SECONDARY TUBULAR COMPOSITE FILTER SOCK SEAM FILLING DEVICE AND METHOD OF USING SAME AND COMPOSITE FILTER SOCK ASSEMBLY INCORPORATING A SEAM FILLING DEVICE
20200179828 ยท 2020-06-11
Inventors
Cpc classification
B01D24/001
PERFORMING OPERATIONS; TRANSPORTING
E02B3/123
FIXED CONSTRUCTIONS
B01D2201/0423
PERFORMING OPERATIONS; TRANSPORTING
E02B3/125
FIXED CONSTRUCTIONS
E02B3/122
FIXED CONSTRUCTIONS
B01D24/042
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D24/04
PERFORMING OPERATIONS; TRANSPORTING
B01D24/00
PERFORMING OPERATIONS; TRANSPORTING
E02B3/10
FIXED CONSTRUCTIONS
E02B3/12
FIXED CONSTRUCTIONS
Abstract
A Composite Filter Sock Assembly includes a Compost Filter Sock and Secondary Tubular Seam Filling Device configured to be wedged beneath the compost filter sock on an upstream water runoff side of the compost filter sock, whereby the compost filter sock provides a pinning pressure to the Secondary Tubular Seam Filling Device and wherein the compost filter sock has a nominal diameter of 2-12 times a diameter of a tubular element of the Secondary Tubular Seam Filling Device. The Tubular Element may be least partially filled with a swell-able material such as sphagnum peat moss and may include a fastening mechanism on an exterior surface configured to facilitate coupling to a mesh tube of a compost filter sock.
Claims
1. A Composite Filter Sock Assembly comprising a Compost Filter Sock and a Secondary Tubular Seam Filling Device, wherein the Secondary Tubular Seam Filling Device is configured to be wedged beneath the compost filter sock on an upstream water runoff side of the compost filter sock, whereby the compost filter sock provides a pinning pressure to the Secondary Tubular Seam Filling Device.
2. The Composite Filter Sock Assembly according to claim 1 wherein the compost filter sock has a nominal diameter of 2-12 times a nominal diameter of a tubular element of the Secondary Tubular Seam Filling Device.
3. The Composite Filter Sock Assembly according to claim 2 wherein the compost filter sock has a nominal diameter of 12-36.
4. The Composite Filter Sock Assembly according to claim 3 wherein the Tubular Element is at least partially filled with a swellable material.
5. The Composite Filter Sock assembly according to claim 3 wherein the Tubular Element is at least partially filled with sphagnum peat moss.
6. The Composite Filter Sock Assembly according to claim 3 wherein the Tubular Element is at least partially filled with a water treating additive.
7. The Composite Filter Sock Assembly according to claim 3 wherein the Tubular Element is a degradable mesh material having a nominal diameter of 4-5 and having a length of at least 100.
8. The Composite Filter Sock Assembly according to claim 3 wherein the Tubular Element includes fastening mechanism on an exterior surface configured to facilitate coupling to a mesh tube of a compost filter sock.
9. A Secondary Tubular Seam Filling Device comprising a Tubular Element with a nominal diameter of 3-6 and having a length of at least 50 supported, and wherein the Tubular Element is supported on a pallet and wherein the Tubular Element is at least partially filled with a swellable material.
10. The Secondary Tubular Seam Filling Device according to claim 9 wherein the Tubular Element is at least partially filled with sphagnum peat moss.
11. The Secondary Tubular Seam Filling Device according to claim 9 wherein the Tubular Element is at least partially filled with a water treating additive.
12. The Secondary Tubular Seam Filling Device according to claim 9 wherein the Tubular Element is a degradable mesh material having a 4-5 nominal diameter having a length of at least 100.
13. The Secondary Tubular Seam Filling Device according to claim 9 wherein the Tubular Element includes fastening mechanism on an exterior surface configured to facilitate coupling to a mesh tube of a compost filter sock.
14. A method of forming a Composite Filter Sock Assembly comprising the steps of installing a Compost Filter Sock on ground surface; providing Secondary Tubular Seam Filling Device; and wedging the Secondary Tubular Seam Filling Device beneath the compost filter sock on an upstream water runoff side of the compost filter sock, whereby the compost filter sock provides a pinning pressure to the Secondary Tubular Seam Filling Device.
15. The method of forming a Composite Filter Sock Assembly according to claim 14 wherein a Tubular Element of the Secondary Tubular Seam Filling Device is at least partially filled with a swellable material.
16. The method of forming a Composite Filter Sock Assembly according to claim 15 wherein a Tubular Element of the Secondary Tubular Seam Filling Device is at least partially filled with sphagnum peat moss.
