The invention relates to a multi bore connection system for connecting lines requiring a specific angular and axial orientation to land based or subsea production structures. More specifically, the invention relates to a vertical multi bore connection system.
Jumpers are used to connect lines between production structures such as Christmas trees, manifolds, subsea or topside wells, pipelines or PLETs, typically flow lines or umbilicals. When connecting lines such as multi bore flowlines, multi core electric cables or umbilicals, their connection ends need to be both axially and angularly aligned. The connection procedure may inflict damage on the connection ends or internal components such as seals if the connection ends are not axially or angularly aligned. The present invention seeks to provide a safe, robust and easy to use connection system for guiding a connector into axial and angular alignment with a connector receiver.
The invention relates to a connection system for connecting a line with multiple bores and/or cables requiring an axial and angular orientation to subsea structures, including a connector forming a female connection part with at least one guide key, the at least one guide key forming a protrusion on an inner surface of a bottom connector portion of the connector. The connection system further includes a connector receiver forming a male connection part secured to a subsea installation surface including at least one guide slot including a funnel shaped portion and a straight end portion, the at least one guide slot forming a recess in an outer surface of the connector receiver, wherein the at least one guide slot is adapted to receive the guide key of the connector for guiding the connector into angular alignment with the connector receiver upon connection.
The invention further relates to said connection system, wherein the connector includes a top connector portion and a bottom connector portion, the top connector portion having a smaller diameter than the bottom connector portion; and wherein the connector receiver includes a top connector receiver portion and a bottom connector receiver portion, the top connector receiver portion having a smaller diameter than the bottom connector receiver portion.
The invention further relates to said connection system, wherein the connector includes a frustoconical connector portion between the top connector portion and the bottom connector portion; the connector receiver includes a frustoconical connector receiver portion between the top connector receiver portion and the bottom connector receiver portion; and wherein the frustoconical connector portion conforms to the frustoconical connector receiver portion.
The invention further relates to said connection system, wherein the connector includes a clamping device and a clamping device interface for actuating the clamping device.
The invention further relates to said connection system, wherein the connector receiver includes a flanged head on a top end of the connector receiver adapted to be received the clamping device.
The invention further relates to said connection system located subsea.
The invention further relates to said connection system wherein the connector receiver is vertically oriented.
The invention further relates to said connection system wherein all guide keys of the connector are replaced with guide slots, and correspondingly all guide slots of the connector receiver are replaced with guide keys, the guide slots of the connector being oriented to receive the guide keys of the connector receiver.
The invention further relates to the connector according to said connection system.
The invention further relates to the connector receiver according to said connection system.
Terms like ‘bottom’, ‘top’, ‘upper’, ‘lower’, ‘beneath’, ‘above’, ‘below’, ‘raising’ and ‘lowering’ are to be interpreted as relative to the object(s) at hand in its orientation as described or depicted in the figures, not necessarily relative to their environment.
The connector receiver 100 is secured to a production structure surface 110 with a bolt type flange 102. The production structures may be located subsea or on land. The connector receiver can be vertically oriented but may also be oriented in any other angle. The connector receiver 100 includes a flanged head 103 on its top end for receiving a clamping device 207 (see
In
The connector receiver 100 includes a first guide slot 101 forming a recess in the outer surface of the bottom connector receiver portion 107 and in the outer surface of the frustoconical portion 106. The connector receiver 100 may also include a second guide slot 111 (see
The first guide slot 101 includes a funnel shaped portion 109 and a straight end portion 108 beneath the funnel shaped portion 109. The width of the funnel shaped portion is referred to as the capture range. The first guide slot 101 is shaped to receive a guide key 208 of a connector 200 (see
Alternatively the guide keys 208, 209 of the connector 200 may be replaced with guide slots 101, 111, and correspondingly the guide slots 101, 111 of the connector receiver 100 may be replaced with guide keys 208, 209. In this embodiment the guide slots 101, 111 of the connector 200 are oriented to receive the guide keys 208, 209 of the connector receiver 100.
Reference is made to
In
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207
101
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102
209
103
500
104
501
105
507
106
508
107
509
108
600
109
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110
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111
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604
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610
200
611
201
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Number | Date | Country | Kind |
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20200779 | Jul 2020 | NO | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2021/025232 | 6/24/2021 | WO |