EP2599935B1 - Puits d'aération et/ou de lumière et ensemble pour la fabrication d'un puits d'aération et/ou de lumière - Google Patents

Puits d'aération et/ou de lumière et ensemble pour la fabrication d'un puits d'aération et/ou de lumière Download PDF

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Publication number
EP2599935B1
EP2599935B1 EP12194733.7A EP12194733A EP2599935B1 EP 2599935 B1 EP2599935 B1 EP 2599935B1 EP 12194733 A EP12194733 A EP 12194733A EP 2599935 B1 EP2599935 B1 EP 2599935B1
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EP
European Patent Office
Prior art keywords
modules
shaft
light
side wall
ventilation shaft
Prior art date
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Application number
EP12194733.7A
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German (de)
English (en)
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EP2599935A2 (fr
EP2599935A3 (fr
Inventor
Arne Meincke
Sven Reinisch
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ACO Ahlmann SE and Co KG
Original Assignee
ACO Severin Ahlmann GmbH and Co KG
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Publication of EP2599935A2 publication Critical patent/EP2599935A2/fr
Publication of EP2599935A3 publication Critical patent/EP2599935A3/fr
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Publication of EP2599935B1 publication Critical patent/EP2599935B1/fr
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F17/00Vertical ducts; Channels, e.g. for drainage
    • E04F17/06Light shafts, e.g. for cellars

Definitions

  • the invention relates to a light and / or ventilation shaft, comprising at least one side wall and optionally a bottom. Furthermore, the invention relates to a set for the production of a light and / or ventilation shaft and a corresponding manufacturing method. Furthermore, the invention relates to the use of at least two modules for the production of a bottom or side wall of a light and / or ventilation shaft.
  • Light wells such as basement light wells are known in the art. Such light wells are usually prepared as finished parts and attached, for example, with flanges on a building exterior wall. After assembly, soil can be filled outside the shaft. Above the shaft, a grid or the like may be applied. Such a generic light shaft, for example, the DE 77 18 545 U be removed.
  • the DE 20 2005 000 442 U1 known to form the shaft of several modules, which are placed on each other in the vertical direction. This should be feasible different light shaft heights.
  • the US 7,770,340 B2 describes a light well, which consists of several superimposed Modules exists.
  • the modules consist of mutually opposite side walls and a front wall, so that overall an approximately U-shaped layout of the modules is formed. The side walls are locked to the front wall. The superimposed side or front walls of the individual modules form side walls or a front wall of the entire light shaft.
  • Modular built shafts are also from the US 2007/0089373 A , the DE 69 15 236 U and the DE 73 18 128 U known. From the WO 2004/074593 A1 are modular panels that can be assembled into three-dimensional structures known.
  • a light and / or ventilation shaft as well as a set or method for the production of such a light and / or ventilation shaft to propose, the production costs, especially with varying requirements, should be further reduced.
  • the object is achieved by a light and / or ventilation shaft, wherein the light and / or ventilation shaft, at least one side wall and a bottom comprises and wherein the bottom has at least two preferably identical floor modules connected to each other via a connecting device are.
  • a first principle of the present invention is to form the bottom of a light and / or ventilation shaft, modular.
  • light shafts with a different width can be produced in a simple manner with comparatively few individual elements.
  • the manufacturing costs are reduced overall, the flexibility of the light and / or ventilation shaft is increased.
  • the at least two floor modules can be identical, but also have different shapes or dimensions. In any case allows the modular design that, for example, by removing or adding another module, a comparatively simple adjustment can be made.
  • the light and / or ventilation shaft comprises at least one side wall and optionally a bottom, wherein the side wall comprises at least two, preferably identical, side modules which are connected to each other via a connecting device and side by side (in a horizontal arrangement), are arranged in alignment ,
  • the side wall comprises at least two, preferably identical, side modules which are connected to each other via a connecting device and side by side (in a horizontal arrangement), are arranged in alignment ,
  • a high flexibility in the production with consequent lower production costs can be achieved by the modular design of the side wall.