17. The method of forming a Composite Filter Sock Assembly according to claim 14 wherein the compost filter sock has a nominal diameter of 2-12 times a diameter of a tubular element of the Secondary Tubular Seam Filling Device.
18. The method of forming a Composite Filter Sock Assembly according to claim 14 wherein the Tubular Element is a degradable mesh material having a 4-5 Diameter having a length of at least 100.
19. The method of forming a Composite Filter Sock Assembly according to claim 14 wherein the compost filter sock has the netting sleeve filled with filler material, and wherein the filler material includes a biodegradable filling material including at least one of i) ground or chipped wood based material from land clearing, yard waste, pallets and clean wood debris or clean wood scraps; ii) biodegradable fiberous filling material including straw, grasses, pine straw, corn stalks, natural fibers, weeds and combinations thereof; and iii) aggregate in the form of medium grained particulate material typically used in construction, including sand, gravel, crushed stone, slag, recycled concrete, geosynthetic aggregates, clay, pumice, perlite, vermiculite and combinations thereof.
20. The method of forming a Composite Filter Sock Assembly according to claim 14 wherein the Secondary Tubular Seam Filling Device has the netting sleeve filled with filler material.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0019]
[0020]
[0021]
[0022]
[0023]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0024] The present invention relates to a composite filter sock assembly 10 including a compost filter sock 20 and secondary tubular seam filling device 30 configured to be wedged beneath the compost filter sock, whereby the compost filter sock 20 provides a pinning force 24 to the secondary tubular seam filling device 30 as shown in detail in
[0025] The compost filer sock 20 can be any conventional commercially available compost filter sock. The compost filter sock 20 includes a netting sleeve material filled with filler.
[0026] The netting material of the compost filter sock 20, also called mesh tube, and is available from the applicant under the DIAMOND SOCK brand. The netting sleeve material can come in any conventional size between about 12 and 36, most typically circular cross sections of 12, 18, 24 and 36 being the most common. Compost filter socks are formed less than 12 but the smaller sizes are not typically used in applications requiring seam filling. Thus the compost filter sock 20 has a nominal diameter of 12-36.
[0027] The mesh opening size of the netting material of the compost filter sock 20 can be of a variety of conventional sizes, of typically -, and preferably -, provided that the mesh openings are small enough to maintain the filler within the constructed filter sock 20 and large enough to allow runoff water to flow there through easily. The mesh opening size for the netting material of the netting material of the compost filter sock 20 is significant because if the openings are too small, the compost filter sock 20 blinds (the openings become clogged or blocked); and if the openings are too big, the filler washes or falls out of the netting of the sock 20. The openings may be formed as a - inch square, - hex, or - round. An elongated triangle for openings that are about long, about 3/16 wide at the fat end tapering to about at the narrow end are quite effective openings for filter netting for the compost filter sock 20. For precision it is noted that for round openings the linear measurement given is normally of the diameter, or largest diameter for an oval. Similarly the linear measurement is generally the diameter for hexagon shaped openings and anything higher order than a rectangle (octagon, heptagon, etc). For a rectangle or a triangle shaped opening the linear measurement is typically associated with a major or longest side.
[0028] The netting material is preferably formed of polyester or polypropylene or combinations thereof. Polyester and polypropylene netting materials are easily scalable and still allow the compost filter netting to satisfy the requirements of compost filter netting set by every state requirement. For example, the requirements of compost filter netting set by the Pennsylvania Department of Environmental Protection, as of 2015, includes minimum requirements of 5 mil HDPE (high density polyethylene) netting to be photodegradable, to have 8-32 diameters, minimum mesh openings of , minimum tensile strength of 26 PSI, exhibit Ultraviolet stability of at least 23% original strength at 1000 hours (ASTM g-155 test), and have a minimum functional longevity of at least nine months.
[0029] The compost filter sock 20 has the netting sleeve filled with filler material, generally compostable material. The filler material may include a biodegradable filling material may include ground or chipped wood based material from land clearing, yard waste, pallets and clean wood debris or clean wood scraps, for example, a common biodegradable filling material is wood chipped to between and 2 in particle size. The filler material may include a biodegradable fiberous filling material such as straw (defined broadly herein as the dried stalk of a plant, including grain straws such as wheat straw, barley straw, oat straw, and rye straw), grasses (including prairie grasses), pine straw (AKA pine needles), corn stalks, natural fibers (such as flax, hemp, sisal, jute, kenaf, bamboo, coir, catgut, wool, alpaca hair, mohair, fique and rattan) and weeds and combinations thereof. The filler material can further include some amount of aggregate, generally added for weight, wherein aggregate typically refers to medium grained particulate material typically used in construction, including sand, gravel, crushed stone, slag, recycled concrete, geosynthetic aggregates, clay, pumice, perlite, vermiculite and combinations thereof.
