Claims
- 1. A roof ventilation system for a sloped roof, comprising:a sloped structural layer having an upper surface, a lower surface, and two or more primary vents extending between the lower surface and the upper surface; and a plurality of roofing tile elements mounted over the structural layer upper surface to form a ventilation layer therebetween in ventilating communication with the two or more primary vents; one or more primary vents disposed near an upslope edge of the sloped roof; and one or more primary vents disposed near a downslope edge of the sloped roof.
- 2. The invention as claimed in claim 1, wherein one of the tile elements further comprises:a vent frame with one or more vent frame openings in ventilating communication with a primary vent, an exposed pan section forming a segment of a pan channel, and a cap section forming a segment of a cap column, the pan and cap sections being overlapped by tile elements in an upslope row of tile elements and tile elements in a downslope row of tile elements; and a vent cap having an elongated axis parallel to the cap column and extending from the portion of the cap section overlapped by tile elements in the upslope row to form a vent opening in ventilating communication with the one or more vent frame openings.
- 3. The invention as claimed in claim 1, wherein each of said one or more vent frame openings further comprises:a permeable surface.
- 4. The invention as claimed in claim 3, wherein said permeable surface further comprises:a wire screen.
- 5. The invention as claimed in claim 3, wherein each of said one or more vent frame openings further comprises:one or more flanges to prevent moisture incursion.
- 6. The invention as claimed in claim 3, wherein each of said one or more vent frame openings further comprises:one or more baffles to prevent moisture incursion.
- 7. The invention as claimed in claim 3, wherein each of said one or more vent frame openings further comprises:one or more ridges to prevent moisture incursion.
- 8. The invention as claimed in claim 3, wherein the vent cap and the vent frame are joined at an angle.
- 9. The invention as claimed in claim 3, wherein the vent frame further comprises:one or more tapered flanges.
- 10. The invention claimed in claim 3, wherein said upslope and downslope edges are configured to form a precise fit against said overlapping upslope and downslope tiles respectively.
- 11. The invention claimed in claim 3, wherein said vent frame has a cap flange configured to form a precise fit under and against a cap of an overlapping tile.
- 12. The invention claimed in claim 3, wherein said vent frame has a pan flange configured to form a precise fit against a pan of an overlapping tile.
- 13. The invention claimed in claim 3, wherein said vent frame and said vent cap are mounted together to form an S-shaped tile.
- 14. The invention claimed in claim 3, wherein said vent frame and said roof vent caps are mounted together in the shape of double-wide roof tiles.
- 15. The invention claimed in claim 3, wherein said vent frame and said vent caps are mounted together in the shape of the surrounding roof tiles.
- 16. The invention claimed in claim 3, wherein:said primary vent, vent frame, and vent caps are painted or fused with color to match the surrounding roof tiles.
- 17. A roof ventilation system for a roof of that type in which a water resistant layer is fixed to the upper surface of a sloped structural layer, and a roof shield layer composed of clay, concrete, slate or metal tiles is fixed to the upper surface of the water resistant layer to form a ventilation layer therebetween, wherein the improvement comprises:one or more primary vents extending through the waterproof layer and the sloped structural layer to form a ventilation path therethrough to the ventilation layer; and one or more secondary vent tiles secured in the roof shield layer and in ventilating communication with the ventilation layer.
- 18. A ventilated roof, comprising:a roof structural layer through which air is to be ventilated; a primary vent disposed in the structural layer to provide an air flow passage therethrough having a first venting performance; a plurality of tiles mounted on the structural layer to form a tile layer thereover and arranged to provide air flow passages between adjacent tiles having a combined second venting performance; and a secondary vent disposed in the tile layer to form an outer roofing layer therewith and having an air passage therethrough with a third venting performance smaller than the first venting performance, the outer roofing layer being in air flow communication with the primary vent to provide a venting air flow passage for venting said air.
- 19. The invention of claim 18, wherein the venting air flow passage has a fourth venting performance greater than the second venting performance.