  • the fact that the side modules are arranged side by side, aligned with each other, can easily (or possibly more) sidewall (sidewalls) are easily extended or shortened (for example, by removing one of the side modules or adding another page modulus).
  • module (be it side module, bottom module or cover module) is to be understood in particular as an element which forms essential sections of the side wall or of the floor or of a cover, e.g. at least 5%, preferably at least 10%, more preferably at least 30% of an entire side wall or an entire bottom or an entire lid.
  • module should not be understood to mean any element which merely serves for attachment or connection and has no (substantial) proportion of an overall surface area of the side wall or of the bottom or of the lid.
  • At least three, more preferably at least five bottom and / or side modules are provided.
  • the flexibility can be further increased.
  • floor and / or side modules may have curved sections or be curved overall.
  • the bottom and / or side modules are designed as plane (board-shaped) elements or boards.
  • the shaft or light shaft can be in a horizontal Cross-section rectangular, or U-shaped (possibly with rounded corners) may be formed.
  • a cover element in particular a grate, can be arranged.
  • the cover element may comprise at least two cover modules.
  • the cover modules can be designed in principle (in particular with regard to a connection and / or with respect to their number and / or shape and / or size) on the side and / or bottom modules.
  • the surfaces of the juxtaposed side modules define a common plane at least in a connection region or a respective connection region of, for example, at least 5% (or at least 10%) of an extension perpendicular to one Connection constant, located in a common plane.
  • a connection via a corner or a rounded connection area should be excluded.
  • the side modules are preferably identical, but may also be designed differently (in terms of shape and / or dimensioning).
  • the connecting device comprises a plug connection (preferably a tongue and groove connection) for connecting two side and / or bottom modules.
  • a plug connection preferably a tongue and groove connection
  • the side and bottom modules can be particularly easily solved or assembled from each other, which reduces the manufacturing cost.
  • the side wall and / or the bottom and / or at least one side module and / or at least one bottom module is designed as a hollow chamber profile or comprises at least one hollow chamber profile, preferably within the at least one hollow chamber profile, a stiffening element, preferably a stiffening tube and / or stiffening profile , is provided.
  • a stiffening element preferably a stiffening tube and / or stiffening profile
  • At least one stiffening element can also be provided without the formation of a hollow chamber profile and / or on an outer and / or inner surface of the side or bottom wall and / or the side or floor module.
  • an upper side wall edge may include a fastening device, in particular comprising a recess or a projection, preferably a slip-on profile, such that a cover element, in particular grate, of the shaft, in particular light and / or ventilation shaft, are connected to the sidewall edge can.
  • a fastening device in particular comprising a recess or a projection, preferably a slip-on profile, such that a cover element, in particular grate, of the shaft, in particular light and / or ventilation shaft, are connected to the sidewall edge can.
  • the side wall and / or the bottom can be sealed watertight, in particular by means of a support such as a film and / or a sealing tape.
  • a support such as a film and / or a sealing tape.
  • At least two side and / or bottom modules can be of different sizes, in particular have a different width and / or length.
  • side or floor modules are designed as board-shaped, planar elements, a different width or depth of the shaft, in particular light and / or ventilation shaft, can be achieved in a simple manner by a different width of the individual modules.
  • At least two side and / or floor modules may be rectangular.
  • At least one cover element receiving strip is provided for at least one cover element, such as a grate, wherein the cover element receiving strip more preferably covers upper edges of at least two side modules.
  • a cover element receiving strip By such a cover element receiving strip, a fixing of the cover element or grate can be realized in a simple manner. If the cover element receiving strip additionally covers edges of at least two (or possibly all) side modules of a side wall, this synergistically achieves that in addition the (entire) side wall is stabilized. In other words, with just one Element equal to two important functions are taken into account. As a result, the manufacturing costs are lowered in a synergetic manner.
  • each edge of at least two modules may be included in a connection bar.
  • the connection bar can be located, for example as a double C-profile, between the two side or floor modules.
  • the connection strip can, for example, as a U-profile, record two edges of the at least two side and / or bottom modules, which are arranged one behind the other, for example - with respect to the side modules - an upper or lower edge.
