Subsea Valve With Non-Circular Sliding Metal Seals
20180163879 ยท 2018-06-14
Inventors
Cpc classification
F16K11/0743
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K11/074
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K3/0209
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K3/0227
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A sliding metal seal valve comprises one or more non-circular (oblate) metal seals. Use of non-circular (oblate) sliding metal seals, permits the rotor of a rotary sliding metal seal valve to have a smaller diameter which permits a smaller overall valve size. Reduced rotor diameter also reduces the torque required to turn the rotor, permitting smaller actuator motors to be used. Axially sliding valves such as bar valves may also employ such non-circular sliding metal seals to permit a reduction in the width of such valve.
Claims
1. A rotary sliding metal seal valve comprising: at least one pair of non-circular sliding metal seals.
2. The rotary sliding metal seal valve recited in claim 1 wherein the non-circular sliding metal seals have an oblate cross section.
3. The rotary sliding metal seal valve recited in claim 1 further comprising: a rotor having a face in sealing engagement with the at least one pair of non-circular sliding metal seals; a pair of openings in the face of the rotor; and an internal passageway in the rotor interconnecting the pair of openings in the face of the rotor.
4. The rotary sliding metal seal valve recited in claim 3 wherein the rotor comprises a substantially cylindrical section having an end forming the face of the rotor and the pair of openings in the face of the rotor are equally spaced from the wall of the cylindrical section.
5. The rotary sliding metal seal valve recited in claim 4 wherein the at least one pair of non-circular sliding metal seals have an oblate cross section that is elongated in an arc traversed by the pair of openings in the face of the rotor when the rotor is rotated.
6. The rotary sliding metal seal valve recited in claim 4 wherein the at least one pair of non-circular sliding metal seals have an oblate cross section that is longer in a dimension described by an arc traversed by the pair of openings in the face of the rotor when the rotor is rotated than in a radial dimension relative to the arc.
7. The rotary sliding metal seal valve recited in claim 4 further comprising: a third opening in the face of the rotor; and an internal passageway in the rotor connecting the third opening in the face of the rotor to an opening in the wall of the cylindrical section.
8. The rotary sliding metal seal valve recited in claim 7 further comprising: an annular space in the valve surrounding the cylindrical section of the rotor in fluid communication with a vent port of the valve.
9. The rotary sliding metal seal valve recited in claim 3 wherein the pair of openings in the face of the rotor are circular openings and the oblate cross section of the non-circular sliding metal seals has at least one dimension that is greater than three time the diameter of the circular openings in the face of the rotor.
10. The rotary sliding metal seal valve recited in claim 9 wherein the non-circular sliding metal seals have a through bore and are sized and configured such that, when the rotor is turned, the pair of openings in the face of the rotor are fully landed on the sliding metal seals before the pair of openings in the face of the rotor overlap any portion of the through bores.
11. A sliding metal seal bar valve comprising: at least one non-circular sliding metal seal.
12. The sliding metal seal bar valve recited in claim 11 wherein the non-circular sliding metal seal has an oblate cross section.
13. The sliding metal seal bar valve recited in claim 11 wherein the non-circular sliding metal seal has an elliptical cross section.
14. The sliding metal seal bar valve recited in claim 11 wherein the non-circular sliding metal seal has an oval cross section.
15. The sliding metal seal bar valve recited in claim 11 wherein the non-circular sliding metal seal has a through bore and is sized and configured such that, when the bar slides, the opening in bar is fully landed on the sliding metal seal before the opening in the bar overlaps any portion of the through bore in the sliding metal seal.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING(S)
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DETAILED DESCRIPTION OF THE INVENTION
[0019] The invention may best be understood by reference to the exemplary embodiments illustrated in the drawing figures.