- 20. The invention of claim 18 or 19, wherein the secondary vent further comprises:a vent frame with one or more vent frame openings in ventilating communication with a primary vent, an exposed pan section forming a segment of a pan channel, and a cap section forming a segment of a cap column, the pan and cap sections being overlapped by tile elements in an upslope row of tile elements and tile elements in a downslope row of tile elements; and a vent cap having an elongated axis parallel to the cap column and extending from the portion of the cap section overlapped by tile elements in the upslope row to form a vent opening in ventilating communication with the one or more vent frame openings.
- 21. The invention of claim 20, wherein the vent frame and the vent cap are formed as an integral structure.
- 22. The invention of claim 20, wherein the vent cap is mounted at an angle to the vent frame.
- 23. The invention of claim 20, further comprising:a permeable surface disposed over each vent frame opening.
- 24. The invention of claim 23, wherein the permeable surface further comprises:wire screen.
- 25. The invention of claim 20, wherein each vent frame opening further comprises:one or more flanges to prevent moisture incursion.
- 26. The invention of claim 20, wherein each vent frame opening further comprises:one or more baffles to prevent moisture incursion.
- 27. The invention of claim 20, wherein each vent frame opening further comprises:one or more ridges to prevent moisture incursion.
- 28. The invention of claim 20, further comprising:a water repellant layer secured to the structural layer upper surface.
- 29. A method for ventilating a roof, comprising the steps of:providing a roof structural layer through which air is to be ventilated; selecting a primary vent having a first venting performance; mounting the primary vent in the structural layer to provide an air flow passage therethrough; selecting a plurality of tiles; arranging the tiles on the structural layer to provide air flow passages between adjacent tiles; mounting the tiles on the structural layer to form a tile layer thereover having a combined second venting performance; selecting a secondary vent having an air passage therethrough with a third venting performance smaller than the first venting performance; and mounting the secondary vent in the tile layer to form an outer roofing layer therewith in air flow communication with the primary vent to provide a venting air flow passage for venting said air.
- 30. The method of claim 29, wherein the venting air flow passage has a fourth venting performance greater than the second venting performance.
- 31. The method of claim 29 or 30, wherein the step of selecting a secondary vent includes selecting a secondary vent that comprises:a vent frame with one or more vent frame openings in ventilating communication with a primary vent, an exposed pan section forming a segment of a pan channel, and a cap section forming a segment of a cap column, the pan and cap sections being overlapped by tile elements in an upslope row of tile elements and tile elements in a downslope row of tile elements; and a vent cap having an elongated axis parallel to the cap column and extending from the portion of the cap section overlapped by tile elements in the upslope row to form a vent opening in ventilating communication with the one or more vent frame openings.
- 32. The method of claim 31, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein the vent frame and the vent cap are formed as an integral structure.
- 33. The method of claim 31, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein the vent cap is mounted at an angle to the vent frame.
- 34. The method of claim 31, wherein the step of selecting a secondary vent includes selecting a secondary vent further comprising:a permeable surface disposed over each vent frame opening.
- 35. The method of claim 34, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein the permeable surface further comprises:wire screen.
- 36. The method of claim 31, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein each vent frame opening further comprises:one or more flanges to prevent moisture incursion.
- 37. The method of claim 31, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein each vent frame opening further comprises:one or more baffles to prevent moisture incursion.
- 38. The method of claim 31, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein each vent frame opening further comprises:one or more ridges to prevent moisture incursion.
- 39. The method of claim 31, comprising the further step of:securing a water repellant layer to the structural layer upper surface.
- 40. A ventilated roof, comprising:a roof structural layer through which air is to be ventilated from an attic; a primary vent disposed in the structural layer to provide an air flow passage therethrough having a first venting performance; a plurality of tiles mounted on the structural layer to form a tile layer thereover and arranged to provide air flow passages between adjacent tiles having a combined second venting performance; and a secondary vent disposed in the tile layer to form an outer roofing layer therewith and having an air passage therethrough with a third venting performance, the outer roofing layer being in air flow communication with the primary vent to provide a venting air flow passage having a fourth venting performance greater than the second venting performance for venting the air from the attic.