  • connection strips Due to the connection strips in combination with the modular structure, a flexible adaptation can be done with little effort.
  • At least two (or at least three) soil modules can form at least 10% each, preferably 20%, more preferably 30% of the soil.
  • At least two (or at least three) side modules may correspondingly form at least 10%, preferably at least 20%, more preferably at least 30% of a sidewall.
  • the invention comprises a light and / or ventilation shaft, wherein a (vertically extending) Eckaus brieflyung is provided such that the shaft can be attached to a corner building to a building, wherein the bottom (10) preferably a plurality of parallel floor modules ( 18), further preferably, a first plurality of floor modules (18) having a first length and a second plurality of floor modules (18) having a second length different from the first length.
  • corner ducts are particularly flexible and can be easily adapted to different geometries.
  • an adjustment of a corner slot can be done very easily.
  • An arrangement of the shaft over the corner makes it particularly easy to realize a supply air and / or exhaust air duct.
  • a heat pump can be installed comparatively easily.
  • a light shaft to be installed can thus extend around the corner of a house wall.
  • the depth and width of the shaft, in particular light or ventilation shaft can be designed individually to cross-sectional shapes of each system used.
  • the invention comprises a shaft, in particular light and / or ventilation shaft, wherein a (vertically oriented or alignable) partition provided or in the shaft, in particular light or ventilation shaft, is introduced to divide the shaft into two sub-shafts.
  • a (vertically oriented or alignable) partition provided or in the shaft, in particular light or ventilation shaft, is introduced to divide the shaft into two sub-shafts.
  • an optionally removable or usable partition of the shaft can be particularly easily adapted to a particular preferred use.
  • the partition wall allows separation of air-bearing compartments (for the supply and exhaust air).
  • the partition should in particular be able to be mounted or removed so that mounting or fastening means are not destroyed (when removing the partition).
  • the mounting means should preferably be used repeatedly (as distinct from integral or permanent attachment, such as by welding or gluing).
  • the partition with the shaft in particular light shaft and / or ventilation shaft, be firmly connected. This achieves a stable overall construction.
  • a set for the production of a light shaft and / or ventilation shaft preferably of the type described above, comprising at least one side wall and a bottom, wherein the bottom has at least two floor modules, which are connected to each other via connecting means, wherein the at least one side wall comprises at least two side modules which are interconnected via connecting means and are arranged side by side or one above the other, flush with each other, the side modules and bottom modules being such that the width and / or depth of the Light and / or ventilation shaft, using the modules can be varied, with at least one side module and / or at least one floor module as Hollow chamber profile is formed or comprises at least one hollow chamber profile, wherein preferably within the at least one hollow chamber profile, a stiffening element, preferably a stiffening tube and / or a stiffening profile is provided.
  • the width and / or depth of the shaft, in particular light and / or ventilation shaft should be able to be changed by adding or removing one of the modules.
  • a comparatively simple production of different shafts, in particular light shafts, is made possible by such a set. This reduces the manufacturing costs.
  • At least two modules are dimensioned differently, in particular of different widths.
  • two or more modules may be identical.
  • the modules are present in at least three or even at least five different sizes. As a result, the manufacturing costs can be further reduced.
  • the above object is achieved independently by the use of at least two floor modules and / or at least two, preferably identical, side modules for producing a bottom or a side wall of a light and / or ventilation shaft of the type described above a set of the type described above are used.
  • the shaft in particular light and / or ventilation shaft or to the set described above.
  • An independent aspect is a use of a shaft according to any one of claims 1 to 13 as a light and / or ventilation shaft, in particular optionally as a light or ventilation shaft, wherein preferably a partition wall is provided which is removable from the shaft or can be inserted into the shaft is.
  • a partition wall is provided which is removable from the shaft or can be inserted into the shaft is.
  • this can be used particularly easily both as a light well and as a ventilation shaft.
  • a necessary adjustment can be made only by removing or mounting a partition.
  • an inner surface of the side wall and / or the bottom is at least partially provided with a waterproof coating, which covers at least one connection region between two side modules and / or floor modules.
  • the invention includes floor and / or side modules and / or connecting devices that have a bright, light-reflecting color.
