EP2662491B1 - Paroi antibruit - Google Patents

Paroi antibruit Download PDF

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Publication number
EP2662491B1
EP2662491B1 EP20120167747 EP12167747A EP2662491B1 EP 2662491 B1 EP2662491 B1 EP 2662491B1 EP 20120167747 EP20120167747 EP 20120167747 EP 12167747 A EP12167747 A EP 12167747A EP 2662491 B1 EP2662491 B1 EP 2662491B1
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EP
European Patent Office
Prior art keywords
noise barrier
grid
barrier wall
support structure
wall according
Prior art date
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Application number
EP20120167747
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German (de)
English (en)
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EP2662491A1 (fr
Inventor
Jost Körte
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Individual
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Individual
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Priority to EP20120167747 priority Critical patent/EP2662491B1/fr
Priority to PCT/EP2013/000180 priority patent/WO2013167212A1/fr
Publication of EP2662491A1 publication Critical patent/EP2662491A1/fr
Application granted granted Critical
Publication of EP2662491B1 publication Critical patent/EP2662491B1/fr
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    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01FADDITIONAL WORK, SUCH AS EQUIPPING ROADS OR THE CONSTRUCTION OF PLATFORMS, HELICOPTER LANDING STAGES, SIGNS, SNOW FENCES, OR THE LIKE
    • E01F8/00Arrangements for absorbing or reflecting air-transmitted noise from road or railway traffic
    • E01F8/02Arrangements for absorbing or reflecting air-transmitted noise from road or railway traffic specially adapted for sustaining vegetation or for accommodating plants ; Embankment-type or crib-type noise barriers; Retaining walls specially adapted to absorb or reflect noise
    • E01F8/021Arrangements for absorbing or reflecting air-transmitted noise from road or railway traffic specially adapted for sustaining vegetation or for accommodating plants ; Embankment-type or crib-type noise barriers; Retaining walls specially adapted to absorb or reflect noise with integral support structure
    • E01F8/025Gabion-type

Definitions

  • the invention relates to a noise barrier with a support structure which can be arranged on a floor and which has disk-shaped uprights arranged parallel and at a distance from one another and spacing elements connected to adjacent uprights, wherein the respective stand has a first one facing a noise source End face and a noise source facing away from the second end face, and a pourable filling material is filled between the respective adjacent stand.
  • Such a noise barrier which is designed as a plantable noise barrier, is from the EP 0 286 957 A1 and the DE 38 16 127 A1 known.
  • the noise barrier has spacers connected to the uprights, which are arranged in the region of the first end side and the second end side of the stator and are formed as boards, which are arranged at an angle to the horizontal, wherein the upper end of the respective board, based on the Support structure, located further out than the lower end of this board.
  • the boards thus serve on the one hand the formation of the support structure, on the other hand, the retention of potting soil. They are therefore also referred to there as plant ribbed boards.
  • gabions also called stone baskets or wire ballast boxes
  • a gabion is a wire basket filled with stones. Such is for example in the DE 200 15 661 U1 described.
  • the filling of such a basket is very expensive, since the stones must be partially sorted by hand, sorted by size, in the basket.
  • a noise barrier is known, with a filling space formed between grid mats, which can be filled with a noise-insulating filling material.
  • inner mesh mats are provided to which run to form joint-free mating spaces joint-free outer grid mats.
  • Such a noise barrier is structurally relatively complicated because of the required inner and outer mesh mats and can be quite expensive to set up because of the required inner and outer mesh mats.
  • there is a central filling space between the inner mesh mats which is to be additionally filled, in particular with sand or fine-grained material.
  • Between the respective inner and outer grid mat is monolithic filler, natural stone or natural stone, brick, broken glass, concrete ballast or similar recycled material use.
  • a noise barrier is described, the spaced-apart, vertically oriented frame parts, which are arranged in the form of an inverted U on the floor.
  • the individual legs of the frame part are connected by a cross-beam and in the region of the side surfaces by tension cables.
  • On the front and side surfaces of the frame part mats are fixed by welding or by tying with wire.
