Filter device having a diverging cleaning duct with internal partitions
10159917 ยท 2018-12-25
Assignee
Inventors
Cpc classification
B01D2201/44
PERFORMING OPERATIONS; TRANSPORTING
B01D29/66
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/313
PERFORMING OPERATIONS; TRANSPORTING
B01D29/23
PERFORMING OPERATIONS; TRANSPORTING
B01D29/902
PERFORMING OPERATIONS; TRANSPORTING
B01D29/114
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D29/66
PERFORMING OPERATIONS; TRANSPORTING
B01D29/23
PERFORMING OPERATIONS; TRANSPORTING
B01D29/11
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A filter device includes a housing with an end part and a side wall and containing an axially arranged array of filter elements, such as ceramic elements. An inlet in the end part supplies fluid to the filter elements and an outlet in the side wall is provided for transporting filtered fluid from the housing, the side wall of the filter device being provided with a cleaning duct for supplying cleaning fluid to the filter elements via the side wall. The cleaning duct 6 includes a distal channel portion 15 having a relatively small diameter D1 and a proximal portion 16 adjacent the side wall having a relatively large diameter D2. A number of partitions 36, 37 extend in the proximal portion from a position at or near the sidewall towards the distal channel portion 15 at an angle () to a center line 20 of the cleaning duct 6.
Claims
1. Filter device (1) comprising a housing (2) with an end part (5) and a cylindrical side wall (7) and containing an axially arranged array of filter elements (3), an inlet (4) for supplying fluid to the filter elements and an outlet (12) for transporting filtered fluid from the housing, the side wall (7) of the filter device being provided with a cleaning duct (6) for supplying cleaning fluid to the filter elements (3) via the side wall (7), the cleaning duct (6) comprising a distal channel portion (15) having a relatively small diameter D1 and a proximal portion (16) adjacent the side wall (7) having a relatively large diameter D2, a number of partitions (21,22,23,24) extending in the proximal portion (16) from a position at or near the sidewall (7) towards the distal channel portion (15) at an angle () to a centre line (20) of the cleaning duct (6).
2. Filter device (1) according to claim 1, wherein the proximal channel portion (16) comprises a peripheral wall that is at an angle () with respect to the centre line (20) of between 10 and 70.
3. Filter device (1) according to claim 1 wherein the angle () is less than 20.
4. Filter device (1) according to claim 1, wherein a cross-section of the cleaning duct (16) near the sidewall (7) is rectangular, the duct having sidewalls (27,28) and transverse walls (25,26), wherein the partitions (21,22,23,24) bridge the distance between the sidewalls (27,28) and/or between the transverse walls (25,26).
5. Filter device (1) according to claim 1, the partitions being flat, plate-shaped elements arranged in a grid-shaped configuration.
6. Filter device (1) according to claim 3, the cross-section of the cleaning duct being of circular shape, the partitions being formed of coaxial conical members (36,37).
7. Filter device (1) according to claim 1, wherein inside the housing a cylindrical distributor element (60) is provided, comprising a perforated wall at a distance from the cylindrical wall (7), an annular flow channel being defined between the distributor element and the wall.
8. Filter device (1) according to claim 7, a distance of the distributor element (60) from the cylindrical wall (7) decreasing when going from a position (A) on the annular wall near the cleaning duct (6) to a position (B) diametrically opposite the cleaning duct.
9. Filter device (1) according to claim 7, the distributor element comprising a perforated annular inner wall (60) having openings (61) distributed along its circumferential surface.
10. Filter device (1) according to claim 2, wherein the proximal channel portion (16) comprises a peripheral wall that is at an angle () with respect to the centre line (20) of between 30 and 60.
11. Filter device (1) according to claim 10, wherein the proximal channel portion (16) comprises a peripheral wall that is at an angle () with respect to the centre line (20) of about 45.
12. Filter device (1) according to claim 1, wherein the angle () is less than 10.
13. Filter device (1) according to claim 12, wherein the angle () is less than 8.
14. Filter device (1) according to claim 2, wherein a cross-section of the cleaning duct (16) near the sidewall (7) is rectangular, the duct having sidewalls (27,28) and transverse walls (25,26), wherein the partitions (21,22,23,24) bridge the distance between the sidewalls (27,28) and/or between the transverse walls (25,26).
15. Filter device (1) according to claim 3, wherein a cross-section of the cleaning duct (16) near the sidewall (7) is rectangular, the duct having sidewalls (27,28) and transverse walls (25,26), wherein the partitions (21,22,23,24) bridge the distance between the sidewalls (27,28) and/or between the transverse walls (25,26).
16. Filter device (1) according to claim 2, the partitions being flat, plate-shaped elements arranged in a grid-shaped configuration.
17. Filter device (1) according to claim 3, the partitions being flat, plate-shaped elements arranged in a grid-shaped configuration.
18. Filter device (1) according to claim 4, the cross-section of the cleaning duct being of circular shape, the partitions being formed of coaxial conical members (36, 37).
19. Filter device (1) according to claim 8, the distributor element comprising a perforated annular inner wall (60) having openings (61) distributed along its circumferential surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Some embodiments of a filter device in accordance with the present invention will, by way of non-limiting example, be described in detail with reference to the accompanying drawings. In the drawings:
(2)
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(11) In the filtering mode, process water enters in an axial direction into the array of ceramic elements 3, and leaves the array through a side surface 17 of the filter elements. The inlet valve 8 is opened while the cleaning fluid outlet valve 9 is closed. The filtered water passes through the sidewall of the housing 2 to the duct 6 and via the outlet valve 10 to the outlet 12. The cleaning fluid inlet valve 11 is closed and the cleaning fluid, such as water which is pressurised at a pressure of about 5 bar, is contained in the cleaning fluid reservoir 13.
(12) In the cleaning mode, such as shown in
(13) In order for the cleaning fluid to have a gradual decrease in velocity upon entry into the housing 2 and to reduce energy losses and prevent water hammer by sudden pressure increase, the duct 6 is provided with a relatively narrow distal duct section 15 and a diverging duct section 16, as shown in
(14) The distal duct section 15 has a diameter D1 of for instance 80 cm and has a length Ld of about 0.5 m-2 m and the diverging duct section 16 has a length Lp of about 0.3 m-2 m and a diameter D2 at the position of the sidewall 2 of 140 cm. The angle of the outer diverging walls of the proximal duct section 16 relative to the centre line 20 of the cleaning duct 6, is for instance about 11 degrees. The compact footprint of the filter device according to the invention allows the use of several cleaning fluid reservoirs and filter housings 2, multiple filter housings 2 being connected to one reservoir 13, with a capacity of for instance several thousand L/hour in a single small sized water treatment facility.
(15) Inside the diverging proximal channel section 16 is a number of plate-shaped partitions 21,22, 23, 24 that extend along the entire width (perpendicular to the plane of the drawing) of the proximal channel section 16. The partitions 21-24 are at an angle of between 5 and 20 relative to the centre line 20.
(16)
(17) In
(18) In the embodiment shown in
(19) As can be seen in
(20) Furthermore, the holes 61 are aligned in the axial direction to form vertical rows that are situated in such a perimetrical position that they allow cleaning fluid to pass between adjacent cylindrical filter elements that are placed in proximity to the holes.