  • incident light within the shaft is so reflects, for example, that a basement room is sufficiently lit. It is possible that the light color of the bottom and / or side modules and / or the connecting devices is applied to the respective modules in a coextrusion process.
  • Fig. 1 shows a first embodiment of a light well in an oblique view.
  • the light well comprises a bottom 10 and a first side wall 11, second side wall 12 and third side wall 13.
  • the first and second side walls 11, 12 are arranged opposite each other.
  • the third side wall 13 forms a connecting wall between the side walls 11 and 12.
  • a U-shaped (horizontal) cross-section is formed by the arrangement of the side walls 11 to 13.
  • One of the third side wall 13 opposite side 14 remains open or is defined in the assembled state, for example by a building wall (not visible in the figures).
  • the light shaft can be attached via wall fasteners 15, 16 and 17 to a building wall (not visible).
  • the fastening elements may for example comprise U-profiles, preferably made of aluminum or consist of such.
  • the wall fastening elements 15, 16 and 17 include L-profiles or consist of such.
  • the wall fastening element 15 is attached to a vertical, in the assembled state of the building wall facing edge of the first side wall 11. Accordingly, the fastener 16 is attached to a vertical edge of the second side wall 12.
  • the wall fastening element 17 is attached to an edge of the floor 10 facing the building wall in the assembled state. Overall, a reliable hold on the building wall is ensured by the wall fastening elements 15 to 17.
  • the floor 10 includes a plurality of (three) floor modules 18.
  • the side walls 11-13 comprise a plurality (four each) of stacked, horizontally-oriented side modules 19 (provided for superposition).
  • a grate holder 21 is provided, which serves the support of a (not shown) Abdeckrostes.
  • the grate holder 21 is U-shaped and has an outwardly and upwardly bent grate receiving edge 22 (see Fig. 2 ) on.
  • Fig. 2 shows a view of the light shaft viewed from the front or from the building wall (in the mounted state of the light shaft).
  • the wall fastening elements 15 to 17 have a plurality of (three each) bores 23 in order to be able to fasten the wall fastening elements 15 to 17 or the light shaft to a building wall.
  • Fig. 3 shows a section along the line III-III in Fig. 2 , It can be seen that the floor modules 18 and the side modules 19 are formed as hollow chamber profiles. Within corresponding hollow chambers 24 stiffening profiles 25 are provided in order to increase the stability. Hint is in Fig. 3 to recognize that the grate holder 21 is connected to the respective top side modules 19 via a clip connection 26. By way of corresponding clip connections 26, the individual side modules are also connected to a respectively adjacent side module 19 or the bottom 10 or its bottom modules 18. The floor modules 18 are in turn provided with corresponding clip connections 26. By means of such clip connections, the individual modules (possibly including the grate holder 21) can be assembled and disassembled particularly easily, which improves flexibility. Alternatively or in addition to the indicated stiffening profiles 25, corresponding stiffening tubes can also be introduced into the hollow chambers 24.
  • Corners 27 (see Fig. 1 ) between the first side wall 11 and the third side wall 13 and the second side wall 12 and the third side wall 13 may be welded or otherwise connected.
  • the individual floor modules or side modules 19 can also be connected in another way (for example by an adhesive).
  • a length 28 (see Fig. 1 ) can be adjusted over the length of the floor modules 18. Accordingly, a depth 29 can be changed over a width of the bottom modules 18. In addition, the depth 29 can be varied over the number of floor modules 18. A height 30 may be across a width of the side modules 19 and / or a number of the side modules 19 are varied. Overall, it can be seen that a large variety of different light shaft geometries can be achieved by floor or side modules of different lengths and / or widths and / or different numbers. Overall, the production costs are significantly reduced in the realization of various light wells.
  • Fig. 4 is a second embodiment of a light well to see in an oblique view.
  • the floor 10 with a plurality of (specifically three) floor modules 18 corresponds (essentially) to the first embodiment.
  • the wall attachment via the wall fastening elements 15 to 17 corresponds (substantially) to the first embodiment.