  • On the respective mat a fine-fiber mat is applied, in particular on the inside of the noise barrier facing side.
  • the interior of the noise barrier is filled with earth, so that the noise barrier can be planted.
  • a plantable noise barrier which has held between segment posts, retractable wall elements. These are provided with a nutrient medium for plants and with an irrigation device.
  • the wall elements have lattice mats, which are bendable in the longitudinal direction and rigid in the vertical direction. By a substrate filling the grid mats are kept at a distance against T-piece undercuts the segment post formed as a double-T carrier.
  • the grid mats are held between the segment posts by tie rods at a predetermined distance from each other.
  • Object of the present invention is to develop a noise barrier of the type mentioned so that it consists of easily manufacturable components, and the noise barrier can be quickly and easily constructed and placed in working condition.
  • a noise barrier of the type mentioned in that a first grid mat rests against the support structure and contacted the stator in the first end face, a second grid mat rests against the support structure and contacted the stand in the region of the second end face, and rod elements enforce the support structure, wherein the rod elements are connected to the grid mats, and the pourable filling material is filled between the two grid mats, wherein the respective stand is formed by a plurality of stacked stator parts, wherein the respective stator part at the bottom end and top at least one receptacle for connection with has at least one spacer element.
  • the noise protection wall thus consists of the uprights, the spacer elements, the first grid mat and the second grid mat, the rod elements and the pourable filling material.
  • These individual components are simply designed components that are already available as mass-produced goods, such as grid mats and bar elements. These must be cut if necessary and bent if necessary.
  • the stand and spacers can, especially if they are made of plastic, are easily produced by molding processes. These are therefore molded parts.
  • the respective upright is formed by a plurality of stacked parts arranged one above the other, wherein the respective upright part has at the top end and at the bottom at least one receptacle for connecting to at least one spacer element.
  • the formation of the respective uprights by means of a plurality of uprights arranged one above the other makes it possible to design the support structure, and thus the noise protection wall, in modular construction at different heights.
  • the interaction of spacer elements and respective stator in the connecting region of adjacent, stacked stator parts of particular advantage, because the spacer elements are positively connected to the upper and / or lower stator part.
  • the noise barrier can be quickly and easily assembled and quickly and easily put into their functional state. It is only necessary to arrange the disc-shaped stand on the ground and to place them at a distance from each other as well as to connect the spacer elements with adjacent uprights. As a result, the basic stability of the support structure is ensured. Subsequently, the first grid mat is applied to the uprights in the region of the first end side of the uprights and the second grid mat is applied to the uprights in the region of the second end side of the uprights. It is basically not necessary that the grid mats are connected to the uprights. The mesh mats can therefore be applied loosely to the stand. The grid mats applied to the uprights are now connected by means of the bar elements.
  • the rod elements are arranged so that they pass through the support structure, thus arranged between adjacent uprights, wherein the rod elements are connected in the region of their ends with the grid mats.
  • the grid mats are positioned defined with respect to the stand and are held by the rod elements, adjacent to the uprights.
  • the mesh size of the two grid mats is chosen so that, taking into account the particle size or the particle size of the pourable filling material is ensured that this can not escape through the grid mats to the outside. To transfer the noise protection wall in its functional state, it is only necessary to fill the pourable material from above into the space formed between the two grid mats and the respective adjacent uprights from above.
  • the particle size or particle size of the pourable filling material should be at least so great that no bulk material can pass through the meshes of the grid mats.
  • monolithic filling material, natural stones, natural stone ballast, brick crushed stone, broken glass, concrete ballast or a pourable recycled material are used as pourable filling material.
  • the grain or stone sizes amount to, for example, small size between 32 and 60 mm, with large size between 60 and 120 mm.
  • the noise barrier has a height of at least one meter.
  • the maximum height is considered to be from 5 to 7 m.
  • the lower width of the noise barrier is determined by the height of the noise barrier. This lower width is for example between 0.7 m and 1.5 m.
  • the noise protection wall has, based on its longitudinal extension, for example, a substantially rectangular or substantially trapezoidal cross-section.
