FILTER APPARATUS
20180257010 ยท 2018-09-13
Inventors
- Ralf Wnuk (Bexbach/Kleinottweiler, DE)
- Markus OLSCHOK (Neunkirchen, DE)
- Christian Schindler (Sulzbach, DE)
Cpc classification
B01D2201/0438
PERFORMING OPERATIONS; TRANSPORTING
B01D29/668
PERFORMING OPERATIONS; TRANSPORTING
B01D29/23
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D29/66
PERFORMING OPERATIONS; TRANSPORTING
B01D35/16
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a filter apparatus having a plurality of filter elements (21) which can be accommodated in a filter housing (1) with a filter inlet (11) for fluid to be filtered and a filter outlet (13) for the filtered fluid, wherein during the operation of the device at least one of the filter elements (21) can be backflushed by means of a backflushing device for cleaning its effective surface, which backflushing device includes a pressure control device (7) to support the backflushing, characterized in that the filter elements (21) are each accommodated in an element housing (30), the element housings (30) with the filter elements (21) performing the filtration process are connected to the fluid outlet (13) by their one open end (33) in a fluid conducting manner, and the element housing (30) of the respective backflushable filter element (21) is exclusively connected with its one open end (33) to the pressure control device (7).
Claims
1. A filter device having a plurality of filter elements (21) which can be accommodated in a filter housing (1) with a filter inlet (11) for fluid to be filtered and a filter outlet (13) for the filtered fluid, wherein during the operation of the device at least one of the filter elements (21) can be backflushed by means of a backflushing device for cleaning its effective filter surface, which backflushing device contains a pressure control device (7) to support the backwashing, characterized in that the filter elements (21) are respectively accommodated in an element housing (30), in that the element housings (30) with the filter elements (21) realizing the filtration operation with their one open end (33) are connected in a fluid conducting manner to the filter outlet (13), and in that the element housing (30) of the respective backflushable filter element (21) with its one open end (33) is connected only to the pressure control device (7).
2. The filter device according to claim 1, characterized in that the respective element housings (30) are formed from a hollow cylinder (31) with a closed lateral surface and at their other free end have an opening (43) delimited by the respective accommodated filter element (21).
3. The filter device according to claim 1, characterized in that the respective filter element (21) is formed conical and has its smallest diameter in the direction of the pressure control device (7).
4. The filter device according to claim 1, characterized in that the flow chamber (49) between the element housing (30) and the accommodated filter element (21) expands conically in the direction of the pressure control device (7) and in that the free cross section of the flow chamber (49) at the top end of the respective filter element (21) amounts to 50 to 120%, preferably 100%, of the inlet surface of the element cap (43) of the filter element (21).
5. The filter device according to claim 1, characterized in that all of the filter elements (21) with their element housings (30) are mounted at the end in rotary receptacles (19), which can be moved from a filtration position into a backflushing position and back to a filtration position by means of a rotary drive (25), preferably in a consecutive manner.
6. The filter device according to claim 1, characterized in that the filter elements (21) realizing the filtration operation are respectively flowed through from the inside to the outside and are connected at the base to a common unfiltrate chamber (47) in the filter housing (1), into which the filter inlet (11) opens, and in that in the case of a closed head end (46) of the filter element (21), the flow chamber (49) located on the outside thereof opens, via the top open end (35) of the element housing (1), into a common filtrate chamber (51), which is connected to the filter outlet (13).
7. The filter device according to claim 1, characterized in that the respective filter element (21) realizing the backflushing operation is flowed through from the outside to the inside and is connected with its element housing (30) at the head side to the pressure control device (7) and is connected in a fluid-conducting manner at the base side via the free element end (35) to a dirt release valve (17).
8. The filter device according to claim 1, characterized in that the rotary receptacles (19) which can be pivoted by means of the rotary drive (25) with the filter elements (21) together with their element housings (30) are accommodated concentric and with a definable spacing in the filtrate chamber (51) of the filter housing (1).
9. The filter device according to claim 1, characterized in that the pressure control device has an accumulator part (7) with a pressure chamber (65) which can be filled with working gas and a fluid chamber (57) accommodating a backflushing volume.
10. The filter device according to claim 1, characterized in that the accumulator part (7) as a piston accumulator is formed with an accumulator piston (63) forming a mobile separating element between the pressure chamber (65) and the fluid chamber (57).
11. The filter device according to claim 1, characterized in that, between the pressure control device (7) and the filtrate chamber (51) with the rotary receptacles (19), a separating wall (63) is drawn in the filter housing (1) with a throttle point (59), which connects in a fluid-conducting manner the one bottom piston chamber (57) of the piston accumulator formed with the accumulator piston (63) to the filtrate chamber (51).
