Berm and filter system
10995483 ยท 2021-05-04
Inventors
Cpc classification
E03F5/0404
FIXED CONSTRUCTIONS
International classification
Abstract
A sediment control device includes an under-seal gasket, a threshold member, a filter member, and a berm extending upwards from the top surface of the under-seal gasket. The under-seal gasket includes a first central opening, and the filter member includes a second central opening smaller than the first central opening. The threshold member and the filter member are attached directly to the bottom surface of the under-seal gasket, but are not attached to each other. The threshold member extends across the first and second central openings and includes a plurality of apertures. The berm includes an elongated cylindrical foam member that surrounds a perimeter of the first central opening, and may in some examples consist of a separate berm component comprising one or more lengths of elongated cylindrical foam members separately encased in berm sleeves, and arranged to surround the perimeter of the first central opening.
Claims
1. A sediment control device, comprising: a) an under-seal gasket comprising a top surface, a bottom surface, a first length, and a first width; b) a first central opening in the under-seal gasket, the first opening having a second length and a second width; c) a threshold member having a top surface, a bottom surface, a third length, and a third width, wherein i) the threshold member is attached directly to the under-seal gasket, ii) the threshold member extends across the first central opening, and iii) the third length and width are, respectively, greater than the second length and width; d) a filter member having a top surface, a bottom surface, a fourth length, and a fourth width, wherein i) the top surface of the filter member is attached directly to the bottom surface of the under-seal gasket, and ii) the fourth length and width are, respectively, greater than the second length and width; e) a second central opening in the filter member, the second opening having a fifth length and a fifth width, wherein i) the fifth length is smaller than the first, second, third, and fourth lengths, and ii) the fifth width is smaller than the first, second, third, and fourth widths; and f) a separate berm component fastened to a top surface of the sediment control device, extending upwards from the top surface of the sediment control device, wherein the separate berm component comprises at least one elongated cylindrical foam member that surrounds a perimeter of the first central opening.
2. The sediment control device of claim 1, wherein the elongated cylindrical foam member is covered with a berm sleeve that is fastened directly to the top surface of the sediment control device.
3. The sediment control device of claim 2, wherein the threshold member comprises outer edges surrounding a central portion that covers the first central opening, and wherein the outer edges of the threshold member are sandwiched between the berm sleeve and the under-seal gasket.
4. The sediment control device of claim 3, wherein the bottom surface of the threshold member is attached directly to the top surface of the under-seal gasket.
5. The sediment control device of claim 1, wherein the under-seal gasket, first central opening, threshold member, filter member, and second central opening are rectangular.
6. The sediment control device of claim 1, wherein the under-seal gasket, first central opening, threshold member, filter member, and second central opening are square.
7. The sediment control device of claim 1, wherein the threshold member comprises a polymeric sheet having apertures.
8. The sediment control device of claim 7, wherein the threshold member is perforated high density polyethylene.
9. The sediment control device of claim 1, wherein the threshold member is a single polymeric sheet comprising a plurality of apertures.
10. The sediment control device of claim 1, wherein the threshold member is a non-laminar polymeric sheet.
11. The sediment control device of claim 1, wherein the top surface of the threshold member is attached directly to the bottom surface of the under-seal gasket.
12. The sediment control device of claim 1, further comprising an additional flap of apertured polymeric material configured for being folded upwards relative to the under-seal gasket and for covering an opening in a curb adjacent to a drain over which the sediment control device is positioned.
13. The sediment control device of claim 1 in which the separate berm component comprises a plurality of substantially straight lengths of elongated cylindrical foam members separately encased in berm sleeves, and arranged to surround the perimeter of the first central opening.
14. A sediment control device, comprising: a) an under-seal gasket comprising a top surface, a bottom surface, and a first central opening; b) a threshold member attached directly to the under-seal gasket and extending across the first central opening, the threshold member having a plurality of apertures; c) a filter member attached directly to the bottom surface of the under-seal gasket and having a second central opening smaller than the first central opening; and d) a separate berm component fastened to and extending upwards from the top surface of the sediment control device, wherein the separate berm component comprises one or more elongated cylindrical foam members that surrounds a perimeter of the first central opening.