  • the support structure can be arranged on the ground.
  • a flat foundation forms this soil.
  • the flat foundations can be formed by a gravel layer, whereby no profound foundation for the noise barrier is required. If the foundation consists of gravel, rainwater can easily drain through the gravel layer.
  • the respective spacer element has a form fit in the longitudinal direction direction of the spacer element is connected to the stand.
  • the longitudinal direction of the spacer element to provide a certain clearance between the spacer element and stand, especially under the aspect of different heat effect due to sunlight and thus different elongation of the components of the support structure, namely of uprights and spacers.
  • the respective upright part has top and bottom positive locking elements which interact in a form-fitting manner with complementary positive locking elements of the stator part arranged above or below it.
  • the positive connection in the longitudinal direction of the spacer elements is substantially free of play and is perpendicular to the spacer elements, in particular with play.
  • connection and the positive connection between the respective spacer element and the stand or the stacked stator parts in this case in the area between the stacked stator parts, achieve if the respective spacer element in the region of its ends tapered sections for insertion into these associated recesses St.wel has.
  • the respective spacer element is provided in the region of only one of the two longitudinal sides of this spacer element with tapered sections arranged at both ends.
  • the respective spacer element is connected to associated uprights in the region of the underside of the upright or the upper side of the upright. This results in a high stability of the support structure over its entire height, thus from the bottom of the support structure to the upper end of the support structure.
  • the respective spacer element is connected to associated uprights in the region of the lower side of an upper stator part and the upper side of the lower stator part. This makes it possible to achieve a particularly stable connection of the respective spacer element with the two stacked stator parts.
  • the respective spacer element for example, at both ends and on both longitudinal sides on the tapered portions, which cooperate with tapered portions of the stator parts.
  • the support structure forming the stator and spacer elements are in particular formed as plastic moldings.
  • the respective spacer element is designed in particular board-shaped. It is preferably installed edgewise in the support structure under the aspect of optimizing the bending resistance moment.
  • the first grid mat and the second grid mat extend over the height of the support structure and the length of the support structure.
  • the two grid mats thus cover the support structure on the free, the noise side facing side and on the free, the noise side facing away completely.
  • the respective grid mat can certainly be formed by several mat parts. These are arranged so that they are positioned adjacent to each other or overlapping. This arrangement of the grid mats ensures that bulk material is extensively retained by means of the grid mats.
  • the grid mat is fixed in a particularly simple manner when the respective rod element connected to the grid mats is designed as a rod which has end-side hook sections. These hook sections engage behind the grid mats.
  • already prefabricated rod elements can be used, which accordingly have the end hook portions, wherein it is necessary when forming the noise barrier, after attaching the grid mats to the support structure, the grid mat something to deform into the interior of the support structure into elastic and a hook portion of the rod member in already hooked, other hook portion of this rod member, in a rear engagement position with respect to the wire of the grid mat to bring. It is particularly advantageous if the first grid mat and / or the second grid mat is arranged loosely against the uprights.
  • the respective grid mat is in particular designed so that it is formed from longitudinally and transversely arranged, welded together wires.
  • Grid mats are placed, for example, so that the one wires of the grid mat are arranged horizontally.
  • the other wires then run perpendicular to these wires.
  • it is also quite possible to arrange the grid mat at an angle to this position for example, to arrange the grid mat in a rotated with respect to this position by 45 ° position. With vertically arranged grid mat, the wires can thus run at an angle of 45 ° to the vertical.
  • the respective rod element can be connected at any point with the respective wire of the grid mat. It is considered particularly advantageous if one or more rod elements are arranged with the respective rod element in the region of a wire crossing point of the grid mat. As a result, the grid mat is positioned particularly precisely with respect to the rod element. This is especially true when the wires of the grid mat are not arranged horizontally, but at an acute angle to the horizontal, thus for the pivoted arrangement of the grid mat.
  • bar elements are arranged above the spacing elements and bear against them.
  • the grid mats is thus introduced via the rod elements at least a portion of the weight of the grid mats in the spacer elements and on this in the stand of the noise barrier.