[0020] In the illustrated embodiments, the following numbers are used to refer to the listed elements: [0021] 10 valve assembly [0022] 12 base body [0023] 14 upper body [0024] 16 shaft [0025] 18 lugs [0026] 20 rotor [0027] 22 seal (base to upper body) [0028] 24 metal seal [0029] 26 supply port [0030] 28 function port [0031] 30 vent port [0032] 32 port seals [0033] 34 diagonal passageway [0034] 36 annular cavity [0035] 38 internal cross passageway [0036] 40 circumferential metal seal body seal [0037] 42 circumferential metal seal body seal back-up ring [0038] 44 shaft seal [0039] 46 shaft seal back-up ring [0040] 48 lug engagement blind holes [0041] 50 counterbore for sliding metal seal [0042] 52 rotor cavity [0043] 54 circular sliding metal seal (prior art) [0044] 56 seal-engaging passageway [0045] 57 radial passageway [0046] 58 reduced rotor diameter [0047] 59 vent connection [0048] 60 non-circular (oblate) sliding metal seal [0049] 62 through bore [0050] 64 peripheral seal groove [0051] 66 bar (of bar valve) [0052] 68 sliding metal bar seal [0053] 70 non-circular (oblate) sliding metal seal [0054] 72 reduced bar width [0055] 73 wave spring
[0056] Referring first to
[0057] As may best be seen in
[0058] Vent port 30 is in fluid communication with annular cavity 36 via diagonal passageway 34.
[0059] Rotor 20 has internal cross passage 38 which permits selective fluid communication between supply port 26 and function port 28 or between function port 28 and vent port 30 depending upon the rotational position of rotor 20. Rotor 20 may also be positioned such that all ports (26, 28, and 30) are closed. In
[0060] Two non-circular (oblate) sliding metal seals 24 are shown installed in non-circular counterbores 50 in base body 12 intermediate circular rotor cavity 52 and ports 26 and 28. Circumferential metal seal body seals 40 and circumferential metal seal body seal back-up rings 42 are provided to seal between metal seals 24 and counterbores 50.
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[0063] The bottom face of rotor 20 has three openings: metal seal-engaging passageways 56 and 56 (interconnected by internal cross passage 38) and vent connection 59 (which connects to radial passageway 57). In
[0064] As shown by dashed line 58 in
[0065] As may be seen by comparing sliding metal seal 54 in
[0066]
[0067] As shown in
[0068] In certain preferred embodiments, back-up ring 42 is fabricated of polytetrafluoroethylene (TEFLON). In yet other embodiments back-up ring 42 is fabricated of polyetheretherketone (PEEK) or another engineering plastic. Inasmuch as engineering plastics are typically not elastomeric, back-up ring 42 may be skive cut to permit installation into peripheral groove 64 of non-circular sliding metal seal 60.
[0069] Non-circular sliding metal seals according to the invention also have application in axially sliding valves.
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[0071] The use of a non-circular sliding metal seal in a sliding metal seal valve provides the following advantages: [0072] Reduced seal face area resulting in reduced friction on the seal face; [0073] Less torque required (in rotary applications) to actuate the valve; [0074] Less force required for valve actuation (in axial applications, e.g., sliding bar valves); [0075] Reduced rotor diameter (in rotary valve applications); and [0076] Reduced width (in axially actuated valve applications).
[0077] A rotary sliding metal seal valve according to the invention comprises at least one pair of non-circular sliding metal seals. The non-circular sliding metal seals may have an oblate cross section.
[0078] The rotary sliding metal seal valve may further comprise a rotor having a face in sealing engagement with the at least one pair of non-circular sliding metal seals, a pair of openings in the face of the rotor, and an internal passageway in the rotor interconnecting the pair of openings in the face of the rotor.
[0079] The rotor may comprise a substantially cylindrical section having an end forming the face of the rotor and the pair of openings in the face of the rotor may be equally spaced from the wall of the cylindrical section.
[0080] The non-circular sliding metal seals may have an oblate cross section that is elongated in an arc traversed by the pair of openings in the face of the rotor when the rotor is rotated. In an embodiment, the oblate cross section is longer in a dimension described by an arc traversed by the pair of openings in the face of the rotor when the rotor is rotated than in a radial dimension relative to the arc.
[0081] The rotary sliding metal seal valve may be sized and configured such that the pair of openings in the face of the rotor are circular openings and the oblate cross section of the non-circular sliding metal seals has at least one dimension that is greater than three time the diameter of the circular openings in the face of the rotor.
[0082] As illustrated in
[0083] The foregoing presents particular embodiments of a system embodying the principles of the invention. Those skilled in the art will be able to devise alternatives and variations which, even if not explicitly disclosed herein, embody those principles and are thus within the scope of the invention. Although particular embodiments of the present invention have been shown and described, they are not intended to limit what this patent covers. One skilled in the art will understand that various changes and modifications may be made without departing from the scope of the present invention as literally and equivalently covered by the following claims.