  • the second embodiment differs in particular in the formation of the side walls 11 to 13. Namely, these do not include horizontally oriented side modules, but vertically oriented side modules 31 (provided for juxtaposition).
  • the first side wall 11 and the second opposing side wall 12 each comprise three side modules 31.
  • the third side wall 13 comprises four side modules 31.
  • all the vertically oriented side modules 31 are formed identically, although the third side wall 13 is longer or wider than the first and second side wall 11, 12 is. It can be seen that with only one page module 31 several side wall sizes can be realized. In general (which is also claimed independently), it is preferred that at least two sidewalls have a different width and / or differ by the number of possibly identical side modules.
  • the grate holder 21 consists of several (three) grate receiving strips 32, which are increased over an upper edge of the side walls 11 to 13 (concretely: deferred) and together form the grate holder 21.
  • a grate receiving strip 32 Depending on a grate receiving strip 32 thereby covers an upper edge 35 of the side modules 31 of each of the side walls 11 to 13. Thereby, the respective side wall or its side modules 31 are stabilized.
  • the grate receiving strip 32 thus serves two functions, namely on the one hand for supporting a grate and on the other hand for stabilizing the side modules 31 against each other.
  • the side modules 31 are received in a bottom bar 33.
  • This bottom bar 33 serves at the same time a Connection to the bottom 10 and its bottom modules 18 and a stabilizing connection at the lower edge 36 of the side modules 31.
  • Corner profiles 34 are arranged, each receiving a (opposite the building in the mounted state) vertical edge of the side wall 11 and a corresponding edge of the side wall 12 and each receive a vertical edge of the third side wall 13. The corner profiles 34, the stability of the light shaft can be further improved ,
  • the width or depth 29 of the light shaft can be varied both over the number and over the width of the bottom modules 18.
  • a width of the side walls 11, 12 and 13 can be varied by the number of the vertically aligned second modules 31 and a width of the individual modules 31.
  • a different height of the light shaft can be realized, for example, by providing side modules 31 of different lengths.
  • the U-profiles may consist of a plurality of (horizontally oriented) side modules 19 (according to the first embodiment according to FIG Fig. 1 ), wherein the individual side modules 19, which are each associated with one of the side walls 11 to 13, can be welded together.
  • the individual side modules 19, which are each associated with one of the side walls 11 to 13 can be welded together.
  • the locking receptacle 21 may be formed as (extruded) attachment profile.
  • the light shaft On the bottom side, the light shaft can be closed with a bottom plate (which is not necessarily, at least with regard to the second embodiment according to Fig. 4 , must be designed modular).
  • the light shaft can in principle be waterproofed by cover tapes, films or other jobs, preferably watertight.
  • stiffening elements within the hollow chambers 24 are alternatively rectangular profiles (for example made of steel), pipes, Rollformprofile and the like in question. By such stiffening elements of the light shaft can be stiffened depending on the size and installation depth against earth pressure or other loads.
  • the variability in width, depth and height (possibly also infinitely) depending on customer request light wells or ventilation shafts can be produced.
  • the light shafts can also be used for large windows.
  • the light shafts can also be used as supply and exhaust air ducts for heat pumps and / or emergency exit. Due to the flexible wall connection also projections in the facade can be formed without problems.
  • the first and second embodiments relate to light wells, which are designed for mounting on a (substantially) flat portion of the building wall.
  • corner light wells can be manufactured.
  • Fig. 9 shows a third embodiment, which is designed as Ecklichtschacht.
  • the term "light well” is to be understood as an example of "well” only.
  • a ventilation shaft can be realized. A combination of light shaft and ventilation shaft is possible.
  • the corner light shaft according to Fig. 9 differs essentially from the first and second embodiments of the light shaft in that the floor plan is not (substantially) rectangular, but L-shaped.
  • the L shape is particularly good in Fig. 12 to recognize, which shows a view from above.
  • the corner light shaft according to Fig. 9 includes a first side wall 11, a second side wall 12, a third side wall 13, and a fourth side wall 37.
  • the first side wall 11 and the second side wall 12 face each other.
  • the third side wall 13 and the fourth side wall 37 are opposite.