  • rod elements, which are arranged below the spacer elements also bear against these spacer elements. If this is a rod element above a spacer element and is located on this, and is a another rod element disposed below this spacer element and is applied to this, is held on these rod elements associated with this grid mat both up and down substantially immovable. This is especially true when the spacer elements are arranged relatively close with respect to the grid mats.
  • the respective grid mat and / or the respective rod element consists of corrosion-protected steel, in particular stainless steel.
  • a vertically arranged sound absorption element is arranged, which extends in particular over the height of the support structure.
  • the filling space for the pourable filling material is subdivided into two basic subspaces, thus a first subspace between the sound absorbing element and the grating mat facing the noise source, and a second subspace between the sound absorbing element and the grid mat facing away from the noise source.
  • these different subspaces which in principle also applies when forming only one space between the two grid mats and adjacent uprights of the support structure, can be filled with different filling material, be it in grain size or stone size and / or color.
  • the noise barrier can give a specially designed appearance.
  • different filling material can be filled in layers one above the other.
  • the first embodiment of the noise barrier is in the Fig. 1 to 3 illustrated without filled filler and in the 4 to 6 shown for the corresponding representations with filled filling material.
  • the respective stand part 7 further has in the region of its underside two rectangular recesses 10 and, at the appropriate place, on its top two rectangular recesses 11.
  • the recesses 10 and 11 serve to receive the spacer elements 4 and 4a formed as boards.
  • the respective spacer element 4 or 4a has, in the region of its ends, tapered sections 12 for insertion into the recesses 10 and 11 of the stator parts 7 associated therewith.
  • the respective spacer element 4a is formed so that it is designed as a board produced by continuous casting, which is provided at a relatively short distance from its ends on the same side of the spacer element 4a with rectangular recesses whose extension in the longitudinal direction of the spacer element 4a is slightly larger than
  • the other spacer elements 4 have the same length and thickness as the spacer elements 4a, but are twice as wide, with the corresponding two end-side recesses, so that a respect to the longitudinal extent of the spacer element 4 halved spacer element corresponds to the spacer element 4a ,
  • This different design of the spacer elements 4 and 4a is therefore provided in order to attach the respective spacer element 4a in the region of the lower end of the lowermost stator part 7 or the upper end of the uppermost stator member 7, while the spacer element 4 mounted between two directly superimposed stator parts 7 becomes.
  • two spacer elements 4a each overlap with respect to their ends its tapered sections 12 directed upward into the associated lower recess 10 of the lowermost stator part 7 inserted, and there are two with respect to the ends overlapping arranged spacer elements 4a, directed with the tapered portions 12 downward, inserted into a recess 11 of the uppermost stator 7. Since the stand 3 has two recesses 10 on the underside of the lowermost stator part 7, these thus serve the overlapping arrangement of two pairs of spacer elements 4a and correspondingly the two recesses 11 of the uppermost stator part 7 of receiving two pairs of spacer elements 4a.
  • the respective spacer element 4a serves for the connection of three mutually parallel uprights 3, as it is the case with the Fig. 1 and 3 is illustrated, wherein the overlapping arrangement of the spacer elements 4a takes place only in the first and third stator 3. In the second, middle stand 3, the spacer element 4a has a corresponding tapered section 12.
  • the spacer elements 4 are mounted in the uprights 3, but in the region of the stacked upright parts 7, so that the respective spacer element 4 in the region of each associated stator 3 with its upwardly tapered portion 12 into the lower recess 10th of the upper stator part 7 and engages with its downwardly tapered portion 12 in the upper recess 11 of the lower stator part 7.
  • Fig. 2 is the respective spacer element 4 and 4a with respect to that contour which engages behind the associated post member 7, drawn by dashed lines and that portion of the spacer element 4 and 4a, which has the tapered portion 12 and the tapered portions 12, illustrated by a solid line.
  • the respective stand 3 is stored at the bottom in a flat foundation 13, which forms a floor for arranging the noise protection wall.
