The present invention relates to modular constructions. More specifically, the invention relates to a module for modular constructions where each module has a dedicated drainage system.
During construction, modular constructions include modules that once assembled are exposed to the elements, allowing rain or snow fall to accumulate on or in the modular construction.
An aspect of the present disclosure relates to a modular construction comprising a plurality of modules. Each module comprises four vertical walls, a floor, a base, a gabled roof, and a drainage system.
The gabled roof has a slope in the range of approximately 0.1% to 5.0%.
The base comprises legs which raise the floor of the module such that a first module may be stacked on top of a second module of the plurality of modules with sufficient room for the gabled roof of the first module to be positioned below the floor of the second module.
The drainage system comprises at least one drainpipe. Each module may support a drainpipe on each side of the module. The drainpipe is supported on the roof of the module or on roofs of horizontally adjacent modules. The drainpipe is angled towards a façade of the module.
The drainpipe is positioned at a slope in the range of approximately 0.1% to 2.0% to direct drainage away from an assembled module.
One of the vertical walls comprises a façade on an outer face.
The drainage system also may comprise a moisture sensor. The module further comprises a waterproof membrane on or over at least a portion of the gabled roof.
The plurality of modules comprises at least two horizontally adjacent modules and at least two vertically stacked modules. The adjacent and stacked modules are removably secured together via one or more connectors.
Another aspect of the present disclosure relates to a module for a modular construction. The module comprises a plurality of pre-fabricated panels including a façade panel, a rear panel, opposing side wall panels, a floor, and a ceiling. The module also comprises a gabled roof for supporting a drainpipe for the module wherein each roof portion has a slope in the range of approximately 0.1% to 5.0%. The opposing side panels have an extended height so as to provide a footed base to the module when assembled wherein the footed base provides a space below the floor of the module.
Terminal side ends of the gabled roof are configured to support a side edge of a drainpipe thereon.
The roof portions are each gabled in the direction of the side panels such that the drainpipe is positioned at an angle for drainage towards the façade panel and away from an assembled module.
The drainpipe has an incline in the range of approximately 0.1% to 2.0% to direct drainage towards the façade panel and away from an assembled module.
The module further comprising a waterproofing membrane on at least a portion of the gabled roof.
The module is configured for vertical and horizontal connection with subsequent modules. The module and subsequent modules are stackable and the footed portion of an upper module is secured on top of terminal side ends of the gabled roof such that there is an airgap between the gabled roof of a lower module and the floor of an upper module. At least one drainpipe is supported between the footed portion of the upper module and the terminal side end of the lower module on at least one side of the modules.
A module for use in a modular construction is described herein. Each module is configured for use in modular constructions such that a plurality of modules may be assembled and connected to one another, horizontally and vertically, to form the modular construction. The modules may be connected in rows and stacked to form two, three, four or more levels to the modular construction. Each module is provided with a corresponding water drainage system that is in addition to a drainage system for the overall modular construction. Adjacent units are securely connected to one another when constructing the modular construction via connecting mechanisms that allow secure connection of adjacent vertical and horizontal modules in a removable manner such that the modular construction can be dis-assembled, moved, and re-assembled on-site as needed.
The modular construction comprises a plurality of similarly constructed modules each having its own drainage system which can be useful during construction of the module as well as during construction of the modular construction. The drainage system for each module can also be beneficial once the modular construction is constructed to prevent water issues in one module from damaging or affecting an adjacent or lower module.
Once constructed, the modules are further protected from accidents in adjacent or upper modules for example, as leaking or broken water pipes may leak but the dedicated drainage system of the modules including the joints between adjacent modules serves to directed water away from the modules to the façade or exterior of the modular construction where the water is then drained from the modular construction. It is further contemplated that the modules may also accommodate a moisture or water sensor in or adjacent to the drainage system and/or joints between modules to detect water after the modular construction is completed which can indicate there is a leak within the modular construction for leak reporting.
In the embodiment illustrated in
Each module 12 may also comprise a pre-fabricated façade panel 15 for attaching to an outer face of the module 12 and in one embodiment the façade panel 12 may be provided already attached to the outer face of the module 12. An upper portion of each module 12 supports the drainage system 30 which allows for the collection and draining of water out of the modular construction including through the façade 15 during construction of the module 12 and the assembly of the modular construction 10 as well as during the lifetime of the assembled modular construction 10. The drainage system 30 of each module 12 provides secondary protection to the module 12 in the event of the presence of water or water leaks. A humidity sensor and/or moisture sensor (not illustrated) may be placed near the drainage exit.
The modules 12 are stackable by way of the base 22 being configured to accommodate a roof 14 of a second module 12b when the second module 12b is secured on top of a first module 12a as illustrated in
The roof 24 may be gabled as illustrated in
Each roof section 25 and 26 slopes down to connection with the corresponding side wall 18 and 20. Where the roof section 25 and 26 connects to the corresponding side walls 18 and 20, there may be a flat or substantially horizontal portion 40 extending along the length of the roof 24 coextending with the length 26 of the side walls 18 and 20. This flat or substantially horizontal portion 40 is a support for positioning the base 22 of a second module 12a, 12c, 12e, on top of a first module 12b, 12d, 12f.
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The drainpipe 44 itself or its positioning within the joints between adjacent modules may also be shaped with a slope in the range of about approximately 0.1 to about 2.0% in the direction of arrow 45 and/or directed towards the façade portion 15, or front, of the modular construction 10 to drain water away from the module 10 and outside of the modular construction 10. The roofs 24 and/or joints may also be provided with a waterproof covering or coating. The waterproof material may be further connected to the waterproof material of the roof with a seal therebetween.
When constructing or assembling the modular construction 10 the modules within the construction can be exposed to the elements and the dedicated drainage 30 and waterproofing system for each module 12 allows rain or snow for example to be directed toward the joints between adjacent modules 12 where drainage systems direct the water away from an interior of the modular construction 10 and towards the façade 15 or exterior of the modular construction where the water can then be drained away from the modular construction 10.
In one embodiment, the modules 12 may be constructed from prefabricated and/or substantially flat elements including walls and interior elements including floors and ceilings. The walls may comprise prefabricated elements including a steel frame and/or wooden frame and/or standard concrete with metallic reinforcement components and/or non-metallic reinforcement components.
The interior ceiling of the module 12 may be comprised of a prefabricated slab of light weight structure such as a wooden or lightweight steel material and may comprise a gypsum or wooden board cladding.
The floor of the module 12 may be a slab formed by in situ casting of standard concrete, or precast concrete, a reinforced slab also with non-metallic reinforcement, or an in situ casted or precast composite slab comprising a trapezoidal metal sheet, concrete, and standard and non-metallic reinforcement.
Each module is configured for on-site assembly, disassembly and re-assembly without limit. For example, the modular construction can be assembled on-site, used, disassembled, moved and reassembled at will.
Although the present disclosure has been described with reference to preferred embodiments, workers skilled in the art will recognize that changes may be made in form and detail without departing from the spirit and scope of the disclosure.
The present application claims priority to and the benefit of U.S. provisional application Ser. No. 62/958,602, filed on Jan. 8, 2020, the content of which is hereby incorporated in its entirety.
Number | Date | Country | |
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62958602 | Jan 2020 | US |