15. The sediment control device of claim 14, wherein the cylindrical foam member is enclosed in a berm sleeve, and the berm sleeve is attached directly to the top surface of the under-seal gasket.
16. The sediment control device of claim 15, wherein the threshold member comprises outer edges surrounding a central portion that extends across the first central opening, and wherein the outer edges of the threshold member are sandwiched between the berm sleeve and the under-seal gasket.
17. The sediment control device of claim 16, wherein the threshold member is attached directly to the top surface of the under-seal gasket.
18. The sediment control device of claim 14, wherein a first portion of an upper surface of the filter member is in direct contact with the bottom surface of the under-seal gasket, and wherein a second portion of the upper surface of the filter member is in direct contact with a bottom surface of the threshold member.
19. The sediment control device of claim 14, wherein the threshold member is attached directly to the bottom surface of the under-seal gasket.
20. The sediment control device of claim 14 in which the separate berm component comprises a plurality of substantially straight lengths of elongated cylindrical foam members separately encased in berm sleeves, and arranged to surround the perimeter of the first central opening.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The foregoing and other aspects of embodiments are described in further detail with reference to the accompanying drawings, wherein like reference numerals refer to like elements and the description for like elements shall be applicable for all described embodiments wherever relevant:
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DETAILED DESCRIPTION
(16) Disclosed herein is a sediment control device that includes a raised, preferably cylindrical, polymeric foam berm around its perimeter. Although the polymeric foam berm is preferably cylindrical, in other embodiments the foam berm may have another shape, such as a rectangle or triangle, in cross-section. The sediment control device further comprises an under-seal gasket, an apertured threshold member, and a filter member. The threshold member and the filter member are attached directly to the under-seal gasket for easy removal and replacement if necessary. Preferably the threshold member and the filter member are not elements of a laminar sheet. The threshold member is a single, non-laminar sheet of polymeric material comprising a plurality of apertures.
(17) Also disclosed herein is a separate sediment berm component comprising an elongated foam member encased within a berm sleeve of geotextile material. Preferably the elongated foam member is a foamed elastomeric material such as polyurethane, polyethylene, natural latex or the like that can withstand repeated compression, such as that due to vehicle traffic or high liquid flow rates, without buckling or collapsing. The geotextile material of the berm sleeve is preferably sewn around the elongated foam member. The separate sediment berm component may be joined to the top side of the under-seal gasket or upper skirt of the filter device in any suitable way, for example and without limitation, by sewing; through the use of berm-retaining loops arranged around the first central opening on the top surface of the under seal gasket; by stapling; or through the use of fasteners such as snap fasteners, buckle fasteners, and/or hook and loop fasteners (e.g., the VELCRO hook and loop fasteners made by the 3M Company). In some examples complementary mating components of such fasteners are joined to and aligned respectively on the outside surface of the separate berm component and the under-seal gasket. In other embodiments the material of the underseal gasket and/or the geotextile material of the separate sediment berm component may be suitable in and of itself for use as a loop fastener, and the hook portion of the fastener may be placed on the other component (berm or gasket, as suitable) for joining directly to the geotextile material. The elongated foam member may have any suitable cross-sectional shape (e.g., triangular, square or rectangular, etc.) but is preferably cylindrical in shape.
(18) This separate sediment berm component may be made and sold as a stand-alone product for use in conjunction with any suitable filter device, or may be a separate part fastened to a sediment filter device.