  • the support structure 2 configured as described above cooperates with a first grid mat 14 and a second grid mat 15. Both grid mats 14 and 15 extend from the bottom to the upper end of the support structure 2, thus over the entire height of the support structure on the opposite outer sides. Furthermore, the two grid mats extend over the entire length of the support structure 2.
  • the first grid mat loosely rests against the support structure 2, specifically the first end faces 5 of the uprights 3, and the second lattice mat 5 loosely rests against the support structure 2, specifically at second end faces 6 of the stator 3 at.
  • the first grid mat 14, and this applies correspondingly to the second grid mat 15, is formed by horizontally arranged wires 16 which are arranged at a relatively large distance from one another and wires 17 arranged at a relatively small distance from each other.
  • the wires 16 and 17 are made of stainless steel, in particular of V2A.
  • the thickness of the wires 16 and 17 is dimensioned so that the respective grid mat 14 and 15 has sufficient stability.
  • the two vertically arranged grid mats 14 and 15 are fixed to the support structure 2 by means of a multiplicity of rod elements 18.
  • the respective rod element 18 is connected to both grid mats 14 and 15.
  • the rod element 18 has a rod 19 and hook portions 20 in the region of both ends of the rod 19.
  • the respective stator part 7 is provided with a fairly large rectangular opening 21, so that the respective stator part 7 is frame-shaped.
  • the noise protection wall 1 can in principle have any length, as it is, as described, modular. For this reason is in the Fig. 1 and 3 and 5 and 6, the support structure 2 with grid mats 14, 15 and rod members 18 and the noise barrier 1 formed only for a portion to which corresponding sections on the left and right, with corresponding sections connect to turn left and right.
  • the 4 to 6 illustrate the after filling the above-described structure of support structure 2, grid mats 14, 15 and bar elements 18 filled with pourable filling material structure.
  • this filler is monolithic filler, natural stones, natural rock, brick crushed stone, broken glass, concrete ballast or a pourable recycle.
  • the grain or stone size of the filling material is dimensioned such that this can not pass from the respectively formed between two horizontal wires 16 and two cooperating with these vertical wires 17 opening 22 in the respective grid mat 14 and 15 respectively.
  • The is filled in the Fig. 1 to 3 described structure from above, thus in the direction of arrow II in Fig.
  • the second embodiment according to the FIGS. 7 and 8 differs from the first embodiment according to the Fig. 1 to 6 only in that the structure formed by the support structure 2, the two grid mats 14 and 15 and the various rod elements 18 additionally in the interior has a vertically arranged wall-shaped sound absorption element 23 which rests on the bottom of the base foundation 13 and up to the upper end of the respective stand 3 is enough.
  • This sound absorption element 23 abuts the adjacently arranged uprights 3 and the spacer elements 4, 4a of the support structure 2 arranged in a vertical plane, on the side of the spacer elements 4, 4a which faces the other spacer elements 4, 4a.
  • the receiving space between the two grid mats 14 and 15 is divided into two differently sized, but equally high subspaces, so that pourable filling material, which is filled from above into the support structure 2, between the sound absorption element 23 and the first grid mat 14 and the sound absorption element 23rd and the second grid mat 15 passes.
  • pourable filling material which is filled from above into the support structure 2
  • different bulk materials can be used for the subspaces.
  • the rods 19 of the rod elements 18 pass through openings in the sound absorption element 23.
  • the third embodiment according to the FIGS. 9 and 10 differs from the first embodiment according to the Fig. 1 to 6 in that the respective stator part 7 additionally has oblique recesses 25 both on its side facing the first grid mat 14 and on its side facing the second grid mat 15. These recesses 25 are to be seen in the aspect of the universal usability of the respective stator part 7, in particular around this stator part 7, even in the case of a plantable noise protection wall, as described by the principle in FIG DE 38 16 127 A1 is described to be able to use, specifically for the insertion of plant ribbed boards in the recesses 25th
  • the fourth embodiment according to Fig. 11 illustrates that the respective grid mat 14 and 15 certainly with different orientation of the wires 16 and 17th can be arranged.
