HIGH-TEMPERATURE STEAM-WATER FILTERING UNIT AND COMBINED HIGH-TEMPERATURE STEAM-WATER FILTERING DEVICE
20230191304 · 2023-06-22
Inventors
- Lizhi NAN (Hangzhou, Zhejiang, CN)
- Zhaohua LI (Hangzhou, Zhejiang, CN)
- Jianhua RONG (Hangzhou, Zhejiang, CN)
- Naipu XIE (Hangzhou, Zhejiang, CN)
- Kai JI (Hangzhou, Zhejiang, CN)
Cpc classification
B01D46/2403
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The present invention discloses a high-temperature steam-water filtering unit, which comprises: a filter frame divided into an upper layer and a lower layer by an interlayer, the lower layer being provided with a feed inlet, and the upper layer being provided with a discharge port; a filter comprising a plurality of filter cartridges mounted on the interlayer along a vertical direction, an inlet of each filter cartridge being positioned below the interlayer, and an outlet of each filter cartridge being positioned above the interlayer; and a communicating channel being in communication with the discharge port. The present invention also discloses a combined high-temperature steam-water filtering device, which comprises: two or more filtering units arranged in an outer shell and communicating channels extending along a vertical height direction of filter frames and being in communication with discharge ports and feed inlets of the adjacent filtering units. In the present invention, filters and a filter frame which are spliced and combined are combined into a filtering unit, and the filtering units can be freely combined according to the requirements of filtering precision, filtering flow, pressure reduction and the like.
Claims
1. A high-temperature steam-water filtering unit, comprising: a filter frame (2) divided into an upper layer and a lower layer by an interlayer (3), the lower layer (21) being provided with a feed inlet (211), and the upper layer (22) being provided with a discharge port (221); a filter (4) comprising a plurality of filter cartridges (41) mounted on the interlayer (3) along a vertical direction, an inlet of each filter cartridge (41) being positioned below the interlayer (3), and an outlet (411) of each filter cartridge (41) being positioned above the interlayer (3); and a communicating channel (5) being in communication with the discharge port (221).
2. The high-temperature steam-water filtering unit according to claim 1, wherein the interlayer (3) is provided with two or more of the filters (4).
3. The high-temperature steam-water filtering unit according to claim 1, wherein a drain outlet (23) is arranged at the bottom of the filter frame (2).
4. The high-temperature steam-water filtering unit according to claim 1, wherein the filter (4) comprises a flange bottom plate (42), and the filter cartridges (41) are vertically mounted on the flange bottom plate (42); access manholes (24) with a same number as the filters (4) are formed in the filter frame (2).
5. A combined high-temperature steam-water filtering device, comprising: two or more filtering units (1) arranged in an outer shell (9), wherein each filtering unit (1) comprises a filter frame (2) divided into an upper layer and a lower layer by an interlayer (3), the lower layer (21) being provided with a feed inlet (211) capable of being in communication with a steam inlet (6), and the upper layer (22) being provided with a discharge port (221); a filter (4) comprising a plurality of filter cartridges (41) mounted on the interlayer (3) along a vertical direction, an inlet of each filter cartridge (41) being positioned below the interlayer (3), and an outlet of each filter cartridge (41) being positioned above the interlayer (3); and a communicating channel (5) extending along a vertical height direction of the filter frame (2) and being in communication with the discharge port and the feed inlet of the adjacent filtering units (1).
6. The combined high-temperature steam-water filtering device according to claim 5, wherein the interlayer (3) is provided with two or more of the filters (4), the two or more of the filters (4) being arranged along a direction perpendicular to a medium flowing direction.
7. The combined high-temperature steam-water filtering device according to claim 5, wherein the feed inlet (211) and the discharge outlet (221) of each filtering unit (1) are oppositely arranged; or the feed inlet (211) and the discharge port (221) of each filtering unit (1) are arranged in a staggered manner.
8. The combined high-temperature steam-water filtering device according to claim 5, wherein the discharge port of the filtering unit (1) at a tail end is in communication with a steam outlet (7); or the steam outlet (7) is arranged at a top of the communicating channel at a tail end.