(19) In one example the sediment control device 100 is described in more detail with reference to
(20) Extending across the central opening 104 in the under-seal gasket 102 is a threshold member 118. The threshold member 118 may be a single, non-laminar sheet of perforated high-density polyethylene (HDPE) having a plurality of apertures 120. In other, less preferred, embodiments the threshold member may comprise an apertured metal sheet or grid of interconnected wires. The sediment control device 100 does not include an outflow member or a laminar sheet of any sort covering the central opening 104. The apertures 120 are sized and shaped to prevent large debris (e.g., large stones, twigs, or the like) from entering the drain while also allowing liquid and sediment to flow therethrough to avoid clogging and runoff. As such, the size of the apertures 120 may be approximately 0.05-0.5 inches, or 0.1-0.2 inches, or inch. The threshold member 118 has a top surface 122, a bottom surface 124, a length 126 (shown in
(21) The sediment control device of this example 100 further includes a filter member 130 having a top surface 132, a bottom surface 134, a length 136, a width 138, and a central opening 140 that is smaller than the central opening 104 in the under-seal gasket 102. The length 136 and width 138 of the filter member 130 are, respectively, smaller than the length 110 and width 112 of the under-seal gasket 102. The length 136 and width 138 of the filter member 130 are, as shown, respectively larger than the length 126 and width 128 of the threshold member 118 and larger than the length 114 and width 116 of the opening 104 in the under-seal gasket 102. In alternative embodiments (discussed below), the length 136 and width 138 of the filter member 130 may be, respectively, smaller than the length 126 and width 128 of the threshold member 118. The length 142 and width 144 of the central opening 140 in the filter member 130 are, respectively, smaller than the length 114 and width 116 of the opening 104 in the under-seal gasket 102. The filter member 130 may be formed of a single, unitary piece of material with the central opening 140 cut out of the material. Alternatively, the filter member 130 may be formed of a plurality of (for example, four) strips of material attached together to surround the central opening 140. Preferably the filter member 130 is a woven filtration geotextile made of high-tenacity, monofilament polypropylene yarns which are woven into a stable network such that they retain their relative position. (e.g., Carthage 15%; apparent pore size 0.425 mm; Carthage Mills, 4243 Hunt Road Cincinnati, Ohio 45242).
(22) Each of the threshold member 118 and the filter member 130 are attached directly to the under-seal gasket 102. Notably, the threshold member 118 and the filter member 130 are not attached to each other. This arrangement allows for easy removal and replacement of the threshold member 118 and the filter member 130.
(23) The sediment control device 100 further includes a berm 150 that comprises a foam insert 152 (in this case, cylindrical in shape) covered by a fabric upper skirt 154. While the foam insert 152 may have any desired diameter, depending upon the desired height of the berm 150, in this embodiment the elongated foam cylinder 152 is very preferably between 1 and 2 inches in diameter. In particular, the foam cylinder 152 may preferably be 1.5 inches in diameter. The foam cylinder 152 is formed of a resilient material (e.g., a foamed elastomeric material such as polyurethane, polyethylene, natural latex or the like) that can withstand repeated compression, such as that due to vehicle traffic or high liquid flow rates, without buckling or collapsing. The cylindrical foam insert 152 is covered and enclosed by the upper skirt 154, which may be formed of a material similar to, or the same as, the material that forms the under-seal gasket 102. For example, the upper skirt 154 may be a non-woven geotextile material, such as the non-woven geotextile materials manufactured by Carthage Mills (e.g., FX-80HS, FX-120HS, or FX-160HS, Carthage Mills, 4243 Hunt Road Cincinnati, Ohio 45242). The upper skirt 154 may be attached directly to the under-seal gasket 102. The upper skirt 154 may be a single, unitary piece having a length and width that are, respectively, smaller than the length 110 and width 112 of the under-seal gasket 102 but larger than the length 114 and width 116 of the opening 104. Alternatively, the upper skirt 154 may include four strips of material 156 that are attached to each other and to the under-seal gasket 102, as depicted in
(24) In one example, shown in
(25) In another example, shown in
(26) In both examples, the filter member 130 is disposed below the under-seal gasket 102, the threshold member 118, and the berm 150. The filter member 130 is attached directly to the under-seal gasket 102. The outer edges of the upper surface 132 of the filter member 130 are in direct contact with the bottom surface 108 of the under-seal gasket 102. The inner edges of the upper surface 132 of the filter member 130 are in direct contact with the threshold member 118 but are not attached to the threshold member 118. As such, the filter member 130 is larger than the threshold member 118. That is, the length 136 and width 138 of the filter member 130 are, respectively, larger than the length 126 and width 128 of the threshold member 118. The filter member 130 is preferably attached to the under-seal gasket 102 by stitching, but it should be readily understood that any other attachment means (such as staples, adhesive, or the like) may be used without departing from the scope of the present invention.