  • the wires 16 and 17 are also arranged at a right angle to each other, however, the wires 16 and 17 extend at an angle of 45 ° to the horizontal. This results in crossing points 26 of the wires 16 and 17, so that the rod elements 18 are preferably suspended in the region of these crossing points 26 in the grid mat 14 and 15 respectively.
  • the respective stator part 7 is also provided with the recesses 25.

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Claims (14)

  1. Paroi antibruit (1) comprenant une structure porteuse (2) pouvant être disposée sur un fond (13), laquelle présente des supports (3) disposés parallèlement et à distance les uns des autres en forme de disques et des éléments d'espacement (4, 4a) connectés à des supports adjacents (3), le support respectif (3) présentant un premier côté frontal (5) tourné vers une source de bruit et un deuxième côté frontal (6) opposé à la source de bruit, et un matériau de remplissage en vrac (24) étant introduit entre les supports adjacents respectifs (3),
    caractérisée en ce qu'une première natte en treillis (14) s'applique contre la structure porteuse (2) et vient en contact avec les supports (3) dans la région du premier côté frontal (5), une deuxième natte en treillis (15) s'applique contre la structure porteuse (2) et vient en contact avec les supports (3) dans la région du deuxième côté frontal (6), et des éléments en forme de barre (18) traversent la structure porteuse (2) et sont connectés aux nattes en treillis (14, 15), et le matériau de remplissage en vrac (24) est introduit entre les deux nattes en treillis (14, 15), le support respectif (3) étant formé par plusieurs parties de support (7) disposées les unes au-dessus des autres, la partie de support respective (7) présentant, du côté frontal en bas et en haut, au moins un logement (10, 11) pour la connexion à au moins un élément d'espacement (4, 4a).
  2. Paroi antibruit selon la revendication 1, caractérisée en ce que l'élément d'espacement respectif (4, 4a) est connecté au support (3) par engagement par correspondance de forme dans la direction longitudinale de l'élément d'espacement (4, 4a).
  3. Paroi antibruit selon la revendication 1 ou 2, caractérisée en ce que l'élément d'espacement respectif (4, 4a) présente, dans la région de ses extrémités, des sections rétrécies (12) destinées à être insérées dans des évidements (10, 11) associés à celles-ci des parties de support (7).
  4. Paroi antibruit selon la revendication 3, caractérisée en ce que l'élément d'espacement respectif (4a) est pourvu, dans la région de seulement l'un des deux côtés longitudinaux de cet élément d'espacement (4a), de sections rétrécies (12) disposées aux deux extrémités, ou l'élément d'espacement respectif (4) est pourvu, dans la région des deux côtés longitudinaux de cet élément d'espacement (4), de sections rétrécies (12) disposées aux deux extrémités.
  5. Paroi antibruit selon l'une quelconque des revendications 1 à 4, caractérisée en ce que l'élément d'espacement respectif (4a) est connecté à des supports associés (3) dans la région du côté inférieur des supports (3) ou du côté supérieur des supports (3), ou l'élément d'espacement respectif (4) est connecté dans la région de connexion de deux parties de support (7) à la partie de support supérieure (7) et à la partie de support inférieure (7).
  6. Paroi antibruit selon l'une quelconque des revendications 1 à 5, caractérisée en ce que la partie de support respective (7) présente, en haut et en bas, au moins deux logements (10, 10 ; 11, 11) pour la connexion d'au moins deux éléments d'espacement (4, 4a) à chaque fois dans la région supérieure et inférieure de cette partie de support (7).
  7. Paroi antibruit selon l'une quelconque des revendications 1 à 6, caractérisée en ce que la première natte en treillis (14) et la deuxième natte en treillis (15) s'étendent sur la hauteur de la structure porteuse (2) au moins au-dessus du fond ainsi que sur la longueur de la structure porteuse (2).
  8. Paroi antibruit selon l'une quelconque des revendications 1 à 7, caractérisée en ce que la natte en treillis respective (14, respectivement 15) est formée par plusieurs parties de natte qui sont disposées de manière adjacente les unes aux autres ou de manière à se chevaucher.
