Improved modular element for making underground structures for basins designed to manage meteoric waters or underground structures for retaining soil
20230220658 ยท 2023-07-13
Inventors
Cpc classification
International classification
Abstract
A modular element or semi-module for making underground structures of basins for the management of meteoric waters or for retaining soil includes a substantially planar base portion and one or more pillars rising from the base portion. Each pillar is hollow and has a first external wall defining at least one internal cavity, inside the cavity there being an internal tubular stiffening wall that is spaced from the external wall and has a prismatic shape or a shape substantially corresponding to that of the external wall.
Claims
1. A modular element or semi-module (100) for making underground structures for basins designed to manage meteoric waters or underground structures for retaining soil, comprising: a planar base portion (101); and one or more pillars (10) rising from said base portion (101); wherein each of said pillars (10) is hollow and comprises a first external wall (14) defining an internal cavity (13), and wherein stiffening elements are provided inside said cavity (13).
2. The modular element or semi-module (100) according to claim 1, wherein said first external wall (14) is tubular and defines said cavity (13), and wherein inside said cavity (13) there is a stiffening tubular internal wall (17) which is spaced from said external wall (14) and has a prismatic shape or a shape corresponding to that of said external wall (14).
3. The modular element or semi-module (100) according to claim 2, wherein said external wall (14) and said internal wall (17) have a same height, so that ends of said external wall (14) and ends (171, 172) of said internal wall (17) define a larger base (11) and a smaller base (12) of said pillars (10).
4. The modular element or semi-module (100) according to claim 2, wherein said first external wall (14) is shaped as a truncated pyramid or has a shape suitable for stacking said modular element or semi-module with other identical modular elements or semi-modules (100).
5. The modular element or semi-module (100) according to claim 1, wherein said first external wall (14) is ribbed or undulated.
6. The modular element or semi-module (100) according to claim 3, wherein said internal wall (17) and said external wall (14) are joined together by connecting partitions (18) configured to allow water to flow therethrough.
7. The modular element or semi-module (100) according to claim 1, wherein a larger base of said one or more pillars (10) is joined to said base portion (101), and wherein an opposite smaller base of said one or more pillars (10) comprises engagement means (15, 16) to engage an opposite smaller base (12) of an identical, symmetrically stacked modular element or semi-module (100).
8. The modular element or semi-module (100) according to claim 7, wherein on said base portion (101) there is a main hole (102) configured and sized so that it can be coupled with a duct of an inspection shaft, and wherein said one or more pillars (10) are distributed around said main hole (102).
9. The modular element or semi-module (100) according to claim 8, wherein said main hole (102) is in a central position on said base portion (101), and wherein said one or more pillars (10) are a plurality of distributed symmetrically around said main hole (102).
10. A module (200) for making underground structures of underground basins for management of meteoric waters or for retaining soil, comprising: two semi-modules (100) according to claim 1, wherein said two semi-modules (100) are arranged symmetrically so that smaller bases (12) of said one or more pillars (10) are opposite to each other and joined together.
11. A system of underground structures of underground basins for management of meteoric waters or for retaining soil, comprising: a plurality of semi-modules (100) according to claim 8, coupled in pairs so as to form a plurality of said modules (200) arranged symmetrically so that smaller bases (12) of said one or more pillars (10) are opposite to each other and joined together.
12. The system according to claim 11, wherein said main holes (102) of said semi-modules are distributed on said system in a grid pattern with rectangular meshes, at distances included between 50 and 100 cm.
13. The system according to claim 12, further comprising first grids (110) configured to be installed so as to close said main holes (102) of the semi-modules (100), and coupling means (111, 113) for coupling said first grids (110) with said semi-modules (100).
14. The system according to claim 11, further comprising second grids (120) configured to be installed so as to close said cavities (13) on a side where said base portions (101) of said semi-modules (100) are located, and coupling means (122, 123) for coupling said second grids (120) with said semi-modules (100).
15. The system according to claim 14, wherein a shape of said second grids (120) corresponds to a shape of said larger base (11) of said pillars (10) after removal of one or more selectively detachable corners (121).
Description
[0036] The characteristics of the new semi-module, the module and the system for the construction of structures will be better explained by the following description with reference to the drawings attached by way of a non-limiting example.
[0037]
[0038]
[0039]
[0040]
[0041]
[0042]
[0043] This is an improved modular or semi-module element (100) for the construction of underground structures of basins for the management of rainwater or for retaining soil.
[0044] Said semi-module (100) comprises a substantially plane and rectangular base portion (101), grid shaped, that is, equipped with a plurality of holes/openings (103) for the passage of water.
