Claims
- 1. A modular stressed-panel building envelope, comprising a plurality of multi-layer flexible paneling modules adapted to be stretched between structural members, each of said multi-layer paneling modules having at least exterior and interior stressed layers defining a free space therebetween, said exterior and interior layers being operatively connected together between opposed ends thereof to work structurally in opposition to each other.
- 2. A modular stressed-panel building envelope as defined in claim 1, wherein said exterior and interior layers are spread apart at said ends.
- 3. A modular stressed-panel building envelope as defined in claim 2, wherein said interior layer is tied to said exterior layer at mid-span.
- 4. A modular stressed-panel building envelope as defined in claim 3, wherein said interior and exterior layers of each of said multi-layer paneling modules are woven together at mid-span.
- 5. A modular stressed-panel building envelope as defined in claim 4, wherein said multi-layer paneling modules include roof panels, and wherein said roof panels are provided with respective porous portion at a junction of said interior and exterior layers.
- 6. A modular stressed-panel building envelope as defined in claim 4, wherein each said multi-layer paneling module is provided in the form of a double-layer woven panel having an impermeable coating.
- 7. A modular stressed-panel building envelope as defined in claim 1, wherein each said multi-layer flexible paneling module includes a pair of side by side connected tubular panels having opposed top and bottom sides, said top sides forming said exterior layer of said multi-layer flexible paneling module.
- 8. A modular stressed-panel building envelope as defined in claim 7, wherein said interior layer of each said multi-layer paneling module is formed by an inner panel which is connected to said side by side connected tubular panels at a junction thereof so as to exert a pulling action thereon once stressed in position.
- 9. A modular stressed-panel building envelope as defined in claim 8, wherein said side by side connected tubular panels have a lens shape.
- 10. A lightweight building construction system, comprising multiple similar stressed roof and wall paneling modules assembled together to form a modular building envelope, wherein each roof paneling module includes at least interior and exterior flexible layers stretched between spaced-apart structural elements, said interior and exterior flexible layers being joined together between said structural elements to work in tandem once in a stressed state.
- 11. A lightweight building construction system as defined in claim 10, wherein said exterior and interior layers are joined together between opposed ends thereof and spread apart thereat.
- 12. A lightweight building construction system as defined in claim 11, wherein said interior layer is tied to said exterior layer at mid-span.
- 13. A lightweight building construction system as defined in claim 12, wherein said interior and exterior layers of each of said roof paneling modules are woven together at mid-span.
- 14. A lightweight building construction system as defined in claim 13, wherein said roof paneling modules are provided with respective porous portion at a junction of said interior and exterior layers.
- 15. A lightweight building construction system as defined in claim 13, wherein each said roof paneling module is provided in the form of a double-layer woven panel having an impermeable coating.
- 16. A lightweight building construction system as defined in claim 10, wherein each said roof paneling module includes a pair of side by side connected tubular panels having opposed top and bottom sides, said top sides forming said exterior layer of said roof paneling module.
- 17. A lightweight building construction system as defined in claim 16, wherein said interior layer of each said roof paneling module is formed by an inner panel which is connected to said side by side connected tubular panels at a junction thereof so as to exert a pulling action thereon once stressed in position.
- 18. A lightweight building construction system as defined in claim 17, wherein said side by side connected tubular panels have a lens shape.
- 19. A lightweight building construction system as defined in claim 10, further including a gutter hanging from each roof paneling module at a connection of said exterior and interior layers thereof.
- 20. A lightweight building construction system as defined in claim 19, wherein each said exterior layers is stretched in an open top V-shaped configuration, and wherein each said gutter is located at an apex of said exterior layer.
- 21. A lightweight building construction system as defined in claim 10, wherein said structural members include a number of flexible joists, each said flexible joist having a first elongated flexible member adapted to be tensely supported in an elevated position, a second elongated flexible member adapted to be supported in tension beneath said first elongated flexible member, and tensor means extending between said first and second elongated flexible members to induce opposing concave deflections in said first and second elongated flexible members, while preventing said first and second elongated flexible members from returning to respective relaxed positions thereof.
- 22. A lightweight building construction system as defined in claim 21, wherein said tensor means includes a tension member extending between said first and second elongated flexible members.
- 23. A canopy system for a building structure, comprising panel means stretched in a V-shaped configuration between spaced-apart structural elements so as to define a trough therebetween, and gutter means hanging from said panel means at said trough for draining off water from said panel means, while allowing said gutter means to move jointly with said panel means.
- 24. A canopy system as defined in claim 23, wherein at least one tensor is connected to said panel means between said structural elements to maintain said panel means in said V-shaped configuration.
- 25. A flexible joist for a lightweight building structure, comprising a first elongated flexible member adapted to be supported in tension in an elevated position, a second elongated flexible member adapted to be supported in tension beneath said first elongated flexible member, and tensor means extending between said first and second elongated flexible members to induce opposing concave deflections in said first and second elongated flexible members, while preventing said first and second elongated flexible members from returning to respective relaxed positions thereof.
RELATED APPLICATIONS
[0001] This is a continuation of International PCT Application No. PCT/CA00/00700 filed on Jun. 8, 2000 which claims the benefit of U.S. Application No. 60/138,548.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60138548 |
Jun 1999 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/CA00/00700 |
Jun 2000 |
US |
Child |
10003277 |
Dec 2001 |
US |