1. Field of the Invention
The invention relates to the field of support systems for structures. More particularly, the invention relates to a framework for supporting residential, commercial, industrial and other types of structures, whereby the support system also provides space for utility systems and storage.
2. Discussion of the Prior Art
Most conventional structures, be they for residential, commercial, or industrial endeavors, typically have a load-bearing support system, i.e., a frame, to support the walls and the roof. The utility systems, such as, for example, electrical wiring, plumbing, heating and ventilation, etc., are incorporated into the structure completely independently of the load-bearing support system, and typically in the walls of the structure. The disadvantage of such an arrangement is that it is difficult to access wiring, plumbing, and other systems to replace or repair them, when they are embedded in a wall.
What is needed, therefore, is an integrated structural framework that incorporates space for utility systems into the framework.
The invention is a structure core for providing a load-bearing framework for a structure and, at the same time, providing space for accommodating various infrastructure systems and storage.
The structure core is a dual core system that provides the boundaries for an outer shell of a structure and an inner core for providing access to the infrastructure systems and storage. The term “structure” as used hereinafter shall include any type of a stand-alone structure, such as, but not limited to, residential, commercial, industrials buildings, garages, mobile structures, etc.
The structure core according to the invention has an inner core and an outer core. Each core is a six-sided construction formed by hollow conduits that are interconnected, so as to form an open-body that has an outer shape of a cuboid, whereby the perimeter of the body is defined by the conduits and the body is otherwise open-spaced. The term “cuboid” as used herein encompasses bodies having six faces and wherein the angles between any adjacent faces are right angles.
The conduits are large hollow bodies, dimensioned to accept infrastructure systems, such as, but not limited to, heating, cooling and ventilation systems, oil tank, water heater, electrical and telecommunications wiring, plumbing, storage appliances, such as freezers or refrigerators, and transportation devices and systems, such as ladders, staircases, or elevators. The conduits are preferably dimensioned such that a person can maneuver around inside them. For example, the horizontal conduits may serve as passageways or corridors, the sloping conduits as stairwells, and the vertical conduits may accommodate an elevator or ladder well. Storage shelves or platforms may be affixed to the inner walls of the conduits. The dimensions may be such that a large piece of furniture may be stored in the conduit, with space remaining for a passageway. The interconnected system of conduits allows wiring, plumbing, heating and ventilation means to be re-configured with regard to various areas of the structure, without having to break through walls and floors. This concept allows appliances and systems to be placed close to where they are needed. The water tank, for example, may be placed in a conduit close to the kitchen and or bathroom.
Exterior wall, doors, windows, roofs may be incorporated into or affixed to the outer core, and interior floors and walls affixed to the inner core and outer core.
The structure core may be partially submerged in the ground, so that underground utilities enter into the respective conduits below grade.
The present invention is described with reference to the accompanying drawings. In the drawings, like reference numbers indicate identical or functionally similar elements. The drawings are not drawn to scale.
The present invention will now be described more fully in detail with reference to the accompanying drawings, in which the preferred embodiments of the invention are shown. This invention should not, however, be construed as limited to the embodiments set forth herein; rather, they are provided so that this disclosure will be complete and will fully convey the scope of the invention to those skilled in the art.
FIGS. 5 and 9A-10B are partial cut-away views of the structure core 100 that illustrate the core conduits 11, 21, and 31.
The dimensions of the conduits 11, 21, and 31 depend, of course, on the intended use of the structure to be built around the structure core 100. In a residential structure, for example, the conduits are dimensioned so as to accommodate heating, cooling, electrical, plumbing, and other utility systems, as well as a staircase or an elevator and storage space. In an embodiment for a residential structure, the conduits 11, 21, and 31 may be constructed of concrete and have an inner dimension of 2×2 meters or 7×7 feet, or any other dimension that is suitable. These suggested dimensions are large enough to accommodate most heating, air conditioning, ventilation, refrigeration, vacuuming appliances, etc., and still provide passage around them or room for a ladder or small staircase.
The figures provided herein illustrate a dual core support structure 100 in which the inner core 10 is supported within the boundaries of the outer core 20, such that an elevation means, such as a ramp, a ladder, a staircase, is required to move from a level defined by a horizontal conduit 21 to a level defined by a horizontal conduit 11. This variation in levels is desirable in buildings in which it is useful or convenient to have a basement level and an attic level.
Exterior walls, doors, windows, and a roof may be attached to the outer core 20 and interior walls attached to the inner core 10 and between the inner and outer cores.
Depending on the materials used for the walls and roof, it is possible to construct a building with the structure core 100 according to the invention, in which a person standing in the inner core has an unimpeded view to the outdoors, through all side walls and through the roof. For example, if a transparent material is used for at least the center portion of the roof that covers the upper face of the inner core 10 and for at least portions of the exterior walls, the structure so constructed would significantly reduce the need for lighting, because of the ambient light coming through the transparent material.
It is understood that the embodiments described herein are merely illustrative of the present invention. Variations in the construction of the structure core may be contemplated by one skilled in the art without limiting the intended scope of the invention herein disclosed and as defined by the following claims.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/US2013/033084 | 3/20/2013 | WO | 00 | 7/16/2014 |
Number | Date | Country | |
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61613054 | Mar 2012 | US |