Tunnel Connector for an In-Ground Storm Shelter
20170275907 ยท 2017-09-28
Inventors
- Michael L. Brooks (Salem, IL, US)
- Scott Ingoldsby (Benton, IL, US)
- Robert Ingoldsby (Christopher, IL, US)
Cpc classification
E02D29/045
FIXED CONSTRUCTIONS
E04H9/12
FIXED CONSTRUCTIONS
International classification
E04H9/14
FIXED CONSTRUCTIONS
E02D29/045
FIXED CONSTRUCTIONS
E04H9/16
FIXED CONSTRUCTIONS
Abstract
A tunnel connector for an in-ground storm shelter which allows inhabitants to enter the in-ground storm shelter from a trailer house without being exposed to external environmental factors. The tunnel connector includes a U-shaped enclosure wall, a staircase, a first lateral wall, and a second lateral wall. The first lateral wall and the second lateral wall are connected perpendicular to the staircase across each other to provide lateral protection. The U-shaped enclosure wall includes a first sidewall, a second sidewall, and an interconnecting sidewall. The interconnecting sidewall is terminally connected in between the first sidewall and the second sidewall. The first lateral wall is adjacently connected to the first sidewall, opposite the interconnecting sidewall. Similarly, the second lateral wall is adjacently connected to the second sidewall, opposite the interconnecting sidewall. The tunnel connector is installed in between a floorboard of the trailer house and the in-ground storm shelter.
Claims
1. A tunnel connector for an in-ground storm shelter comprises: a U-shaped enclosure wall; a staircase; a first lateral wall; a second lateral wall; the U-shaped enclosure wall comprises a first sidewall, a second sidewall, and an interconnecting sidewall; the first lateral wall being connected adjacent and perpendicular to the staircase; the second lateral wall being connected adjacent and perpendicular to the staircase, opposite the first lateral wall; the interconnecting sidewall being terminally connected in between the first sidewall and the second sidewall; the first lateral wall being adjacently connected to the first sidewall, opposite the interconnecting sidewall; the second lateral wall being adjacently connected to the second sidewall, opposite the interconnecting sidewall; and a bottom edge of the first lateral wall, a bottom edge of the second lateral wall, and a bottom edge of the U-shaped enclosure wall being positioned coplanar with each other.
2. The tunnel connector for an in-ground storm shelter as claimed in claim 1 comprises: a first fastening mechanism; a second fastening mechanism; the first fastening mechanism being mechanically integrated in between the first lateral wall and the first sidewall; the second fastening mechanism being mechanically integrated in between the second lateral wall and the second sidewall; and the first lateral wall, the second lateral wall, and the U-shaped enclosure wall being hermetically sealed by the first fastening mechanism and the second fastening mechanism.
3. The tunnel connector for an in-ground storm shelter as claimed in claim 2, wherein the first fastening mechanism and the second fastening mechanism are each an adhesive sealant.
4. The tunnel connector for an in-ground storm shelter as claimed in claim 1 comprises: a bottom plane being formed by the bottom edge of the first lateral wall and the bottom edge of the second lateral wall; and an incline of the staircase being at an acute angle with the bottom plane.
5. The tunnel connector for an in-ground storm shelter as claimed in claim 4, wherein the acute angle is 45 degrees.
6. The tunnel connector for an in-ground storm shelter as claimed in claim 1 comprises: an at least one guide rail; the guide rail being positioned in between the first lateral wall and the second lateral wall; the guide rail being positioned parallel and offset from an incline of the staircase; and the guide rail being mounted to the staircase.
7. The tunnel connector for an in-ground storm shelter as claimed in claim 1, wherein the first lateral wall, the second lateral wall, and the U-shaped enclosure wall are each composed of fiberglass.
8. A system for using a tunnel connector for an in-ground storm shelter as claimed in claim 1 comprises: an in-ground storm shelter; a horizontal door of the in-ground storm shelter; a trailer house; a floorboard of the trailer house; an entrance hole of the trailer house; the in-ground storm shelter being positioned offset from the floorboard; the entrance hole normally traversing through the floorboard, adjacent to the horizontal door; the first lateral wall, the second lateral wall, the staircase, and the U-shaped enclosure wall being positioned in between the floorboard and the in-ground storm shelter; a first hole being delineated by a top edge of the first lateral wall, a top edge of the second lateral wall, a top edge of the U-shaped enclosure wall, and a highest step of the staircase; the first hole being positioned coincident with the entrance hole; a second hole being delineated by the bottom edge of the first lateral wall, the bottom edge of the second lateral wall, the bottom edge of the U-shaped enclosure wall, and a lowest step of the staircase; and the horizontal door being positioned coincident with the second hole, adjacent to the lowest step.