- 41. The invention of claim 40, wherein the third venting performance is smaller than the first venting performance.
- 42. The invention of claim 40 or 41, wherein the secondary vent further comprises:a vent frame with one or more vent frame openings in ventilating communication with a primary vent, an exposed pan section forming a segment of a pan channel, and a cap section forming a segment of a cap column, the pan and cap sections being overlapped by tile elements in an upslope row of tile elements and tile elements in a downslope row of tile elements; and a vent cap having an elongated axis parallel to the cap column and extending from the portion of the cap section overlapped by tile elements in the upslope row to form a vent opening in ventilating communication with the one or more vent frame openings.
- 43. The invention of claim 42, wherein the vent frame and the vent cap are formed as an integral structure.
- 44. The invention of claim 42, wherein the vent cap is mounted at an angle to the vent frame.
- 45. The invention of claim 42, further comprising:a permeable surface disposed over each vent frame opening.
- 46. The invention of claim 45, wherein the permeable surface further comprises:wire screen.
- 47. The invention of claim 42, wherein each vent frame opening further comprises:one or more flanges to prevent moisture incursion.
- 48. The invention of claim 42, wherein each vent frame opening further comprises:one or more baffles to prevent moisture incursion.
- 49. The invention of claim 42, wherein each vent frame opening further comprises:one or more ridges to prevent moisture incursion.
- 50. The invention of claim 42, further comprising:a water repellant layer secured to the structural layer upper surface.
- 51. A method for ventilating a roof, comprising the steps of:providing a roof structural layer through which air is to be ventilated; selecting a primary vent having a first venting performance; mounting the primary vent in the structural layer to provide an air flow passage therethrough; selecting a plurality of tiles; arranging the tiles on the structural layer to provide air flow passages between adjacent tiles; mounting the tiles on the structural layer to form a tile layer thereover having a combined second venting performance; selecting a secondary vent having an air passage therethrough with a third venting performance; and mounting the secondary vent in the tile layer to form an outer roofing layer therewith in air flow communication with the primary vent to provide a venting air flow passage having a fourth venting performance greater than the second venting performance for venting said air.
- 52. The method of claim 51, wherein the third venting performance is smaller than the first venting performance.
- 53. The method of claim 51 or 52, wherein the step of selecting a secondary vent includes selecting a secondary vent that comprises:a vent frame with one or more vent frame openings in ventilating communication with a primary vent, an exposed pan section forming a segment of a pan channel, and a cap section forming a segment of a cap column, the pan and cap sections being overlapped by tile elements in an upslope row of tile elements and tile elements in a downslope row of tile elements; and a vent cap having an elongated axis parallel to the cap column and extending from the portion of the cap section overlapped by tile elements in the upslope row to form a vent opening in ventilating communication with the one or more vent frame openings.
- 54. The method of claim 53, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein the vent frame and the vent cap are formed as an integral structure.
- 55. The method of claim 53, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein the vent cap is mounted at an angle to the vent frame.
- 56. The method of claim 53, wherein the step of selecting a secondary vent includes selecting a secondary vent further comprising:a permeable surface disposed over each vent frame opening.
- 57. The method of claim 56, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein the permeable surface further comprises:wire screen.
- 58. The method of claim 53, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein each vent frame opening further comprises:one or more flanges to prevent moisture incursion.
- 59. The method of claim 53, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein each vent frame opening further comprises:one or more baffles to prevent moisture incursion.
- 60. The method of claim 53, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein each vent frame opening further comprises:one or more ridges to prevent moisture incursion.
- 61. The method of claim 53, comprising the further step of:securing a water repellant layer to the structural layer upper surface.
- 62. A ventilated roof, comprising:a roof structural layer through which air is to be ventilated; a primary vent disposed in the structural layer to provide an air flow passage therethrough having a first venting performance; a secondary vent disposed in the tile layer and having an air passage therethrough with a third venting performance smaller than the first venting performance, the tile layer and secondary vent being in air flow communication with the primary vent to provide a venting air flow passage having a combined fourth venting performance approximately equal to the first venting performance for venting the air; and a plurality of tiles mounted on the structural layer to form a tile layer thereover and arranged to provide air flow passages between adjacent tiles in air flow communication with the primary vent to vent the air and having a combined venting performance.
