IMPROVED INSULATED COUPLING
20240209977 ยท 2024-06-27
Assignee
Inventors
Cpc classification
F16L59/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L39/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L2201/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L59/182
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L59/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L39/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A coupling (1) comprising a first (11) and second (12) elongated part to be coupled to each other by insertion of the first part (11) into the second part (12). Each part (11, 12) comprises an internal liquefied gas conduit (11a, 12a) to be fluidly connected at a connection point (10) for transfer of liquefied gas through the coupling (1). The first part (11) or the second part (12) comprises a warm seal (2) and the second part (12) comprises a purge opening (4). By providing a locking device (6) with two positions, a safe and reliable coupling is provided.
Claims
1-13. (canceled)
14. A coupling comprising a first and second elongated part to be coupled to each other by insertion of the first part into the second part, each part comprises an internal liquefied gas conduit to be fluidly connected at a connection point for transfer of liquefied gas, preferably liquefied hydrogen or helium, through the coupling, one of the first part and the second part comprises a warm seal and the second part comprises a purge opening, the coupling further comprising a cold seal arranged to seal a volume between the cold seal and the warm seal from the internal liquefied gas conduits, wherein the warm seal is arranged to seal a space between the first and second parts from the atmosphere, the coupling further comprising a locking device with a first and second lock position wherein, in the first lock position, the first part is partly inserted into the second part such that a space is formed between the first and second parts, and the warm seal is engaged such that the purge opening is located between the space and the warm seal enabling purging of a volume between the first and second parts; and in the second lock position the first part is fully inserted into the second part forming a fluid connection at the connection point.
15. The coupling according to claim 14, wherein the warm seal is engaged such that the warm seal is between the purge opening and the connection point, and the warm seal is engaged such that the warm seal is located between the purge opening and the connection point.
16. The coupling according to claim 14, wherein the distance (L1) between the purge opening and the connection point is longer than the distance (L2) between the warm seal and the connection point when the coupling is fully connected.
17. The coupling according to claim 14, wherein in the first lock position the cold seal (3) is disengaged such that a purge path is open between the first and second parts to the purge opening, and in the second lock position the cold seal is engaged creating a closed volume between the cold seal and warm seal.
18. The coupling according to claim 14, wherein the locking device comprises an actuator (6e) preventing the coupling from passing the first lock position without actuation of the actuator.
19. The coupling according to claim 14, wherein the first and second parts further comprise a valve arrangement with at least one valve arranged in the first and second parts, the valves permitting the liquefied gas to flow through the internal liquefied gas conduits when the first and second liquid conduits are connected, and preventing flow when the first and second liquid conduits are apart.
20. The coupling according to claim 14, wherein the coupling further comprises an emergency release device.
21. The coupling according to claim 20, wherein the emergency release device is separate from the locking device such that upon emergency release at least one part of the second part is separated and instead attached to the first part after separation.
22. The coupling according to claim 14, wherein the first part comprises a first valve arrangement with a valve comprising a stem and a valve head, the second part comprises a second valve arrangement with a valve comprising a stem and a valve head, wherein one of said valves is spring-loaded and the other of said valves is arranged in a fixed position in the valve arrangement.
23. A method for purging and connecting a first and second elongated part of a coupling according to claim 14, and the method comprises the steps: inserting the first part into the second part, purging a volume between the first and second part at a first lock position, further inserting the first part into the second part fully connecting the coupling in a second lock position.
24. The method according to claim 23, the method comprising the additional step of purging the internal liquefied gas conduit before transfer of liquefied gas through the coupling.
25. The method according to claim 23, the method comprising the additional step of purging the internal liquefied gas conduit after transfer of liquefied gas through the coupling.
26. A coupling comprising a first and second elongated part to be coupled to each other by insertion of the first part into the second part, each part comprises an internal liquefied gas conduit to be fluidly connected at a connection point for transfer of liquefied gas, preferably liquefied hydrogen or helium, through the coupling, one of the first part and the second part comprises a warm seal and the second part comprises a purge opening, the coupling further comprising a cold seal arranged to seal a volume between the cold seal and the warm seal from the internal liquefied gas conduits, wherein the distance (L1) between the purge opening and the connection point is longer than the distance (L2) between the warm seal and the connection point when the coupling is fully connected.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0032] The invention is now described, by way of example, with reference to the accompanying drawings, in which:
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
[0042]
DESCRIPTION OF EMBODIMENTS
[0043] In the following, a detailed description of the different embodiments of the solution is disclosed under reference to the accompanying drawings. All examples herein should be seen as part of the general description and are therefore possible to combine in any way of general terms. Individual features of the various embodiments and aspects may be combined or exchanged unless such combination or exchange is clearly contradictory to the overall function of the device or method.