9. The system for using a tunnel connector for an in-ground storm shelter as claimed in claim 8 comprises: a top mating flange; the top mating flange being laterally connected to the top edge of the U-shaped enclosure wall, the top edge of the first lateral wall, and the top edge of the second lateral wall; the top mating flange being positioned parallel to the floorboard; and the top mating flange being attached adjacent to the floorboard.
10. The system for using a tunnel connector for an in-ground storm shelter as claimed in claim 8 comprises: a bottom mating flange; the bottom mating flange being laterally connected to the bottom edge of the U-shaped enclosure wall, the bottom edge of the first lateral wall, and the bottom edge of the second lateral wall; the bottom mating flange being positioned parallel to the horizontal door; and the bottom mating flange being mounted adjacent to the in-ground storm shelter, about the horizontal door.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAIL DESCRIPTIONS OF THE INVENTION
[0012] All illustrations of the drawings are for the purpose of describing selected versions of the present invention and are not intended to limit the scope of the present invention.
[0013] The present invention generally relates to in-ground shelters for trailers and other similar manufactured homes. More specifically, the present invention is a tunnel connector for an in-ground storm shelter 21 which provides inhabitants with quick and safe access to the interior space of the in-ground storm shelter 21 without external environmental exposure. The present invention is designed to be utilized with a trailer house 23 that is installed on a multitude of footings with the in-ground storm shelter 21 being buried directly underneath the trailer house 23. As a result, the in-ground storm shelter 21 is positioned offset from a floorboard 24 of the trailer house 23. Traditionally, when the inhabitants of the trailer house 23 are attempting to enter the in-ground storm shelter 21 through an entrance hole 29 in the floorboard 24, the inhabitants are exposed to environmental factors while passing through the offset distance from the floorboard 24 to the in-ground storm shelter 21. The present invention protects the inhabitants while they are transitioning from the trailer house 23 to the in-ground storm shelter 21. More specifically, the present invention is designed to be installed underneath the floorboard 24 of the trailer house 23, connecting the entrance hole 29 of the trailer house 23 and the in-ground storm shelter 21. The entrance hole 29 is preferably a rectangular shaped hole that traverses through the floorboard 24, adjacent to the in-ground storm shelter 21; more specifically, the entrance hole 29 is positioned adjacent to a horizontal door 22 of the in-ground storm shelter 21.
[0014] Referring to
[0015] The first lateral wall 11, the second lateral wall 14, and the U-shaped enclosure wall 1 are designed with an equal vertical height in order to ensure adequate coverage for the inhabitants and for the present invention to fit flush under the trailer house 23. Additionally, a bottom edge 12 of the first lateral wall 11, a bottom edge 15 of the second lateral wall 14, and a bottom edge 5 of the U-shaped enclosure wall 1 are positioned coplanar with each other. This allows the present invention to be installed flat on the ground. Prior to installation, the present invention is provided in two separate halves. The first half comprises the staircase 7 with the first lateral wall 11 and the second lateral wall 14. The second half comprises the U-shaped enclosure wall 1.
[0016] The first half and the second half of the present invention are connected to each other by a first fastening mechanism 18 and a second fastening mechanism 19 as seen in
[0017] Referring to
[0018] Referring to
[0019] In one embodiment, the present invention further comprises an at least one guide rail 20 and a plurality of anti-slip strips which provide the inhabitants with support while descending through the present invention. The guide rail 20 is an elongated tubular structure that provides the inhabitants with a structure to grasp and hold on to. The guide rail 20 is positioned in between the first lateral wall 11 and the second lateral wall 14. Additionally, the guide rail 20 is positioned parallel and offset from the incline 8 of the staircase 7 to provide support for the inhabitants along the length of the staircase 7. The guide rail 20 is mounted to the staircase 7 as seen in
[0020] Referring to