  • the first side wall 11 and fourth side wall 37 are shortened with respect to the second side wall 12 and the third side wall 13, so that the L-shape is realized or a (vertical extending) Eckausbianung 38 is formed.
  • the corner recess 38 may then receive a corner of a building (not shown in the figures).
  • first and fourth side walls are the same width, and the second and third side walls are the same width. However, it is also conceivable to form first and fourth side wall and / or second and third side wall of different widths. This can be done in a simple manner by varying the length of the floor modules 39, 40.
  • First floor modules 39 are opposite second floor modules 40 (see Fig. 12 Shortened trained.
  • An adaptation of the bottom 10 of the light shaft according to Fig. 9 to 12 can also be done via a variation of the number of first floor modules 39 and / or second floor modules 40. In the specific embodiment shown, seven first floor modules 39 and three second floor modules 40 are provided.
  • the side walls 11, 12, 13, and 37 each comprise a plurality of (specifically, five) side modules (which are horizontally aligned). 19. Corners 27 between the side walls 11, 12, 13, and 37 may be formed according to the first and second embodiments, respectively.
  • the third embodiment may be formed like the first and second embodiments (with the described differences).
  • the 10 and 11 It can be seen that the third embodiment also has wall fastening elements 41 to 44.
  • four wall fastening elements 41 to 44 are provided in order to enable or facilitate the installation over the corner.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Floor Finish (AREA)
  • Golf Clubs (AREA)
  • Shafts, Cranks, Connecting Bars, And Related Bearings (AREA)

Claims (16)

  1. Puits de lumière et/ou puits d'aération, comprenant au moins une paroi latérale (11, 12, 13) ainsi qu'un fond (10),
    le fond (10) présentant au moins deux modules de fond (18) de préférence identiques qui sont reliés l'un à l'autre via un dispositif de liaison (26), ladite au moins paroi latérale (11, 12, 13) comprenant au moins deux modules latéraux (31) de préférence identiques qui sont reliés l'un à l'autre via un dispositif de liaison (26) et sont agencés en affleurement l'un à côté de l'autre ou l'un au-dessus de l'autre,
    au moins un module latéral (19, 31) et/ou au moins un module de fond (18) étant réalisé sous forme de profilé à chambre creuse ou comportant au moins un profilé à chambre creuse, un élément de rigidification (25), de préférence un tube de rigidification et/ou un profilé de rigidification (25) étant prévu de préférence à l'intérieur dudit au moins un profilé à chambre creuse.
  2. Puits de lumière et/ou puits d'aération selon la revendication 1, caractérisé par au moins une liaison par enfichage, de préférence une liaison à rainure et languette pour relier deux modules latéraux et/ou deux modules de fond (18, 19, 31).
  3. Puits de lumière et/ou puits d'aération selon l'une des revendications précédentes,
    caractérisé en ce que
    un bord supérieur de paroi latérale comprend un dispositif de fixation, comportant en particulier un évidement ou une saillie, de préférence un profilé d'enfichage de telle sorte qu'un élément de couvercle, en particulier une grille, du puits, en particulier du puits de lumière et/ou du puits d'aération, puisse être relié au bord de paroi latérale (20).
  4. Puits de lumière et/ou puits d'aération selon l'une des revendications précédentes,
    caractérisé en ce que
    la paroi latérale (11, 12, 13) et/ou le fond (10) est (sont) réalisé(s) étanches à l'eau sous pression au moyen d'une application telle que par exemple une feuille ou une bande d'étanchéité.
  5. Puits de lumière et/ou puits d'aération selon l'une des revendications précédentes,
    caractérisé en ce que
    au moins deux modules latéraux (19, 31) ou un module de fond (18) sont de tailles différentes, présentent en particulier une largeur et/ou une longueur divergente l'une de l'autre.
  6. Puits de lumière et/ou puits d'aération selon l'une des revendications précédentes,
    caractérisé en ce que
    au moins deux modules latéraux (19, 31) et/ou deux modules de fond (18) sont réalisés rectangulaires et présentent de préférence une largeur et/ou une longueur différente.