  9. Paroi antibruit selon l'une quelconque des revendications 1 à 8, caractérisée en ce que l'élément en forme de barre (18) connecté aux nattes en treillis (14, 15) est réalisé sous forme de barre (19) avec des sections d'extrémité en forme de crochets (20), les sections en forme de crochets (20) venant en prise par le dessous avec des fils métalliques (16, 17) ou des barres des nattes en treillis (14, 15), notamment étant disposées avec l'extrémité respective de la barre dans la région d'un point d'intersection des fils métalliques (16, 17) ou des barres de la natte en treillis respective (14, 15).
  10. Paroi antibruit selon l'une quelconque des revendications 1 à 9, caractérisée en ce que la première natte en treillis (14) et/ou la deuxième natte en treillis (15) sont disposées de manière à s'appliquer lâchement sur les supports (3).
  11. Paroi antibruit selon l'une quelconque des revendications 1 à 10, caractérisée en ce que les éléments en forme de barre (18) sont disposés horizontalement.
  12. Paroi antibruit selon l'une quelconque des revendications 1 à 11, caractérisée en ce que la natte en treillis respective (14, respectivement 15) présente des premiers fils métalliques (16) disposés parallèlement les uns aux autres et des deuxièmes fils métalliques (17) disposés perpendiculairement à ceux-ci, les premiers fils métalliques (16) étant disposés horizontalement ou suivant un angle aigu par rapport à l'horizontale, notamment suivant un angle de 45° par rapport à l'horizontale.
  13. Paroi antibruit selon l'une quelconque des revendications 1 à 12, caractérisée en ce qu'entre des supports adjacents (3) de la structure porteuse (2) est prévu, de manière directement adjacente à ceux-ci, un élément absorbant les sons (23) disposé verticalement, qui s'étend notamment sur la hauteur de la structure porteuse (2).
  14. Paroi antibruit selon l'une quelconque des revendications 1 à 13, caractérisée en ce que le matériau de remplissage en vrac (24) est un matériau de remplissage monolithique, de la pierre naturelle, du ballast de pierre naturelle, du ballast de briques, du calcin, du ballast de béton ou un produit recyclé en vrac.
EP20120167747 2012-05-11 2012-05-11 Paroi antibruit Active EP2662491B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP20120167747 EP2662491B1 (fr) 2012-05-11 2012-05-11 Paroi antibruit
PCT/EP2013/000180 WO2013167212A1 (fr) 2012-05-11 2013-01-22 Mur antibruit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP20120167747 EP2662491B1 (fr) 2012-05-11 2012-05-11 Paroi antibruit

Publications (2)

Publication Number Publication Date
EP2662491A1 EP2662491A1 (fr) 2013-11-13
EP2662491B1 true EP2662491B1 (fr) 2014-03-26

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WO (1) WO2013167212A1 (fr)

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DE3535343A1 (de) * 1985-10-03 1987-04-09 Mast Garten Landschaftsbau Kg Schallschutzwand
ATE71679T1 (de) 1987-04-14 1992-02-15 Peter Lueft Bepflanzbare laermschutzwand.
DE3816127C2 (de) 1988-05-11 1997-03-06 Peter Lueft Bepflanzbare Lärmschutzwand
DE4125563A1 (de) * 1990-10-01 1992-06-04 Friedrich Gruber Schutzvorrichtung, insbesondere laermschutzvorrichtung
DE9305001U1 (de) * 1993-03-26 1993-09-23 Berlinische Landschaftsbau GmbH, 1000 Berlin Vegetative laermschutzwand
DE9408184U1 (de) 1994-05-18 1994-07-14 Lehfeldt, Günter, 35440 Linden Wandkörper für eine Schallschutzwand oder für die gärtnerische Gestaltung
DE20015661U1 (de) 2000-09-09 2000-12-07 Berlinische Landschaftsbau GmbH, 13187 Berlin Gabionenkorb
DE202011001203U1 (de) 2010-12-24 2011-05-26 Geosystem GBK GmbH, 10551 Lärmschutzwand mit Lärm dämmender Verfüllung und ästhetisch gestaltbaren Sichtflächen

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