[0044]
[0045]
[0046] In one embodiment as illustrated in
[0047] As further illustrated in the embodiment of
[0048] When the sections 6a and 6b is turned further in relation to each other, each roller 6b1 will continue to run in respective cam curve 6a1 until they reach a final stop end position, the second lock position. When the looking device 6 is in this stop position the actuator 6e of the locking device 6 in one embodiment comes into an end position and locks the first part 11 and the second part 12 of the coupling 1 to each other. The actuator 6e can for example be a pin on the second section 6b of the locking device 6 getting into cooperation with a hole on the first second 6a of the locking device 6. In other embodiments the movement is restricted in other ways. The locking device 6 can have another design and can be forced into the two positions in any way suitable.
[0049]
[0050] The first 11 and second 12 parts each has an elongated form and comprises an internal liquefied gas conduit 11a and 12a for transporting the liquefied gas through the coupling 1 when the parts 11 and 12 are coupled. The elongation makes it possible to keep control of the temperature of the liquefied gas passing inside the first part 11 and the second part 12 and to hinder temperature increase of the gas, this is achieved by a volume between the warm 2 and cold 3 seals, see
[0051] Upon insertion of the first part 11 into the second part 12 air, moisture, and other pollutants for cryogenic environments is present around the coupling 1 and trapped between the first 11 and second 12 parts. This problem is in the prior art often reduced by minimizing dead space between valves in couplings, however this only reduces the problem. To eliminate air and contaminations in the present solution, the coupling is halted at the first lock position before the coupling is fully connected leaving a space 10a between the valve arrangements 2b, 3b and also a space between the elongated parts of the first and second parts 11, 12. At this stage the cold seal 3 is not engaged, it is located at a distance from in this embodiment the second part. The space 10a is enclosed by the first 11 and second 12 parts and sealed off by the warm seal from the atmosphere. Thus,
[0052] In the first lock position as illustrated in
[0053]
[0054]
[0055]
[0056] In one embodiment, the coupling 1 comprises a second warm seal protecting and sealing the coupling 1 from the atmosphere. The second warm seal further seals the purge opening 4 from the atmosphere in the second lock position wherein the purge opening 4 is between the warm seal 2 and the second warm seal.
[0057]
[0058]
[0059]
[0060]
[0061] The emergency release device 8 comprises elements attached to the second part 12 of the coupling 1. When the coupling 1 is exposed to determined unwanted load or angles, the elements of the emergency release device 8 is activated.
[0062] In one embodiment, when there is a need to disconnect the coupling 1, a wire attached to a release ring is stretched. Then the release ring is pulled off from the clamp construction 8a that then will loose the grip around the flange 8b and be pushed outwards by a conical part of the flange 8b. The parts of the second part 12 of the coupling 1 will slide off from the first part 2, away from the locking device 6. A stop flange on the outside of the second part 12 of the coupling 1 stops the movement of the release ring along the elongated body of the second part 12 of the coupling 1. The valve arrangements 2b and 3b will be closed before the cold seal 4 disengages.
[0063] The emergency release device 8 can have another design and can be forced into action in any way suitable. For example, a power emergency release coupling, break studs, break pins, or any other suitable solution.
[0064]
[0065]
[0066] In order to remove air from the conduit so avoid the air contaminating the product to be transferred, it is preferred that the internal liquefied gas conduit 11a, 12a is purged before transfer of liquefied gas through the coupling 1. Correspondingly, the internal liquefied gas conduit 11a, 12a is purged after transfer of liquefied gas through the coupling to remove remnants of for example hydrogen, which may mix with air to create a combustible mixture.
[0067] Preferred embodiments of a coupling have been described. It will be appreciated that these may be varied within the scope of the appended claims without deviating from the inventive idea. For example, the warm seal has been described as part of the first part 11 but it could also be part of the second part 12.