  7. Puits de lumière et/ou puits d'aération selon l'une des revendications précédentes,
    caractérisé en ce que
    au moins une barre de réception d'élément de couvercle, en particulier une barre de réception de grille (32) est prévue pour recevoir au moins un élément de couvercle, en particulier une grille, la barre de réception de l'élément de couvercle recouvrant de préférence des bords supérieurs d'au moins deux modules latéraux (31).
  8. Puits de lumière et/ou puits d'aération selon l'une des revendications précédentes,
    caractérisé par
    une barre de liaison (32, 33, 34) dans laquelle est reçue une arête respective d'au moins deux modules latéraux (19, 31) et/ou de deux modules de fond (18).
  9. Puits de lumière et/ou puits d'aération selon l'une des revendications précédentes,
    caractérisé en ce que
    au moins deux modules de fond (18) forment au moins chacun 10 %, de préférence 20 %, encore plus préférentiellement 30 % du fond (10) et/ou au moins deux modules latéraux (19, 31) forment au moins 10 %, de préférence 20 %, encore plus préférentiellement au moins 30 % d'une paroi latérale (11, 12, 13).
  10. Puits de lumière et/ou puits d'aération selon l'une des revendications précédentes,
    caractérisé en ce que
    un évidement de coin (s'étendant à la verticale) est prévu de telle sorte que le puits peut être monté en coin sur un bâtiment, le fond (10) présentant de préférence une multitude de modules de fond (18) agencés en parallèle, une première multitude de modules de fond (18) présentant encore préférentiellement une première longueur, et une deuxième multitude de modules de fond (18) présentant une deuxième longueur qui est différente de la première longueur.
  11. Puits de lumière et/ou puits d'aération selon l'une des revendications précédentes,
    caractérisé en ce que
    une paroi de séparation orientée ou orientable à la verticale, le cas échéant reliée de manière solidaire au puits est prévue ou introduite dans le puits pour pouvoir diviser le puits en deux puits partiels.
  12. Kit pour la fabrication d'un puits de lumière et/ou d'un puits d'aération, de préférence selon l'une des revendications précédentes, comprenant au moins une paroi latérale (11, 12, 13) ainsi qu'un fond (10), le fond (10) présentant au moins deux modules de fond (18) qui sont reliés l'un à l'autre via un dispositif de liaison (26), ladite au moins une paroi latérale (11, 12, 13) comprenant au moins deux modules latéraux (31) qui sont reliés l'un à l'autre via des dispositifs de liaison (26) et sont agencés en affleurement l'un à côté de l'autre ou l'un au-dessus de l'autre, les modules latéraux (19, 31) et les modules de fond (18) étant entourés de telle sorte que la largeur et/ou la profondeur du puits de lumière et/ou du puits d'aération peut varier en utilisant les modules (18, 19, 31),
    au moins un module latéral (19, 31) et/ou au moins un module de fond (18) étant réalisé sous forme de profilé à chambre creuse ou comportant au moins un profilé à chambre creuse, un élément de rigidification (25), de préférence un tube de rigidification et/ou un profilé de rigidification (25) étant prévu de préférence à l'intérieur dudit au moins un profilé à chambre creuse.
  13. Kit selon la revendication 12,
    caractérisé en ce que
    au moins deux modules (18, 19, 31) sont dimensionnés de manière différente et réalisés en particulier avec différente largeur et/ou différente longueur.
  14. Utilisation d'au moins deux modules de fond (18) et d'au moins deux modules latéraux (19, 31) de préférence identiques pour fabriquer un fond (10) ou une paroi latérale (11, 12, 13), respectivement, d'un puits de lumière et/ou d'un puits d'aération selon l'une des revendications 1 à 11.
