IP Library Granted Patent US 11,846,162
Granted Patent B2
US 11,846,162 · App. 17/641,796 · Granted Dec 19, 2023

Subsea deployable installation and workover control system skid and method of installation thereof

Inventors: Ole Vidar Jonsjord (Kongsberg, NO); Kjetil Halset (Kongsberg, NO); Steinar Saugerud (Kongsberg, NO)
E21B41/0007E21B33/0355E21B41/04G08C17/02
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Quick Facts
Patent No.
US 11,846,162
App. No.
17/641,796
Granted
Dec 19, 2023
Kind
B2
Abstract

The invention relates to a subsea deployable installation and workover control system (IWOCS) skid ( 1 ) for connection to a subsea component ( 2 ), the skid ( 1 ) comprising: a wireless communication unit ( 3 ) for communication with a wireless communication unit ( 4 ) at a topside installation ( 10 ); a control system ( 69 ) for data storage and/or data filtering and transferring the filtered data to the wireless communication unit ( 3 ) and receiving data from the wireless communication unit ( 3 ); a self-contained fluid system comprising a fluid supply tank ( 5, 8 ), the fluid system being configured to be connected to a fluid connection on the subsea component such as to provide fluid to the subsea component ( 2 ); an electric power source ( 7 ) for supplying electric power to the communication unit ( 3 ) and the control system ( 69 ). It is further described a method of performing installation or workover operation(s) on a subsea component using an installation workover control system (IWOCS) skid.

Claims (27)

1. A subsea deployable installation and workover control system (IWOCS) skid for connection to a subsea component, the skid comprising:

a first wireless communication unit for communication with a second wireless communication unit at a topside installation, each of the first and second wireless communication units comprising a respective acoustic transponder;

a control system configured for data storage and/or data filtering and for transferring the filtered data to the first wireless communication unit and receiving data from the first wireless communication unit;

a self-contained fluid system comprising a fluid supply tank, the fluid system being connectable to a fluid connection on the subsea component so as to provide fluid to the subsea component;

an electric power source for supplying electric power to the first wireless communication unit and the control system; and

wherein the control system operates at least partly autonomously.

2. The skid according to claim 1 , further comprising a pump unit for pressurizing fluid fed from the self-contained fluid system.

3. The skid according to claim 1 , further comprising an additional communication system.

4. The skid according to claim 3 , wherein the skid comprises means for switching functionality between the first wireless communication unit and the additional communication system.

5. The skid according to claim 3 , wherein the additional communication system comprises a third wireless communication unit arranged on a Remotely Operated Vehicle (ROV), and wherein the first wireless communication unit on the skid communicates with the third wireless communication unit on the ROV.

6. The skid according to claim 3 , wherein the additional communication system is arranged on an ROV which is docked to the skid.

7. The skid according to claim 3 , wherein the additional communication system comprises a communication line which is connected between the skid and an ROV.

8. The skid according to claim 3 , wherein the additional communication system is a connection to a preinstalled communication line located at the subsea location at or close to the subsea component.

9. A method of performing installation and/or workover operation(s) on a subsea component at a subsea location using an installation workover control system (IWOCS) skid, the skid comprising a first wireless communication unit for communication with a second wireless communication unit at topside installation, each of the first and second wireless communication units comprising a respective acoustic transponder, a control system configured for data storage and/or data filtering and for transferring the filtered data to the first wireless communication unit and receiving data from the first wireless communication unit, a self-contained fluid system comprising a fluid supply tank, the fluid system being connectable to a fluid connection on the subsea component so as to provide fluid to the subsea component, and an electric power source for supplying electric power to the first communication unit and the control system, the method comprising the steps of:

deploying the skid to a location subsea;

connecting the fluid system to the subsea component; and

performing the installation and/or workover operations on the subsea component utilizing the fluid system;

wherein the control system is configured for partly autonomous operation and the method further comprises:

using the control system, receiving communication signals and in response thereto performing a required action in accordance with pre-programmed algorithms, wherein the required action comprises filtering said detected signals and communicating the filtered signals to the topside installation.

10. The method according to claim 9 , further comprising controlling the skid from the topside installation via communication between the acoustic transponder of the second wireless communication unit and the acoustic transponder of the first wireless communication unit.

11. The method according to claim 10 , further comprising connecting an additional communication system and/or an additional power supply to the skid.

12. The method according to claim 11 , wherein the step of connecting an additional communication system to the skid comprises:

deploying an ROV subsea, wherein the ROV comprises a third wireless communication unit; and

communicating with the topside installation via the third wireless communication unit on the ROV and the first wireless communication unit on the skid.

13. The method according to claim 11 , wherein the step of connecting the additional communication system and/or the additional power supply to the skid comprises docking an ROV to the skid.

14. The method according to claim 11 , wherein the step of connecting the additional communication system and/or the additional power supply to the skid comprises connecting an electrical line between an ROV and the skid.

15. The method according to claim 11 , wherein after the skid has been deployed and installed at the subsea location, the step of connecting an additional communication system to the skid comprises connecting the skid to a preinstalled communication and power supply line at a subsea location at or close to the subsea location of the skid.

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 Mar 9, 2022
From: JONSJORD, OLE VIDAR; HALSET, KJETIL; SAUGERUD, STEINAR
To: FMC KONGSBERG SUBSEA AS
Reel/Frame 059357/0659 →
Priority Claims (1)
NO 20191082 · Sep 9, 2019 · national
Continuity (1)
Related Publication 20220389794A1 · Dec 8, 2022
Cited By (1)
US 12,560,042