HOUSING UNIT
20180194442 ยท 2018-07-12
Inventors
Cpc classification
E04B1/34336
FIXED CONSTRUCTIONS
B63B35/44
PERFORMING OPERATIONS; TRANSPORTING
B63B2035/4426
PERFORMING OPERATIONS; TRANSPORTING
E04B1/34861
FIXED CONSTRUCTIONS
B65D90/008
PERFORMING OPERATIONS; TRANSPORTING
Y02A30/00
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
E04H1/04
FIXED CONSTRUCTIONS
B65D88/022
PERFORMING OPERATIONS; TRANSPORTING
E04H2001/1283
FIXED CONSTRUCTIONS
E04B1/7675
FIXED CONSTRUCTIONS
E04B1/34823
FIXED CONSTRUCTIONS
International classification
B63B35/44
PERFORMING OPERATIONS; TRANSPORTING
B65D88/74
PERFORMING OPERATIONS; TRANSPORTING
E04H1/12
FIXED CONSTRUCTIONS
B65D90/00
PERFORMING OPERATIONS; TRANSPORTING
E04B1/343
FIXED CONSTRUCTIONS
Abstract
A housing unit with a pontoon having a plurality of shipping containers arranged thereon. The shipping containers have been adapted to be habitable by providing at least one door and at least one window in the shipping containers and by insulating the shipping containers. The pontoon has a flat top, three or more of shipping containers placed on the flat top in a first polygon arrangement with an atrium formed inside the first polygon arrangement. Three or more shipping containers are placed on top the first polygon arrangement to form a second polygon arrangement. The second polygon arrangement is preferably being displaced relative to the first polygon arrangement to obtain a star shaped arrangement.
Claims
1. A housing unit (1) comprising pontoon (2) formed by a single hollow body with a flat top, with a plurality of shipping containers (3) arranged on said flat top, said shipping containers (3) having been adapted to be habitable by providing at least one door (4) and at least one window (5) in said shipping containers (3) and by insulating said shipping containers (3), flat top having three or more of said shipping containers (3) placed on said flat top in a first polygon arrangement with an atrium (17) formed inside said first polygon arrangement with a portion of said flat top forming the floor of said atrium.
2. A housing unit (1) according to claim 1, wherein said pontoon (2) has a polygon outline with number of sides equal or double the number of sides of said first polygon arrangement.
3. A housing unit (1) according to claim 1, wherein said shipping containers (3) in said first polygon arrangement partially protrude from said pontoon (2), the outline of said first polygon arrangement being larger than the outline of said pontoon (2).
4. A housing unit (1) according to claim 1, wherein the shipping containers (3) of said first polygon arrangement are arranged with a space between them, with a space large enough to form a passage for person to pass, said space being covered by glazing.
5. A housing unit (1) according to claim 1, wherein three or more shipping containers (3) are placed on top said first polygon arrangement to form a second polygon arrangement, said second polygon arrangement being displaced relative to the first polygon arrangement to obtain a star shaped arrangement.
6. A housing unit (1) according to claim 2, wherein the an outer side of at least one of the shipping containers (3) of said second polygon arrangement that faces said atrium (17) is provided with an access balcony (16), a staircase (11) preferably arranged between said flat top and said access balcony (16) and said access balcony (16) extending along a plurality of shipping containers (3) of said second polygon arrangement, said access balcony including balcony areas (14).
7. A housing unit (1) according to claim 1, wherein inner sides of the walls of said shipping container (3), including the roof and the floor, are insulated using reflective insulation sheets or panels that comprise at least two reflective layers, one reflective layer on each outer surface with another type of insulating material sandwiched between said reflective layers, said other insulating material being an air bubble film layer and/or a plastic foam layer.
8. A housing unit (1) according to claim 1, wherein the interior of said pontoon is accessible and comprises at least one room.
9. A housing unit (1) according to claim 1, further comprising a heat pump heat exchanging with the water surrounding the pontoon (2), directly or indirectly.
10. A housing arrangement (30) that includes a plurality of interconnected housing units (1) according to claim 1.
11. A housing arrangement (30) according to claim 10, wherein said pontoons (2) have a polygon outline, and wherein said pontoons (2) are interconnected by gangways (6), at least one of said pontoons (2) being provided with a gangway (6) for connection to shore (10), at least several of said pontoons (2) are provided with paths interconnecting said gangways (6) so as to form pathway (20) or pathway system that connects each of said pontoons (2) to shore (10).