  15. Procédé de fabrication ou d'adaptation de taille d'un puits de lumière et/ou d'un puits d'aération, comportant au moins une paroi latérale (11, 12, 13) ainsi qu'un fond (10), de préférence selon l'une des revendications 1 à 11, plus préférentiellement en mettant à disposition un kit selon l'une des revendications 12 ou 13, présentant les étapes suivantes consistant à :
    - mettre à disposition au moins deux, en particulier au moins trois modules latéraux (19, 31) et ou modules de fond (18) pour réaliser une paroi latérale (11, 12, 13) ou un fond (10), respectivement, au moins un module latéral (19, 31) et/ou au moins un module de fond (18) étant réalisé sous forme de profilé à chambre creuse ou comprenant au moins un profilé à chambre creuse, de préférence un élément de rigidification (25), de préférence un tube de rigidification et/ou un profilé de rigidification (25) étant prévu de préférence à l'intérieur dudit au moins un profilé à chambre creuse ;
    - ajouter un autre module latéral (19, 31) et/ou un autre module de fond (18) pour élargir la paroi latérale (11, 12, 13) ou pour agrandir le fond (10), respectivement, au moins deux modules latéraux (31) étant reliés l'un à l'autre via un dispositif de liaison (26) et étant agencés en affleurement l'un à côté de l'autre ou l'un au-dessus de l'autre ou
    enlever au moins un module latéral (31) et/ou au moins un module de fond (10) pour rétrécir la paroi latérale (11, 12, 13) ou pour réduire le fond (10), respectivement.
  16. Procédé selon la revendication 15,
    caractérisé en ce que
    une surface intérieure de la paroi latérale (11, 12, 13) et/ou du fond (10) est pourvue au moins par zones, d'un enduit étanche à l'eau qui recouvre au moins une zone de liaison entre deux modules latéraux (19, 31) et/ou deux modules de fond (18).
EP12194733.7A 2011-12-01 2012-11-29 Puits d'aération et/ou de lumière et ensemble pour la fabrication d'un puits d'aération et/ou de lumière Active EP2599935B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102011055914.0A DE102011055914B4 (de) 2011-12-01 2011-12-01 Licht- und/oder Lüftungsschacht sowie Set für die Herstellung eines Licht- und/oder Lüftungsschachtes

Publications (3)

Publication Number Publication Date
EP2599935A2 EP2599935A2 (fr) 2013-06-05
EP2599935A3 EP2599935A3 (fr) 2017-03-29
EP2599935B1 true EP2599935B1 (fr) 2019-01-09

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EP (1) EP2599935B1 (fr)
DE (1) DE102011055914B4 (fr)

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Publication number Priority date Publication date Assignee Title
DE102017113542B4 (de) * 2017-06-20 2019-05-09 ACO Severin Ahlmann GmbH & Co Kommanditgesellschaft Lichtschachtaufstockelement und Verfahren zur druckwasserdichten Montage eines Lichtschachtaufstockelements
RU198524U1 (ru) * 2020-02-20 2020-07-14 Федеральное государственное бюджетное образовательное учреждение высшего образования "Казанский государственный архитектурно-строительный университет" (КазГАСУ) Вытяжная шахта со сниженным аэродинамическим сопротивлением для теплого чердака

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE7318128U (de) * 1973-08-30 Volberg J Verwaltungsgesellschaft Mbh & Co Kg Kellerfenster Lichtschacht
DE6915236U (de) * 1963-04-16 1969-10-23 Stesa Norm Bauelemente Gmbh Schacht-fertigbau-kunststoffhohlprofil
DE7718545U1 (de) * 1977-06-11 1977-09-22 Flachglas Ag Delog-Detag, 4650 Gelsenkirchen Aus mehreren teilen bestehender kellerlichtschacht
GB0303978D0 (en) * 2003-02-20 2003-03-26 Acer Prod Ltd Building panel
DE202005000442U1 (de) * 2005-01-13 2005-03-24 Hieber Alexander Fertigbauteil
DE202005000441U1 (de) * 2005-01-13 2005-03-24 Hieber Alexander Fertigbauteil
US7770340B2 (en) * 2005-10-24 2010-08-10 Heady Timothy P Method and apparatus for installing egress window steps

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
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Also Published As

Publication number Publication date
DE102011055914A1 (de) 2013-06-06
EP2599935A2 (fr) 2013-06-05
EP2599935A3 (fr) 2017-03-29
DE102011055914B4 (de) 2016-01-21

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