Submerged clarifier launder
09919244 ยท 2018-03-20
Assignee
Inventors
- Tor Heimdal (Salt Lake City, UT, US)
- John Vorwaller (Salt Lake City, UT, US)
- Hugh Ryan Clark (Lehi, UT, US)
- Todd Kline (Salt Lake City, UT, US)
- Ralph Petrone (South Jordan, UT, US)
- Bruce A. Hugo (Sandy, UT, US)
- Roger Peters (Salt Lake City, UT, US)
- Tyson Beaman (Taylorsville, UT, US)
Cpc classification
Y02W10/37
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B01D21/0003
PERFORMING OPERATIONS; TRANSPORTING
B01D21/2444
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A clarifier in a wastewater treatment plant is provided with a submerged launder for effluent, the launder preferably having an integral density current baffle and scum baffle. In one embodiment an existing launder is modified, with its vertical leg replaced with a sloped plate defining launder conduit triangular in cross section, and with a sloping portion of the plate forming a density current baffle. Openings in the sloped plate permit entry of effluent liquid, and the liquid level in a clarifier is controlled without an overflow weir plate. In another form submerged pipe with entry holes serves as the launder, with support brackets integral with a density current baffle. A third form of the launder is a box formed beneath the shelf of an existing internal launder in the clarifier, again with a density current baffle extending down from the box. In another version an existing launder is covered and sealed, and holes are drilled through the launder wall to admit effluent. A submerged launder avoids problems of algae buildup and the need for algae sweeps or frequent cleaning of the launder.
Claims
1. In a wastewater treatment clarifier having an effluent launder for withdrawal of effluent from the clarifier, the improvement comprising: the clarifier having a peripheral clarifier wall, and the launder being connected to the inside of the clarifier wall, the launder being at least partly submerged below the liquid level in the clarifier, the launder having inlet orifices submerged below the liquid level of the clarifier, and the submerged launder comprising an inwardly/downwardly obliquely angled plate connected to the internal side of the clarifier wall as an upper side of the launder, a shelf connected to the clarifier wall at a level below the connection of the obliquely angled plate to the wall to form a bottom of the launder, the obliquely angled plate being connected to an inward side of the shelf, at a level such that the obliquely angled plate extends beyond the shelf to form a density current baffle for the clarifier, and the obliquely angled plate having said inlet orifices to admit effluent water from the clarifier.
2. The improvement described in claim 1, wherein the submerged effluent launder is formed by modification of an existing internal launder of the clarifier, with a vertical leg of the existing launder removed and said shelf comprising a remaining horizontal shelf of the existing launder.
3. The improvement described in claim 2, wherein a density current baffle is formed as an extension of and integral to the angled launder plate, extending over and beyond the inward edge of the horizontal shelf.
4. The improvement described in claim 1, further including vent holes near an upper end of the obliquely angled plate.
5. The improvement described in claim 1, further including an integral vertical plate extending up from the upper end of the obliquely angled plate, the vertical plate being secured to the clarifier wall, and the vertical plate extending up sufficiently to form a scum skimming surface above the liquid level in the clarifier.
6. The improvement described in claim 1, wherein the inlet orifices are just above the bottom of the launder, whereby the submerged orifices minimize sun exposure to prevent algae growth in the launder.
7. The improvement described in claim 1, wherein the obliquely angled plate is connected to the inward side of the shelf by threaded fasteners occurring at selected spacing, and wherein the inlet orifices are located in the obliquely angled plate above the threaded fasteners so as to provide tool access to the threaded fasteners through the orifices.
8. A method for converting a clarifier of a wastewater treatment system having an interior concrete effluent launder on the clarifier wall, generally L-shaped in cross section with a horizontal shelf and a vertical leg, to a submerged effluent launder, comprising: removing the vertical leg of the launder, throughout the circumference of the clarifier, and attaching an obliquely angled plate onto the clarifier, to extend from an inward edge of the horizontal shelf obliquely up to a connection to the clarifier wall to thereby form a submerged launder triangular in cross section, and including orifices in the angled plate to admit clarifier effluent liquid, the launder being at least mostly submerged in the liquid of the clarifier.
9. The method of claim 8, wherein the obliquely angled plate has an integral vertical plate at its upper end, and including securing the integral vertical plate against the clarifier using bolts, to retain the obliquely angled plate and to provide a smooth surface for scum skimming.
10. The method of claim 8, further including providing a density current baffle as an extension of and integral to the obliquely angled plate, to extend over and beyond the inward edge of the horizontal shelf.
11. In a wastewater treatment clarifier having an effluent launder for withdrawal of effluent from the clarifier, the improvement comprising: the clarifier having a peripheral clarifier wall, and the launder being connected to the inside of the clarifier wall, the launder being at least partly submerged below the liquid level in the clarifier, the launder having inlet orifices submerged below the liquid level of the clarifier, and the submerged launder comprising an inwardly/downwardly obliquely angled plate connected to the internal side of the clarifier wall as an upper side of the launder, a shelf connected to the clarifier wall at a level below the connection of the obliquely angled plate to the wall to form a bottom of the launder, the obliquely angled plate being connected to an inward side of the shelf, and the obliquely angled plate having said inlet orifices to admit effluent water from the clarifier.