[0030] The composite filter sock 20 is typically filled with a blower or an auger. For example a sleeve of netting material is placed on the outlet tube of the conveying auger or blower and a leading end of the netting material is pulled off of the outlet tube and sealed at by a tying mechanism or closing mechanism. Simply knotting the end is typically sufficient for forming the seal or closure, but bands, clips, fastener may be used as well. When a sufficient length of netting material has been filled with the filler material, then the proximal end will be sealed, generally in the same manner as the distal end. The sleeve of netting material may be cut so that multiple filtration socks 20 may be formed from one sleeve of netting material.
[0031] The secondary tubular seam filling device 30 includes a tubular element which may include a tubular element formed similar to the netting material of the composite filter sock 20. The Tubular Element is preferably formed as a degradable, photodegradable or biodegradable (such as with an oxi-degradable additive) mesh material having a 3-6 nominal diameter, preferably a 4-5 nominal diameter.
[0032] The Tubular Element of the secondary tubular seam filling device 30 may be filled with the material that fills the compost filter sock 12, however preferably the tubular element of the secondary tubular seam filling device 30 dry material for ease of shipping, such as at least partially filled with a swell-able material (meaning a material that swells when in contact with water) such as sphagnum peat moss.
[0033] The secondary tubular seam filling device 30 is not intended to form the primary filtering mechanism for the assembly 10 and thus there greater flexibility on the filling material for the secondary tubular seam filling device 30 than for the compost filter sock 20. For example the Tubular Element may be at least partially filled with a water treating additive.
[0034] The Composite Filter Sock Assembly 10 according to the invention may provide wherein the Tubular Element of the secondary tubular seam filling device 30 is a degradable mesh material, typically photodegradable or biodegradable, having a 3-6 diameter, preferably 4-5 Diameter Tubular Element having a length of at least 50, preferably at least 100 and is provided as a pallet product on a pallet 34 for easy shipping.
[0035] The Composite Filter Sock Assembly 10 according to invention provides that the compost filter sock 20 has a nominal diameter of 2-12 times a diameter of a tubular element of the Secondary Tubular Seam Filling Device 30, wherein the compost filter sock 10 has a nominal diameter of 12-36 and wherein the Tubular Element of the Secondary Tubular Seam Filling Device 30 is a degradable mesh material having a 3-6 diameter, preferably a 4-5 Diameter.
[0036] The Composite Filter Sock Assembly 10 according to invention wherein the Tubular Element of secondary Tubular Seam Filling Device 30 includes fastening mechanism such as velcro or the like on an exterior surface configured to facilitate coupling to a mesh tube of the Tubular Seam Filling Device 30 of a compost filter sock 20.
[0037] The method of installation of a Composite Filter Sock Assembly 10 comprises the steps of first installing a Compost Filter Sock 10 on the ground 12 with stakes 22 through the sock 10 in a conventional fashion. Additional stakes 22 may be provided as back up stakes opposite the Runoff Water 14 side of the assembly 10 and adjacent the sock 10 on the filtered water 16 side of the assembly 10.
[0038] The next steps of the installation method of the assembly 10 is providing a Secondary Tubular Seam Filling Device 20 and wedging the Secondary Tubular Seam Filling Device 20 beneath the compost filter sock 10 through application of a wedging force 32 against the device 20. Wedging with mean, within this application, that a portion of the device is engaged directly with the sock 20 below the midline of the sock 20 and whereby the compost filter sock 20 provides a pinning pressure 24 to the Secondary Tubular Seam Filling Device 30. The pinning pressure increases as the sock 20 settles and if the Secondary Tubular Seam Filling Device 30 is at least partially filled with a swell-able material, such as sphagnum peat moss. In other words the swelling of the material filling the tubular element of the secondary tubular seam filling device will enhance the pinning force that acts to hold the device 30 in position.
[0039] The assembly 10 is much more easily installed than a 12-36 conventional sock with traditional seam filling. Further the design tends to keep the device 30 with the sock 20, and if there is a separation between the sock 20 and the device 30, there is a rapid resealing operation that can consist of the operator merely kicking the device 30 back in place. Any resealing that is required is easily accomplished during the visual inspection of the assembly 10, such as is common after significant rain events.
[0040] While the invention has been shown in several particular embodiments it should be clear that various modifications may be made to the present invention without departing from the spirit and scope thereof. The scope of the present invention is defined by the appended claims and equivalents thereto.