[0045] From said base portion (101) some internally hollow and homogeneously distributed pillars (10) rise. For example, said semi-module (100) comprises four of said pillars (10) symmetrically arranged on said base portion (101).
[0046] Each of said pillars (10) comprises an external wall (14), with a substantially truncated pyramid shape or in any case suitable for stacking.
[0047] Said external wall (14) is preferably stiffened, for example ribbed or corrugated and preferably with a truncated pyramidal shape and a square base.
[0048] The larger base (11) of said pillars (10) is joined to said base portion (101), while the opposite smaller bases (12) comprise means for coupling (15, 16) with the counterposed smaller bases (12) of an identical semi-module (100), symmetrically superimposed as shown in
[0049] For example, said smaller bases (12) of the pillars (10) comprise seats (15) and/or protrusions (16) arranged so that by symmetrically superimposing a second identical semi-module (100), said protrusions (16) of the first semi-module (100) engage in the seats (15) of the second semi-module (100) and vice versa.
[0050] As shown in the Figures, said pillars (10) are hollow, that is, there are cavities (13) inside them. In the preferred embodiment, said outer wall (14) of the pillars (10) is tubular and said pillars (10) are open at both of said ends so that said cavities (13) can be passed through.
[0051] Inside said cavities (13) of said pillars (10) there are stiffening elements. In particular, inside each of said pillars (10) there is an internal stiffening wall (17), spaced from said external wall (14) and of a substantially prismatic shape or even a truncated pyramidal shape substantially corresponding to said external wall (14).
[0052] Said external wall (14) and said internal wall (17) preferably have the same height, so that the ends of said external wall (14) and the ends (171, 172) of said internal wall (17) substantially correspond to said larger base (11) and smaller base (12) of said pillars (10).
[0053] Said internal wall (17) and said external wall (14) are joined together, for example in correspondence with said smaller base (12) of the pillar (10), by means of connecting partitions (18) which in any case enable the passage of water in the pillar (10) itself.
[0054] As shown in
[0055] The whole module (200) obtained by joining two semi-modules (100) will therefore have a substantially parallelepiped shape, for example cubic, comprising two opposite plane bases (201, 202), made up of said base portions (101) of the two semi-modules (100) and spaced apart by pillars (203), each in turn made up by the coupling of two pillars (10) of said semi-modules (100).
[0056] In a possible alternative embodiment represented in
[0057] Said main hole (102) is configured and sized to be coupled with the duct of an inspection shaft.
[0058] Thus the pillars (10) arise, as previously described, from said base portion (101) and are distributed around said main hole (102). For example, said semi-module (100) comprises four of said pillars (10) symmetrically arranged around said central main hole (102).
[0059] In the event that said main hole (102) is present, said outer wall (14) of the pillars (10) has a modified shape according to the presence of the main hole (102) itself and in particular it has a preferably truncated pyramidal shape with a 5-sided polygonal base with four straight sides orthogonal to each other and a fifth inclined side, straight or curved, closer to said main central hole (102).
[0060] The whole module (200) obtained by joining two semi-modules (100) will therefore be equipped with a through channel (204) between said opposite plane bases (201, 202), made of said main holes (102) made on said base portions (101) of the two semi-modules (100).
[0061] The system for the construction of underground basins therefore comprises a plurality of said semi-modules (100), coupled two by two to form a plurality of said modules (2000) and also comprises closure grids (110, 120, 130) suited to be positioned above and laterally to the modules (2000) to create parallelepiped structures with walkable surfaces as well as with structural cavities through which the loads can be appropriately distributed.
[0062] As shown in
[0063] As shown in
[0064] For example, said second closure grids (120) have a shape corresponding to said larger base (11) of the pillars (10). To optimize the production of the pieces and the installation procedures, said second closure grid (120) is expected to have a rectangular shape, with selectively detachable corners (121), in order to be used on both the semi-module (100) without a main hole (102), having pillars (10) with a quadrangular base, and on the semi-module (100) equipped with a main hole (102), having pillars (10) with a pentagonal base.
[0065] Said second closure grids (120) also comprise coupling means (122) to corresponding coupling means (123) present on the edge of said cavities (13).
[0066] The system also preferably comprises third lateral closure grids (130) suited to be installed laterally with respect to said pillars (10) also equipped with coupling means (131) to corresponding coupling means (132) present on said semi-modules (100).
[0067] The system also comprises connection means for coupling the grids on the modules and for coupling between semi-modules (100) and adjacent modules (200) not shown in the Figures.
[0068] Therefore, with reference to the preceding description and the attached drawings the following claims are made.