12. A housing unit (1) according to claim 1 wherein said pontoon arrangement has equal length sides.
13. A housing unit (1) according to claim 9, wherein said heat pump is located inside said pontoon (2).
14. A housing unit (1) according to claim 8, wherein said pontoon (2) comprises a staircase accessible through an opening in the floor of said atrium.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0032] In the following detailed portion of the present description, the housing unit and the arrangement with a plurality of housing units will be explained in more detail with reference to the drawings, in which:
[0033]
[0034]
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[0040]
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[0043]
DETAILED DESCRIPTION
[0044] Below follows a description a housing unit 1 and open arrangement including a plurality of housing units.
[0045] In the below description, a pontoon, is understood as a flotation device with buoyancy sufficient to float itself as well as a heavy load and shipping container is understood as a standardized steel shipping container, i.e. am intermodal freight container.
[0046] Shipping containers have a strength suitable to withstand shipment, storage, and handling. In the context of international shipping trade, container or shipping container is virtually synonymous with (standard) intermodal freight container (a container designed to be moved from one mode of transport to another without unloading and reloading).
[0047] An intermodal container (also container, freight container, ISO container, shipping container, hi-cube container, box, conex box and sea can) is a standardized reusable steel box. Shipping containers are generally used to store and move materials and products in the global containerized intermodal freight transport system efficiently and securely. Intermodal indicates that the container can be moved from one mode of transport to another (from ship, to rail, to truck) without unloading and reloading the contents of the container. Lengths of containers, which each have a unique ISO 6346 reporting mark, vary from 8 to 56 feet (2.438 to 17.069 m) and heights from 8 feet (2.438 m) to 9 feet 6 inches (2.896 m). There are about 17 million intermodal containers in the world of varying types to suit different cargoes.
[0048] A typical steel shipping container has doors fitted at one end, and is made of corrugated weathering steel. Standard steel shipping containers can be 8-foot (2.44 m) wide by 8-foot (2.44 m) high, and either a nominal 20-foot (6.1 m) or 40-foot (12.19 m) long. They can be stacked up to seven units high. At each of the eight corners are castings with openings for twistlock fasteners.
[0049] A typical steel shipping container is made of corrugated sheet steel walls that are welded to the main structural top and bottom side rails and end frames that are of fabricated or shaped steel sections. The end frames have fittings (steel castings) at all eight corners that are usually welded to the four corner posts, top and bottom side and front rails, and rear doorsill and header. The roof can be flat or corrugated sheet steel welded to the top side and end rails and door header; it may have interior roof bows for support. The doors are usually steel or plymetal (steel-faced wood) panels fitted with locking and antirack hardware and weatherproof seals. The floor of most intermodal shipping containers is marine grade plywood, but floor may be soft or hard laminated wood, planking, or plywood either screwed or bolted to the cross members.
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[0055] The pontoon 2 is a raft-like platform with a substantially flat upper surface for supporting the shipping containers 3 arranged thereon. The pontoon 2 can be anchored, typically close to shore 10, and the pontoon 2 provides enough buoyancy for the complete housing unit 1 when the housing unit 1 is floated. The pontoon 2 can be made from various materials, one suitable material being concrete, such as steel reinforced concrete. In an embodiment, the interior of the pontoon 2 is be divided by partition walls 7 into several rooms 8 and the pontoon 2 is optionally provided with a staircase 9 that connects the upper surface of the pontoon 2 to the bottom floor of the pontoon 2. A floor 25 covers the top of the pontoon 2 in order to provide a flat top surface that serves e.g. to support the shipping containers 3 placed thereon and it also serves to provide a flooring for the atrium 17. The bottom floor can be provided with tubing therein (preferably the tubing is embedded in the concrete slab that forms the bottom floor), for example in a meandering pattern, in order to provide a heat exchanger function with water surrounding the pontoon 2. The tubing in the bottom floor is connected with a heat pump that is part of the heating equipment 19 that is used to provide warm water for underfloor heating of the shipping containers and for providing warm water for sanitary purposes. The tubing in the bottom floor can also be connected to cooling equipment 23. The heat pump exploits the heat in the surrounding water. The heat pump can be connected to the tubing in the bottom floor or the heat pump can used the water surrounding the pontoon directly. The heat pump can be driven by solar energy from solar panels on the roof to the upper shipping containers 3. The housing unit can be provided with a battery or battery bank, located e.g. inside the pontoon
[0056] The housing units 15 like apartments or studios are obtained by adapting an intermodal shipping container 3. In the shown embodiments 40 feet long, 8 feet wide and 8 feet high intermodal containers have been used as the starting point for constructing the housing units 15. Alternatively, 20 feet long intermodal containers 3 could also have been used. The shipping containers 3 have been adapted by providing them with doors 4 and windows 5. In particular, the end walls at the longitudinal ends of the shipping containers 3 are provided with windows 5, i.e. the original doors at one longitudinal end of a shipping container are replaced by walls or windows. The complete and wall can be provided with glazing to provide a large window area by using a window frame that fits the end of the containers such a window 5 is easy to secure to the shipping containers 3. The sidewalls of the shipping containers 3 can also be provided with windows 5, and roof windows (is not shown) are also an option. As part of the adaptation process the shipping containers are locally reinforced to compensate for any weakening caused by the provision of doors and windows. The local reinforcement can be in the form of steel beams and the like. The conversion to living space is such that the shipping containers are still compatible with standard shipping containers so that the converted shipping containers can be shipped in the same way as standard shipping containers by train, truck (lorry) or ship.