(27) The upper skirt 154 is depicted in
(28) As shown in
(29) The preferred method of affixing the sediment control device 100 to the grate is by attaching strong wire, such as baling or rebar wire, to four corners of the storm drain inlet grate, feed the wire through the sediment control device 100 (e.g., through the apertures 120 in the threshold member 118) and lock the sediment control device 100 into place by twisting the wire a few times and cutting off the excess.
(30) In another example depicted in exploded fashion in
(31) In this example an upper skirt 154 may preferably be attached directly to the under-seal gasket 102; however, in some currently less preferred variations of this example the upper skirt may be absent. The upper skirt 154 may be a single, unitary piece having a length and width that are, respectively, smaller than the length 110 and width 112 of the under-seal gasket 102 but larger than the length 114 and width 116 of the opening 104. Alternatively, the upper skirt 154 may include four strips of material 156 that are attached to each other and to the under-seal gasket 102, as depicted in
(32) Separate berm component 176 comprises a foam insert 152 (in this case, cylindrical in shape) enveloped by a fabric berm sleeve 174. As in other examples, the foam insert 152, circular in this case, may have any desired diameter, depending upon the desired height of the separate berm component 176. In this embodiment the elongated foam cylinder 152 is very preferably between 1 and 2 inches in diameter. In particular, the foam cylinder 152 may preferably be 1.5 inches in diameter. The foam cylinder 152 is formed of a resilient material (e.g., a foamed elastomeric material such as polyurethane, polyethylene, natural latex or the like) that can withstand repeated compression, such as that due to vehicle traffic or high liquid flow rates, without buckling or collapsing. The cylindrical foam insert 152 is covered and enclosed by a tube of material making up the berm sleeve 174. The berm sleeve material may be similar to, or the same as, the material that forms the under-seal gasket 102, and is fastened together by any suitable fastening means; preferably by stitching.
(33) The separate berm component 176 may be a single elongated length of foam 152 wrapped in the berm sleeve 174 which is shaped to extend continuously around part or the entirety of the perimeter of central opening 104. However, in other examples, the separate berm component 176 may comprise a plurality of substantially straight lengths of foam 152 wrapped in the berm sleeve 174 which are directly fastened to the underlying upper skirt 154 or under-seal gasket 102 material. In the example shown in
(34) As shown in cross-section in
(35) Separate berm component 176 comprises a foam insert core 152 encased in berm sleeve 174. Hook and loop fasteners 178 are shown as fasteners for removably joining the separate berm component 176 to the material of the upper skirt 154. In other examples lacking an upper skirt 154, the separate berm component may be fastened directly to the under-seal gasket 102. As indicated above, those of ordinary skill in the art will immediately recognize that alternative fastening methods, such as stapling, stitching, heat-sealing and the like may easily be used instead.
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(40) Although particular embodiments have been shown and described, it is to be understood that the above description is not intended to limit the scope of these embodiments. While embodiments and variations of the many aspects of the invention have been disclosed and described herein, such disclosure is provided for purposes of explanation and illustration only. Thus, various changes and modifications may be made without departing from the scope of the claims. For example, not all of the components described in the embodiments are necessary, and the invention may include any suitable combinations of the described components, and the general shapes and relative sizes of the components of the invention may be modified. Accordingly, embodiments are intended to exemplify alternatives, modifications, and equivalents that may fall within the scope of the claims. The invention, therefore, should not be limited, except to the following claims, and their equivalents.