A filter-box and a retrievable subsea filter module with a filter-box
20240189773 ยท 2024-06-13
Assignee
Inventors
- Morten HANA (Oslo, NO)
- Tom Gunnar OMBERG (Oslo, NO)
- Jo JERNSLETTEN (Haslum, NO)
- Beatriz Garcia Fernandez (Enschede, NL)
Cpc classification
B01D2313/54
PERFORMING OPERATIONS; TRANSPORTING
B01D61/025
PERFORMING OPERATIONS; TRANSPORTING
B01D2315/06
PERFORMING OPERATIONS; TRANSPORTING
B01D2313/24
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D61/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention concerns a subsea filter-box with a plurality of pressure-vessels 1 forming at least one group of longitudinal pressure-vessels. A first support plate 7 and a second support plate 8 includes a plurality of fixing geometries 20, each supporting pressure-vessel end sections 17, 6. Each of the plurality of pressure-vessels extends between a fixture on the first support plate and a fixture on the second support plate. Each group of pressure-vessels includes at least one entry pressure-vessel one end pressure-vessel 14, adjoining and in liquid connection with an intermediate pressure-vessel 16; and a filter-box frame, clamping the first support plate 7 and the second support plate 8 to the plurality of pressure-vessels. A filter module with at least one filter-box is also disclosed.
Claims
1-13. (canceled)
14. A subsea filter-box with a plurality of longitudinal pressure-vessels forming at least one group of longitudinal pressure-vessels, wherein each pressure vessel includes a membrane, a first end section and a second end section; wherein each first end section, includes a first side face and a first end section end face; wherein each second end section, includes a second side face and a second end section end face; wherein the first end section end face faces away from the second end section end face; at least one feed liquid inlet on the first end section side face; at least one retentate outlet and at least one permeate/filtrate outlet on the second end section side face; the subsea filter-box comprising: a first support plate with a plurality of fixing geometries, each supporting a first end section; a second support plate with a plurality of fixing geometries, each supporting a second end section, whereby each of the plurality of pressure-vessels extends between a fixing geometry on the first support plate and a fixing geometry on the second support plate; wherein the at least one group of pressure-vessels includes at least: one entry pressure-vessel with at least one feed liquid outlet on the first end section side face; at least one intermediate pressure-vessel with at least one feed liquid outlet on the first end section side face; at least one permeate inlet on the second end section side face; at least one retentate inlet on the second end section side face, adjoining and in liquid connection with the entry pressure-vessel; one end pressure-vessel, adjoining and in liquid connection with an intermediate pressure-vessel; and a clamp structure, clamping the first support plate and the second support plate to the plurality of pressure-vessels.
15. The subsea filter-box of claim 1, wherein the entry pressure-vessel is a 5-port pressure-vessel, the end pressure-vessel is a 4-port pressure-vessel and the at least one intermediate pressure-vessel is a 6-port pressure-vessel.
16. The subsea filter-box of claim 2, wherein the entry pressure-vessel furthermore includes a permeate/filtrate outlet on the second end section side face, and the end pressure-vessel includes a retentate inlet on the second end section side face.
17. The subsea filter-box of claim 1, wherein the liquid inlet, the retentate outlet, and the permeate/filtrate outlet of a pressure vessel is fixed to the feed liquid outlet, the retentate inlet and the permeate inlet respectively of a neighbouring pressure vessel with releasable liquid couplings.
18. The subsea filter-box of claim 4, wherein the releasable liquid couplings provides mechanical joints providing a stiff connection, mechanically fixing the pressure-vessels in a group of longitudinal pressure-vessels to each other.
19. The subsea filter-box of claim 1, wherein each pressure vessel includes a permeate end cap sealing a permeate side of the pressure-vessel, the permeate end cap including a permeate channel fixed to a threaded portion of a permeate/filtrate outlet tube of the pressure-vessel with an end cap attachment bracket formed as a tube with internal threads threaded onto the permeate/filtrate outlet tube, and with ports on the side to allow the permeate to flow out of the tube, holding the end cap to the permeate/filtrate outlet tube.
20. The subsea filter-box of claim 1, wherein the first end section end face is parallel to the second end section end face.
21. The subsea filter-box of claim 1 wherein the membrane is a Reverse Osmosis (RO) membrane and wherein the subsea filter-box is adapted to be used for subsea desalination whereby the feed liquid is seawater, the retentate is brine and the permeate is freshwater.
22. A retrievable subsea filter module with at least one subsea filter-box of claim 1, including a plurality of groups of longitudinal pressure-vessels further including: a liquid inlet header in liquid connection with each liquid inlet on each entry pressure vessel; a retentate header in liquid connection with each retentate outlet on one of each entry pressure vessel or each end pressure-vessel; and a permeate header in liquid connection with each permeate/filtrate outlet on one of each entry pressure vessel or each end pressure-vessel.
23. The retrievable subsea filter module of claim 9, including two subsea filter-boxes wherein a first of the two subsea filter-boxes is located on top of a second of the two subsea filter-boxes, whereby a longitudinal centreline of each pressure vessel of the first subsea filter-box is coinciding with a longitudinal centreline of a pressure vessel of the second subsea filter-box.
24. The retrievable subsea filter module of claim 9, further including a subsea desalination template with a retrievable subsea filter module zone; a retentate outlet pipe extending from the desalination module; and a permeate and service line extending from the desalination template and to a permeate receiving facility.
25. A longitudinal pressure-vessel comprising: a membrane; a first end section, including a first side face and a first end section end face; a second end section, including a second side face and a second end section end face; wherein the first end section end face faces away from the second end section end face; at least one feed liquid inlet on the first end section side face; at least one retentate outlet and at least one permeate/filtrate outlet on the second end section side face; and at least one of a feed liquid outlet on the first end section side face, a retentate inlet on the second end section side face, and a permeate inlet on the second end section side face.