12. The improvement described in claim 11, wherein the obliquely angled plate is connected to the inward side of the shelf by threaded fasteners occurring at selected spacing, and wherein the inlet orifices are located in the obliquely angled plate above the threaded fasteners so as to provide for use of a tool on the threaded fasteners through the orifices.
Description
DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF PREFERRED EMBODIMENTS
(8)
(9) The plate 24 preferably comprises an integral plate that includes a downwardly/inwardly sloping density current baffle 30, as shown. Proportions can be different than illustrated in
(10) The plate unit 24 extends around the entire periphery of the clarifier, assembled in sections. It is attached via integral vertical and horizontal plates indicated at 34 and 36, to the wall and shelf of the clarifier, using bolts such as indicated at 38 and 40. Access to the shelf bolt 40 would be difficult or impossible, but effluent holes into the launder are provided through the plate at 42. These can be, for example, two inch diameter holes through the plate, approximately two to three inches above the shelf, spaced at 30 inches from hole to hole. Each shelf bolt 40 is at the same position as the effluent hole 42, so that tool access to the bolt 40 is provided, for securing the brackets 36.
(11) Preferably a vent hole is included near the top of the plate, approximately at the position 44 shown in the drawing, so that rising of the liquid level inside the launder will not be inhibited. In addition, the vent hole(s) will assist in draining the launder when clarifier is taken down for servicing.
(12) As indicated in
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(15) A series of liquid entry orifices 68 in the unit 60 are positioned just below the existing shelf 16 or at a level as desired in the launder unit. These orifices also serve as vents to facilitate draining when needed for service.
(16)
(17) The conduit or pipe 70 has orifices positioned as desired, such as at locations indicated at 74 (which can be about 2 inch diameter) in
(18) This embodiment includes a density current baffle 76, similar to those discussed above, but the baffle 76 is a part of a mounting structure 78 for the pipe 70. This structure 78 preferably is continuous from the clarifier wall 80 to the lower end of the baffle 76, for function as a density current baffle, which should not allow throughflow except that vents can be included at the top of the density current baffle (near the wall 80) to prevent gas buildup. This structure is secured to the clarifier wall by bolts as indicated at 81, and includes or supports a pipe saddle 82 that firmly retains the pipe 70 to the mounting structure 78. One or more vent holes preferably are located at top of the pipe so that a rising level of liquid inside the launder will not be inhibited, and the vent will facilitate draining the launder pipe when taken down for service.
(19) In this form of submerged launder, a gap may be provided between the pipe 70 and the angled platform structure 78, to allow the settling solids to pass through and slide down the angled platform 78.
(20)
(21) In this form of submerged launder of the invention a top plate 86 is affixed at the top of the existing launder as shown, in sealed relationship. Typically neoprene material is engaged between the cover 86 and the existing concrete surfaces (and the same or similar sealing material can be used for sealing purposes in the earlier-described embodiments). The plate preferably is angled as shown, declining inwardly so as not to trap rain, etc. The top plate 86 forms a closed conduit, i.e. a fully or partly submerged effluent launder, preferably positioned about at or close to the liquid surface 22 in the clarifier. At least part of the launder must be submerged. As shown, the added plate 86 can have vertical plates, preferably integral, at both inner and outer sides. At the outer side is a continuous plate or flange 88 that engages with the tank wall 12, for bolting at intervals to the wall, and at the inner side is a depending plate 90 that laps over and against the existing concrete launder leg 59. This vertical plate 90 provides a closure, provides for affixing the top plate to the leg via bolts 91, and also acts an integral scum surface, i.e. a smooth surface for the skimming mechanism to ride against in order to efficiently remove scum from the surface. The preferred clarifier liquid level is indicated at 22, and the plate 90 preferably extends about four inches above the existing liquid level.
(22) Effluent liquid enters the launder 85 via openings 92 through the vertical leg 59 as shown. These orifices can be about 2 inches in diameter, for example, formed by drilling, and spaced apart at appropriate intervals such as every 2 to 3 feet, depending in part on orifice size. The depth location of the orifices 92 can vary, and the orifices could be through the bottom 16, but that is not preferred.
(23) The plate or flange 88 at the upper/outer end of the sloped top cover 86 provides for mounting that side of the cover plate 86 to the clarifier wall 12 (with bolts 94). A vent orifice 96 can be formed (at intervals) through the plate 86 near the upper side, the orifice oriented at an angle (up and to right in the drawing) so that any sunlight will only enter high in the launder. A downwardly extending vertical plate 98 can be included, extending down against the wall 12, for any sunlight contact. The plate if a smooth surface of FRP discourages algae growth.
(24) In this embodiment the launder 85 will typically be partially submerged in the clarifier, not fully. The liquid level in the clarifier (and in the launder) can be about as shown so that the surface 90 acts as a scum cleaning surface. In all forms of the invention the launder is fully or partially submerged. The forms shown in
(25)
(26) Note that the
(27) The several embodiments of submerged clarifier launders described above eliminated algae problems, the cost of cleaning or algae sweeps, and reduce capital expense in forming a conventional clarifier launder in a newly-constructed clarifier.
(28) The above described preferred embodiments are intended to illustrate the principles of the invention, but not to limit its scope. Other embodiments and variations to these preferred embodiments will be apparent to those skilled in the art and may be made without departing from the spirit and scope of the invention as defined in the following claims.