9. The combined high-temperature steam-water filtering device according to claim 5, wherein the filtering unit (1) also comprises a pressure sensor (8) for monitoring a differential pressure between the feed inlet (211) and the discharge port (221). 10. The combined high-temperature steam-water filtering device according to claim 5, wherein a drain outlet (23) is arranged at the bottom of the filter frame (2); access manholes (24) with a same number as the filters (4) are formed in the filter frame (2); the filter (4) comprises a flange bottom plate (42), and the filter cartridges (41) are mounted on the flange bottom plate (42) in parallel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0044] In order to make those skilled in the art better understand the solution of the present invention, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention but not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort shall fall within the protection scope of the present invention.
[0045] As shown in
[0046] The filter frame 2 is divided into an upper layer and a lower layer which are relatively independent by the interlayer 3, the side wall of the lower layer 21 is provided with a feed inlet 211 from bottom to top, and the side wall of the upper layer 22 is provided with a discharge port 221 from top to bottom; as shown in
[0047] As shown in
[0048] As shown in
[0049] As shown in
[0050] As shown in
, in order to facilitate the cleaning of the filter frames 2, drain outlets 23 are arranged at the bottoms of the filter frames 2; in order to facilitate the maintenance and replacement of the filters 4, access manholes 24 with the same number as the filters 4 are formed in the filter frames 2.
Embodiment I
[0051] As shown in
[0052] The filtering unit 1 comprises a filter frame 2, a filter 4 mounted on the filter frame 2, and a communicating channel 5, wherein the filter frame 2 is divided into an upper layer and a lower layer which are relatively independent by an interlayer 3, the side wall of the lower layer 21 is provided with a feed port 211 from bottom to top, and the side wall of the upper layer 22 is provided with a discharge port 221 from top to bottom, the feed inlet 211 and the discharge port 221 being arranged opposite to each other.
[0053] The structure of the filter 4 is the same as that described above and is not be repeated herein.
[0054] The communicating channel 5 is parallel to the filter frame 2, extends along the vertical height direction of the filter frame 2, and is a cavity structure, and the communicating channel 5 is in communication with the discharge port 221 and with the feed inlet of an adjacent filtering unit.
[0055] As shown in
[0056] As shown by the arrows in
[0057] In order to conveniently find whether the filter cartridge 41 is blocked in time, a pressure sensor 8 is mounted between the feed inlet 211 and the discharge port 221 of each filtering unit 1 and is used for detecting and sending a signal to a control system at any time; when the filter cartridge 41 is blocked, the differential pressure between the feed inlet 211 and the discharge port 221 of each filtering unit 1 is increased, and when the differential pressure reaches a set value, the control system receives the signal and gives an alarm and terminates the operation of the equipment; the pressure sensor 8 is typically constituted by a pressure transmitter or an electric contact pressure gauge.
[0058] In order to facilitate transportation after assembly or to limit a plurality of filtering units 1, an outer shell 9 may be arranged around the plurality of filtering units 1 in a sleeving manner, and the shape of the outer shell 9 may be a cube or a cylinder, and the size of the outer shell is determined by the number and combination mode of the filtering units 1.
[0059] In order to facilitate the maintenance and replacement of the filters 4, access manholes 24 with the same number as the filters 4 are formed in the filter frame 2; the access manholes 24 are mounted, right above the filtering units 1, on the outer shell 9, and each filtering unit 1 is provided with one access manhole 24 for cleaning, replacing and maintaining. The filters 4 in the filtering units 1 can be taken out for replacement by opening the access manholes 24, and the filters 4 can also be directly washed by a water gun, and the washed sewage is discharged from the drain outlets 23.
[0060] In order to facilitate the cleaning of the filter frames 2, as shown in
Embodiment II
[0061] As shown in
[0062] As shown in
[0063] Embodiment II is different from Embodiment I in that two filters are connected in parallel to one filtering unit, and other structures are the same, which are not repeated herein.
Embodiment III
[0064] As shown in
[0065] Embodiment III is different from Embodiment I in that the adjacent filtering units are arranged in a bent manner, rather than in a straight line, and other structures are the same, which are not repeated herein.
[0066] The above-mentioned embodiments are used to illustrate the present invention, but not to limit the present invention. Any modifications and changes made to the present invention within the spirit of the present invention and the protection scope of the claims fall within the protection scope of the present invention.