26. The longitudinal pressure-vessel of claim 12, wherein the membrane is an RO-membrane, and the pressure-vessel is a desalination pressure vessel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Short description of the enclosed drawings:
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DETAILED DESCRIPTION OF THE INVENTION
[0034] Detailed description of embodiments of the invention by reference to the enclosed figs.
[0035]
[0036] Each of the 10 rows include four 6-port intermediate pressure-vessels 16, one 4-port end pressure-vessel 14 at a first-row end and one 5-port entry pressure-vessel 15 at a second row-end. The 5-port entry pressure-vessel 15 is providing the entry port for the liquid. The pressure-vessels 1 in one row are in liquid connection with each other to allow flow of liquid between the pressure-vessels 1 as well as joining the pressure-vessels mechanically, holding the pressure-vessels 1 in each row together. The feed liquid is typically seawater, permeate (desalinated water) and brine (high salt concentration seawater). In addition to the three ports listed above, does the 4-port pressure-vessel 14 include a retentate inlet.
[0037] In addition to the three ports listed above, does the 5-port pressure-vessel 15 include a liquid outlet and a permeate inlet.
[0038] In addition to the three ports listed above, does the 6-port pressure-vessel 16 include a retentate inlet, a liquid outlet, and a permeate inlet.
[0039] The pressure-vessels 1 are held in place between a first support plate/top support plate 7 and a second support plate/a bottom support plate 8, both with a circular recess forming a fixing geometry for each pressure-vessel 1. The first support plate/top support plate 7 and the second support plate/a bottom support plate 8 are clamped together with a clamp a clamp structure. The clamp structure may include an upper frame portion 9 supporting the top support plate 7 and lower frame portion 10 supporting the bottom support plate 8. Each of the upper frame portion 9 and the lower frame portion 10 are connected to two centre frame portions 11 in four frame joints 12, also forming a part of the clamp structure, clamping the parts together. Pressure-vessel support clamps 13 hold the pressure-vessels in the outer lines (with the 4-port pressure-vessels 14 to one centre frame portion 11 and the 5-port pressure-vessels 15 to the other centre frame portion 11). The pressure-vessel support clamps 13 are typically clamps surrounding the pressure-vessels. Some of the pressure-vessels include a retentate inlet 33 and a permeate inlet 34 to communicate liquid between the pressure-vessels.
[0040] The embodiment presented in
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[0042] The fixing geometries 20 are geometries preventing sideways and longitudinal displacement of the pressure-vessels. The fixing geometries are adapted to the shape and size of the ends of the pressure-vessels.
[0043] In the
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[0049] In the 4-port pressure-vessels 14 described in connection with
[0050] In the 5-port pressure-vessels 15 described in connection with
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[0052] The releasable liquid couplings 18 may be formed as threaded connectors, as clamp connectors/connecting clamps. Suitable couplings may be sold as Victaulic couplings, where Victaulic is a trade name. The permeate end caps 30 are located at the bottom of each of the pressure-vessels 1.
[0053] The only difference between the six pressure-vessels 1 is the number of ports. All the pressure-vessels have the same dimensions.
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[0057] Permeate from each of the ten rows of pressure-vessels 1 is led into one permeate header 44 for each layer of filter-boxes. In
[0058] Brine from each of the ten rows of pressure-vessels 1 is led into one retentate header 43 for each layer of filter-boxes. In
[0059] The pressure-vessels 1 are held in place between the first support plate/top support plate 7 and the second support plate/a bottom support plate 8. The top support plate 7 and the bottom support plate 8 are located in the upper frame portion 9 and the lower frame portion 10 of each filter-box respectively.
[0060] A permeate template connection 45 and a retentate template connection 46 are in liquid contact with the permeate header 44 and the retentate header 43 respectively. The template connections 45, 46 are connected to a desalination template when the filter-box module is installed on a subsea desalination template.
[0061] The embodiment presented in
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[0063] The liquid parameter sensors may include temperature sensors, salinity sensors, pressure sensors, mass flow sensors, contamination sensors etc.
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[0065] The subsea template 50 may include dedicated sones for filter modules 51 of the invention and may include connections for at least one of a permeate inlet, a retentate inlet and a feed liquid outlet.
[0066] The pressure-vessels are RO-pressure-vessels for desalination of water. Other filtering pressure vessels may also be utilised in the invention.
[0067] The above description is made with RO membranes installed inside the pressure vessels for desalination purposes in mind. In other systems may however other types of membranes be installed and the wording may differ.
TABLE-US-00001 1 pressure-vessel 2 feed liquid inlet 3 retentate outlet 4 permeate/filtrate outlet 5 pressure-vessel centre section 6 second end section 7 first support plate 8 second support plate 9 upper frame portion 10 lower frame portion 11 centre frame portion 12 frame joints 13 pressure-vessel support clamps 14 4-port end pressure-vessel 15 5-port entry pressure-vessel 16 6-port intermediate pressure-vessel 17 first end section 18 releasable liquid coupling 20 fixing geometry/circular recesses 21 first end section end face 22 second end section end face 23 first end section side face 24 second end section side face 25 tool attachment portion 30 permeate end cap 31 permeate channel 32 feed liquid outlet 33 retentate inlet 34 permeate inlet 35 top plug 36 end cap attachment bracket 37 end cap seal 38 permeate/filtrate outlet tube 40 feed liquid inlet filter 42 feed liquid header 43 retentate header 44 permeate header 45 permeate template connection 46 retentate template connection 50 desalination template 51 filter module 52 permeate and service lines 53 retentate outlet pipe 54 permeate receiving facility 55 support vessel 56 control station 57 retrievable subsea filter module zone