé séparément du corps de base de bassin de natation et étant agencé à l'extérieur de l'espace intérieur de bassin de natation et réalisant une surface d'appui plane pour la paroi de fond (2) et/ou la tôle de fond du bassin de natation (1), une partie de la surface extérieure (4.1) du canal d'amenée (3) réalisant une surface partielle (2.6) du fond de bassin de natation, côté intérieur du bassin de natation, reliée à la paroi de fond (2), notamment soudée à celle-ci, caractérisé en ce que des ouvertures d'entrée (7.1, 7.2) dans une paroi (4) du canal d'amenée (3) présentent des composants d'écoulement latéraux afin d'obtenir une bonne répartition en surface de l'eau fraîche amenée, et des éléments (7.5) de la surface (4.1) du canal d'amenée (3) délimitant les ouvertures d'entrée (7.1 et 7.2) sont déformés en direction du côté intérieur du canal d'amenée, et les ouvertures d'entrée (7.1 et 7.2) pour l'amenée d'eau fraîche sont réalisées par rapport à une nervure (7.6) subsistant entre eux dans la surface (4.1) du canal d'amenée (3) et l'élément respectif (7.5) lui-même.
  3. Bassin de natation (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que les ouvertures d'entrée (7.1, 7.2, 7.3) sont agencées de manière répartie dans le bassin de natation afin de permettre une bonne répartition et un mélange rapide de l'eau fraîche amenée avec l'eau de baignade se trouvant dans le bassin de natation.
  4. Bassin de natation (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que les ouvertures d'entrée (7.1, 7.2, 7.3) présentent des directions d'entrée différentes.
  5. Bassin de natation (1) selon l'une quelconque des revendications précédentes, caractérisé en ce qu'au moins une ouverture (2.4, 2.5) est prévue dans le corps de base de la paroi de fond (2), notamment pour l'intégration des ouvertures d'entrée (7.1, 7.2, 7.3) réalisées sans couverture et/ou pour la réalisation de la surface partielle (2.6) du fond de bassin de natation formée par le canal d'amenée (3).
  6. Bassin de natation (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que le canal d'amenée (3) est relié à la paroi de fond (2) de manière à être à fleur de matériau.
  7. Bassin de natation (1) selon l'une quelconque des revendications précédentes, caractérisé en ce qu'un corps de base partiel du canal d'amenée (3) présente un profil en « U » en section transversale.
  8. Bassin de natation (1) selon l'une quelconque des revendications précédentes, caractérisé en ce qu'un corps de base partiel du canal d'amenée (3) présente le long de son tracé un rétrécissement de la section transversale, notamment un rétrécissement de la section transversale en forme de trapèze.
  9. Bassin de natation (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que le canal d'amenée (3) comprend une ouverture de révision, notamment sur un côté frontal du canal d'amenée (3).
  10. Canal d'amenée (3) pour de l'eau fraîche et/ou des agents de traitement de l'eau pour l'alimentation à cet effet d'un bassin de natation (1), le canal d'amenée (3) étant réalisé séparément d'un corps de base de bassin de natation et étant agencé à l'extérieur de l'espace intérieur de bassin de natation et réalisant une surface d'appui plane pour une paroi de fond (2) et/ou une tôle de fond du bassin de natation (1), une surface extérieure (4.1) pouvant être reliée de manière fixe à une paroi de fond (2) du bassin de natation (1) étant réalisée sur le canal d'amenée (3), caractérisé en ce que des ouvertures d'entrée (7.1, 7.2) dans une paroi (4) du canal d'amenée (3) présentent des composants d'écoulement latéraux afin d'obtenir une bonne répartition en surface de l'eau fraîche amenée, et des éléments (7.5) de la surface (4.1) du canal d'amenée (3) délimitant les ouvertures d'entrée (7.1 et 7.2) sont déformés en direction du côté intérieur du canal d'amenée, et les ouvertures d'entrée (7.1 et 7.2) pour l'amenée d'eau fraîche sont réalisées par rapport à une nervure (7.6) subsistant entre eux dans la surface (4.1) du canal d'amenée (3) et l'élément respectif (7.5) lui-même.
  11. Canal d'amenée (3) selon la revendication 10, caractérisé en ce qu'un corps de base partiel du canal d'amenée présente un profil en « U » en section transversale.
  12. Procédé de fabrication ou de transformation d'un bassin de natation (1) ou similaire, dans lequel un canal d'amenée (3) pour de l'eau fraîche et/ou des agents de traitement de l'eau est réalisé séparément du corps de base de bassin de natation et est agencé à l'extérieur de l'espace intérieur de bassin de natation, afin d'obtenir une surface d'appui plane pour la paroi de fond (2) et/ou la tôle de fond du bassin de natation (1), le canal d'amenée (3) étant agencé sur la paroi de fond (2) du bassin de natation (1) à partir de son côté inférieur, et étant relié fixement, notamment soudé, à la paroi de fond (2) dans la zone d'une ouverture de celle-ci, de telle sorte que sa surface extérieure (4.1) réalise une surface partielle du fond de bassin de natation, côté intérieur du bassin de natation, caractérisé en ce que des ouvertures d'entrée (7.1, 7.2) dans une paroi (4) du canal d'amenée (3) réalisent des composants d'écoulement latéraux afin d'obtenir une bonne répartition en surface de l'eau fraîche amenée, et des éléments (7.5) de la surface (4.1) du canal d'amenée (3) délimitant les ouvertures d'entrée (7.1 et 7.2) sont déformés en direction du côté intérieur du canal d'amenée, et les ouvertures d'entrée (7.1 et 7.2) pour l'amenée d'eau fraîche sont réalisées par rapport à une nervure (7.6) subsistant entre eux dans la surface (4.1) du canal d'amenée (3) et l'élément respectif (7.5) lui-même.
EP16205434.0A 2016-12-20 2016-12-20 Bassin de natation comprenant un canal d'alimentation délocalisé dans le sol Active EP3339536B1 (fr)

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EP3339536A1 EP3339536A1 (fr) 2018-06-27
EP3339536B1 true EP3339536B1 (fr) 2024-01-31

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Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AT339006B (de) * 1973-06-22 1977-09-26 Linecker Josef Schwimmbecken
US4324009A (en) * 1980-05-01 1982-04-13 Hornsby Roger L Swimming pool and water supply system
FR2647672B1 (fr) * 1989-06-02 1991-09-06 Dax Thermale Ensemble pour equipement de piscines d'hydrotherapie et piscine dotee d'un tel ensemble

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