[0057] The roof 21 of one or more shipping containers 3 can be configured be configured as a roof terrace 27 provided with a railing and a staircase 13 along the side of the container to provide access. A single shipping container 3 can be used to provide a single apartment our studio 15, or a single shipping container 3 can be divided into two studios (as shown in
[0058] Another measure for adapting the shipping containers 3 to housing purposes is the provision of insulation. Insulation is provided by applying reflective insulation sheets or panels 33 to the inner sides of the shipping containers 3. A cross-sectional view of such insulation sheets or panels 33 is shown in
[0059] The shipping containers 3 are heated and preferably provided with floor heating, even more preferably water based underfloor floor heating.
[0060]
[0061] Six shipping containers are placed on top the first polygon arrangement to form a second polygon arrangement. The second polygon arrangement is displaced relative to the first polygon arrangement (rotated relative to the first polygon arrangement by half of the angle between the sides of the polygon) to obtain a star shaped arrangement. The second polygon arrangement has the same number of sides as the first polygon arrangement. However, the second polygon arrangement preferably includes more shipping containers 3 than the first polygon arrangement, with even more preferably at least some of the shipping containers in the second polygon arrangement being placed side by side. The shipping containers 3 that are placed side-by-side share a common roof 21.
[0062] The atrium 17 is also extends inside the second polygon arrangement. The outer side of at least one of the shipping containers 3 of the second polygon arrangement that faces the atrium 17 is provided with an access balcony 16. A staircase 11 is arranged between the flat top (flooring) 25 and the access balcony 16. The access balcony 16 can extend along a plurality of shipping containers 3 of the second polygon arrangement. The access balcony 16 preferably including regular balcony areas 14, that interconnect the assess balconies 16 that extend along the individual shipping containers 3. Advantageously, these balcony areas 14 are located adjacent spacing between the corners of shipping containers 3 so as to provide a view from within the atrium 17 when located on a balcony area 14. Also in the second polygon arrangement the space between the shipping containers is filled with a glazed wall or the like to provide a view to protect from the environment.
[0063] A door 5 in a shipping container 3 of the second polygon arrangement opens directly to the access balcony 16 or opens to a corridor 12 inside the container 3 that connects to the access balcony 16.
[0064] Preferably, the atrium 17 is covered by a cover 22. The cover 22 is preferably a (light) transparent cover or roof that even more preferably is at least partially openable in order to regulate the climate inside the atrium i.e. for ventilation purposes. Hereto, motorized openable panels (not shown) can be used.
[0065] Access to the housing unit 1 is provided by a gangway 6. The gangway 6 can be connected to the housing unit 1 at the level of the first polygon arrangement and/or at the level of the second polygon arrangement. The gangway 6 can connect at the opening between two shipping containers 3 or that the corridor 12 that goes through one or more shipping containers 3.
[0066] As shown for example in
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[0068] All pontoons 2 have an identical polygon outline and size and the pontoons 2 are interconnected by gangways 6. At least one of the pontoons 2 is provided with a gangway 6 for connection to shore 10. At least several of the pontoons 2 are provided with paths interconnecting the gangways 6 so as to form a pathway 20 or pathway system that connects each of the pontoons 2 to shore 10. At least a portion of the pathway 20 can be part of atria 17 formed on each pontoon 2 inside the first polygon arrangement.
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[0071] Each housing unit 1 can be provided with its own controller that controls e.g. the heating and/or cooling equipment. Alternatively a central controller that is placed in one of the housing units 1 or that is remotely placed controls the equipment in an arrangement that comprises a plurality of housing units 1.
[0072] Although the teaching of this application has been described in detail for purpose of illustration, it is understood that such detail is solely for that purpose, and variations can be made therein by those skilled in the art without departing from the scope of the teaching of this application. The term comprising as used in the claims does not exclude other elements or steps. The term a or an as used in the claims does not exclude a plurality. The mere fact that certain measures are recited in mutually different dependent claims does not indicate that a combination of these measured cannot be used to advantage. The reference signs used in the claims shall not be construed as limiting the scope.