- 63. The invention of claim 62, wherein the secondary vent further comprises:a vent frame with one or more vent frame openings in ventilating communication with a primary vent, an exposed pan section forming a segment of a pan channel, and a cap section forming a segment of a cap column, the pan and cap sections being overlapped by tile elements in an upslope row of tile elements and tile elements in a downslope row of tile elements; and a vent cap having an elongated axis parallel to the cap column and extending from the portion of the cap section overlapped by tile elements in the upslope row to form a vent opening in ventilating communication with the one or more vent frame openings.
- 64. The invention of claim 63, wherein the vent frame and the vent cap are formed as an integral structure.
- 65. The invention of claim 63, wherein the vent cap is mounted at an angle to the vent frame.
- 66. The invention of claim 63, further comprising:a permeable surface disposed over each vent frame opening.
- 67. The invention of claim 66, wherein the permeable surface further comprises:wire screen.
- 68. The invention of claim 63, wherein each vent frame opening further comprises:one or more flanges to prevent moisture incursion.
- 69. The invention of claim 63, wherein each vent frame opening further comprises:one or more baffles to prevent moisture incursion.
- 70. The invention of claim 63, wherein each vent frame opening further comprises:one or more ridges to prevent moisture incursion.
- 71. The invention of claim 63, further comprising:a water repellant layer secured to the structural layer upper surface.
- 72. A method for ventilating a roof, comprising the steps of:providing a roof structural layer through which air is to be ventilated; selecting a primary vent having a first venting performance; mounting the primary vent in the structural layer to provide an air flow passage therethrough; selecting a plurality of tiles; arranging the tiles on the structural layer to provide air flow passages between adjacent tiles in air flow communication with the primary vent; and mounting the tiles on the structural layer to form a tile layer thereover having a combined second venting performance.
- 73. The method of claim 72, wherein the second venting performance is approximately equal to the first venting performance.
- 74. The method of claim 72, comprising the further steps of:selecting a secondary vent having an air passage therethrough with a third venting performance smaller than the first venting performance; and mounting the secondary vent in the tile layer to form an outer roof layer therewith in air flow communication with the primary vent to provide a venting air flow passage having a combined fourth venting performance approximately equal to the first venting performance for venting the air.
- 75. The method of claim 74, wherein the step of selecting a secondary vent includes selecting a secondary vent that comprises:a vent frame with one or more vent frame openings in ventilating communication with a primary vent, an exposed pan section forming a segment of a pan channel, and a cap section forming a segment of a cap column, the pan and cap sections being overlapped by tile elements in an upslope row of tile elements and tile elements in a downslope row of tile elements; and a vent cap having an elongated axis parallel to the cap column and extending from the portion of the cap section overlapped by tile elements in the upslope row to form a vent opening in ventilating communication with the one or more vent frame openings.
- 76. The method of claim 75, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein the vent frame and the vent cap are formed as an integral structure.
- 77. The method of claim 75, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein the vent cap is mounted at an angle to the vent frame.
- 78. The method of claim 75, wherein the step of selecting a secondary vent includes selecting a secondary vent further comprising:a permeable surface disposed over each vent frame opening.
- 79. The method of claim 78, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein the permeable surface further comprises:wire screen.
- 80. The method of claim 75, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein each vent frame opening further comprises:one or more flanges to prevent moisture incursion.
- 81. The method of claim 75, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein each vent frame opening further comprises:one or more baffles to prevent moisture incursion.
- 82. The method of claim 75, wherein the step of selecting a secondary vent includes selecting a secondary vent wherein each vent frame opening further comprises:one or more ridges to prevent moisture incursion.
- 83. The method of claim 75, comprising the further step of:securing a water repellant layer to the structural layer upper surface.
