IP Library Patent Application 18872737
Patent Application
App. No. 18/872,737

Subsea Christmas Tree Comprising a Control and Battery Module and Related Method

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Quick Facts
Patent No.
US None
App. No.
18/872,737
Abstract

A subsea hydrocarbon Christmas tree ( 400 ) comprising a control and battery module ( 100 ) for controlling electrically actuated valves ( 200 ) is described. The control and battery module has first and second subsea electronics modules ( 110 A, 110 B) forming a redundant pair, wherein each subsea electronics module is configured for receiving electric power provided from a top-side power supply ( 300 ) to operate the valves ( 200 ), and a plurality of power back-up battery pack modules ( 120 A, 120 B, 120 C). The power back-up battery pack modules comprises: a first battery pack module ( 120 A) which is connectable to the first subsea electronics module to provide back-up electric power to the first subsea electronics module should power from the top-side power supply be interrupted; a second battery pack module ( 120 B) which is connectable to the second subsea electronics module to provide back-up electric power to the second subsea electronics module should power from the top-side power supply be interrupted; and at least one additional battery pack module ( 120 C) which is connectable to at least one of the first and the second subsea electronics modules ( 110 A, 110 B). A related method is also described (FIG. 2 )

Claims (22)

1 . A subsea hydrocarbon Christmas tree comprising a control and battery module for controlling a number of electrically actuated valves, each valve being actuated by an electric motor, the control and battery module comprising:

first and second subsea electronics modules forming a redundant pair of subsea electronics modules, each subsea electronics module being configured for receiving electric power from a top-side power supply to operate the valves;

a plurality of power back-up battery pack modules, including:

a first battery pack module which is connectable to the first subsea electronics module to provide back-up electric power to the first subsea electronics module should power from the top-side power supply be interrupted;

a second battery pack module which is connectable to the second subsea electronics module to provide back-up electric power to the second subsea electronics module should power from the top-side power supply be interrupted; and

at least one additional battery pack module which is connectable to at least one of the first and the second subsea electronics modules.

2 . The Christmas tree according to claim 1 , wherein the first battery pack module is connectable to the second subsea electronics module and the second battery pack module is connectable to the first subsea electronics module.

3 . The Christmas tree according to claim 2 , wherein said at least one additional battery pack module comprises a third battery pack module which is connectable to the first subsea electronics module and forms a redundant pair of power back-up battery pack modules for the first subsea electronics module, and a fourth battery pack module which is connectable to the second subsea electronics module and forms a redundant pair of power back-up battery pack modules for the second subsea electronics module.

4 . The Christmas tree according to claim 1 , wherein each of said first and second subsea electronics modules comprises electric motor drives configured for powering and controlling said electric motors to operate the valves.

5 . The Christmas tree according to claim 1 , wherein the first and second subsea electronics modules and the battery pack modules are arranged in a common retrievable container in the Christmas tree.

6 . The Christmas tree according to claim 1 , wherein each of said battery pack modules comprises a battery package comprising battery cells and, for each subsea electronics module to which the battery pack module is connectable, an on/off switch configured to control an electrical connection between the battery cells and the respective subsea electronics module.

7 . The Christmas tree according to claim 6 , wherein each of said battery pack modules comprises an electric fuse arranged between the battery cells and the respective subsea electronics module.

8 . The Christmas tree according to claim 1 , wherein each of said battery pack modules is contained in a respective battery pack module sub-container.

9 . The Christmas tree according to claim 1 , wherein each of said first and second subsea electronics modules is contained in a respective subsea electronics module sub-container.

10 . A method of providing back-up electric power to the subsea hydrocarbon Christmas tree according to claim 1 when electric power provided from the top-side power supply to the first and second electronics modules is interrupted, the method comprising:

connecting the first battery pack module to the first subsea electronics module to energize the first subsea electronics module;

connecting the second battery pack module to the second subsea electronics module to energize the second subsea electronics module;

reserving the at least one additional battery pack module as a back-up battery pack module for at least one of the first battery pack module and the second battery pack module; and

if any one of the first battery pack module and the second battery pack module fails, connecting the at least one additional battery pack module to the subsea electronics module connected to the failed battery pack module to energize that subsea electronics module.

11 . The method according to claim 10 , wherein said at least one additional battery pack module comprises a third battery pack module which is connectable to the first subsea electronics module and forms a redundant pair of power back-up battery pack modules for the first subsea electronics module, and a fourth battery pack module which is connectable to the second subsea electronics module and forms a redundant pair of power back-up battery pack modules for the second subsea electronics module, and wherein the method further comprises:

if the first battery pack module fails, connecting the third battery pack module to the subsea electronics module connected to the failed first battery pack module to energize that subsea electronics module; and/or

if the second battery pack module fails, connecting the fourth battery pack module to the subsea electronics module connected to the failed second battery pack module to energize that subsea electronics module.

Assignments (2)
CHANGE OF NAME Recorded Jun 17, 2025
From: FMC KONGSBERG SUBSEA AS
To: TECHNIPFMC NORGE AS
Reel/Frame 071648/0304 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2024
From: MAGNUS, HEYN H.; MEUM, CHRISTIAN; NICOLAYSEN, VIDAR
To: FMC KONGSBERG SUBSEA AS
Reel/Frame 069515/0063 →