Description
[0017] The invention is explained in detail below with reference to an exemplary embodiment depicted in the drawings, in which:
[0018]
[0019]
[0020] In the figures, the housing of the depicted exemplary embodiment of the filter device according to the invention is identified as a whole with the reference numeral 1. The housing 1 is formed in three parts and consists of a base part 3, a central part 5 and a top accumulator part 7, which, sealed in a fluid-tight manner, are screwed to each other. The top accumulator part 7 is closed in a fluid-tight manner at the top end by means of a housing cover 9 shown only in
[0021] In a manner corresponding to the mentioned device (WO 2012/079661 A1) corresponding to the prior art, in the interior, which is comprised of the base part 3 and of the central part 5 together, a rotary drive is provided, with rotary receptacles 19, which with filter elements 21 mounted thereon form an element turret. The filter elements 21 formed from conical filter candles, in particular in the form of so-called slotted sieve tube filter elements, are grouped along a circular arc inside the filter housing 1 about the vertical axis, as in the mentioned, known solution. For a gradual rotational movement of the filter elements 1 about the vertical axis, the rotary receptacles 19 are connected via a drive shaft 23 to a drive motor 25 (hydraulic or electric) which is only depicted in
[0022] Each of the filter elements 21 is accommodated in an element housing 30, the main part of which is formed by a hollow cylinder 31 with a closed lateral surface, which extends between a top open end 33 and a bottom open end 35 of the element housing 30. At the top open end 33 a respective annular body 37 is located on the end of the hollow cylinder 31, which annular bodies are connected via a screw 39 to a support 41 forming a coaxial extension of the drive shaft 23. At the bottom open end 35 of the element housings 30 filter element caps 43 (
[0023] In this arrangement the inner filter cavity 45 of the filter elements 21 realizing the filtration is connected via the bottom open end 35 to the unfiltrate chamber 47, into which the fluid inlet 11 opens. The filtration thus takes place from the inner cavity 45, which is closed at the top end by means of an end body 46, towards the outside through the filter elements 21, so that the flow chamber 49 between the element housing 30 and the outside of the accommodated filter element 21 forms the respective clean side, with the flow chamber 49 which tapers conically upwards being connected via the top open end of the element housings 30 formed by the annular bodies 37 to a common filtrate chamber 51, to which the fluid outlet 13 is in turn connected.
[0024] The housing central part 5 has a separating wall 53 on the top end forming the transition to the accumulator part 7. In this separating wall, at a point which is aligned with the respective filter element 21 provided for a backflushing operation, there is a passage 55. Via this means, the pressure chamber 57 of the accumulator part 7 adjoining the separating wall 53 is connected, via the top open end 33 of the element housing 30 containing the filter element 21 to be backflushed, to the flow chamber 49 on the outside of this filter element 21. This pressure chamber 57 is additionally connected via a throttle point 59 located in the separating wall 53 to the top region 61 of the filtrate chamber 51. As mentioned and as depicted only in
[0025] In this arrangement the pressure chamber 57 forming the fluid side of the piston accumulator formed in the accumulator part 7 can be filled with filtrate via the throttle point 59, at which the system pressure of the filtrate chamber 51 is applied, with the accumulator piston 63 moving upwards with an aerated gas-side chamber 65. In order to initiate a backflushing operation when the filter element 21 is aligned with the backwashing position, as is the case of the filter element 21 visible on the right in the figures, the gas-side chamber 65 of the piston accumulator is charged with compressed air to a pressure level which corresponds to the desired backflushing pressure. With the now opened dirt release valve 17 the accumulator piston 63 drives the fluid volume collected in the chamber 57 as a backflushing volume through the passage 55 and the top open end 33 of the element housing 30 located in the backflushing position into the flow chamber 49 on the outside of the filter element 21, so that said filter element is flowed through under the backflushing pressure from the outside to the inner cavity 45.
[0026] In this backflushing operation, which occurs with backflushing pressure supplied from the piston accumulator, which can be selected significantly higher than the system pressure, even stubborn contaminants are removed to be carried off via the bottom open end 35 of the corresponding element housing 30 and via the removal channel 29. If, after the backflushing is complete, the dirt removal valve 17 is closed and the gas-side chamber 65 above the accumulator piston 63 is again aerated towards the environment via a throttle, another filling of the fluid-side chamber 57 from the filtrate chamber 51 occurs via the throttle point 59 due to the system pressure, while the filter elements 21 not set to the backflushing position realize the filtration. Because these filter elements 21 are completely separated by their element housing 30 from the pressure chamber 57 of the piston accumulator conducting the backflushing pressure, the filtration in the case of the not backflushed filter elements 21 occurs in an entirely undisturbed manner and without any disturbance from the backflushing pressure acting on the backflushed filter element 21.
[0027] The support of the backflushing operation by the pressure control could also take place without the media separation formed by the accumulator piston 63 of the accumulator part 7 in such a way that the working gas of the accumulator part 7 acts on the fluid directly. For this purpose the accumulator piston 63 must be removed from the chamber 57 of the accumulator housing and directly connected to an external pressure source, such as a nitrogen source, which, controlled by a valve device which is not depicted in detail, delivers defined pressure volumes into the chamber 57.