- 84. A ventilated roof, comprising:a first roofing layer having a primary vent through which air from an attic is to be ventilated; and a second roofing layer constructed from a plurality of similar roofing tile elements disposed over the first roofing layer and having an effective third vent in air flow communication with the primary vent to vent said attic, said effective third vent combining air flow passages between the tile elements; and a secondary vent disposed in the second roofing layer and including an airflow passage therethrough so that the effective third vent combines the air flow passages between the tile elements with the air flow passage through the secondary vent.
- 85. The invention of claim 84, wherein the secondary vent further comprises:a vent frame with one or more vent frame openings in ventilating communication with a primary vent, an exposed pan section forming a segment of a pan channel, and a cap section forming a segment of a cap column, the pan and cap sections being overlapped by tile elements in an upslope row of tile elements and tile elements in a downslope row of tile elements; and a vent cap having an elongated axis parallel to the cap column and extending from the portion of the cap section overlapped by tile elements in the upslope row to form a vent opening in ventilating communication with the one or more vent frame openings.
- 86. The invention of claim 85, wherein the vent frame and the vent cap are formed as an integral structure.
- 87. The invention of claim 85, wherein the vent cap is mounted at an angle to the vent frame.
- 88. The invention of claim 85, further comprising:a permeable surface disposed over each vent frame opening.
- 89. The invention of claim 88, wherein the permeable surface further comprises:wire screen.
- 90. The invention of claim 85, wherein each vent frame opening further comprises:one or more elements selected from the group of elements consisting of flanges, baffles, and ridges, to prevent moisture incursion.
- 91. A method for ventilating a roof, comprising the steps of:selecting a first roofing layer having a primary vent through which air from an attic is to be ventilated; selecting a plurality of similar roofing tile elements; and disposing the tile elements over the first roofing layer to form a second roofing layer having an effective third vent in air flow communication with the primary vent to vent said attic, said effective third vent combining air flow passages between the tile elements; selecting a secondary vent with an airflow passage therethrough; and disposing the secondary vent in the second roofing layer so that the effective third vent combines the air flow passages between the tile elements with the air flow passage through the secondary vent.
- 92. The method of claim 91, wherein the step of selecting the secondary vent includes selecting a secondary vent that comprises:a vent frame with one or more vent frame openings in ventilating communication with a primary vent, an exposed pan section forming a segment of a cap column, the pan and cap sections being overlapped by tile elements in an upslope row of tile elements and tile elements in a downslope row of tile elements; and a vent cap having an elongated axis parallel to the cap column and extending from the portion of the cap section overlapped by tile elements in the upslope row to form a vent opening in ventilating communication with the one or more vent frame openings.
- 93. The method of claim 92, wherein the step of selecting the secondary vent includes selecting a secondary vent wherein the vent frame and the vent cap are formed as an integral structure.
- 94. The method of claim 92, wherein the step of selecting the secondary vent includes selecting a secondary vent wherein the vent cap is mounted at an angle to the vent frame.
- 95. The method of claim 92, wherein the step of selecting the secondary vent includes selecting a secondary vent comprising:a permeable surface disposed over each vent frame opening.
- 96. The method of claim 95, wherein the step of selecting the secondary vent includes selecting a secondary vent wherein the permeable surface further comprises:wire screen.
- 97. The method of claim 92, wherein the step of selecting the secondary vent includes selecting a secondary vent wherein each vent frame opening further comprises:one or more elements selected from the group of elements consisting of flanges, baffles, and ridges, to prevent moisture incursion.
RELATED APPLICATIONS
This application is a continuation of copending U.S. patent application Ser. No. 08/960,166 filed Oct. 27, 1997 which is a continuation of U.S. patent application Ser. No. 07/924,738 filed Aug. 4, 1992 abandoned, and provisional application Serial No. 60/133,244 filed May 4, 1999.
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Provisional Applications (1)
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Continuations (2)
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Number |
Date |
Country |
Parent |
08/960166 |
Oct 1999 |
US |
Child |
09/565983 |
|
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