IP Library Patent Application 14174123
Patent Application
App. No. 14/174,123

JET-PUMP-BASED AUTONOMOUS UNDERWATER VEHICLE AND METHOD FOR COUPLING TO OCEAN BOTTOM DURING MARINE SEISMIC SURVEY

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Quick Facts
Patent No.
US None
App. No.
14/174,123
Abstract

An autonomous underwater vehicle (AUV) for recording seismic signals during a marine seismic survey. The AUV includes a body having a head part and a tail part); a propulsion system for guiding the AUV to a final target on the ocean bottom; a jet pump group connected to the body and including plural jet pumps; a control device connected to the jet pumps; and a seismic sensor configured to record seismic signals. The jet pump group controls a steering of the AUV by generating water jets according to a given sequence.

Claims (50)

1 . An autonomous underwater vehicle (AUV) for recording seismic signals during a marine seismic survey, the AUV comprising:

a body having a head part and a tail part;

a propulsion system for guiding the AUV to a final target on the ocean bottom;

a jet pump group connected to the body and including plural jet pumps;

a control device connected to the jet pumps; and

a seismic sensor configured to record seismic signals,

wherein the jet pump group controls a steering of the AUV by generating water jets according to a given sequence.

2 . The AUV of claim 1 , wherein the jet pump group comprises:

a jet pump block configured to accommodate jet pumps, their turbines, and to provide water ingress to the turbines along an axis of the pumps, and to guide a flow of the pumps.

3 . The AUV of claim 2 , wherein each jet pump comprises:

a motor;

a turbine located within the jet pump block; and

a shaft connecting the motor to the turbine.

4 . The AUV of claim 3 , wherein the motor is located inside a dry part of the body of the AUV.

5 . The AUV of claim 4 , further comprising:

a sealing plate located between the jet pump block and the body of the AUV for preventing water entering the dry part of the AUV; and

a sealing element located between sealing plate and body.

6 . The AUV of claim 3 , wherein the motor is located within a dry part formed between a pump carter and a sealing plate, but outside a dry part of the AUV.

7 . The AUV of claim 6 , wherein the pump carter seals a hole formed in the body of the AUV and the pump carter extends into the dry part of the AUV.

8 . The AUV of claim 7 , further comprising:

a sealing plate located between the jet pump block and the pump carter and configured to prevent water entering in the dry part of the jet pump group.

9 . The AUV of claim 7 , further comprising:

a sealing plate located inside the dry part and configured to protect the motor from being contacted by water.

10 . The AUV of claim 7 , wherein the pump carter is attached to an inside of the body of the AUV and the jet pump block is attached to an outside of the body.

11 . The AUV of claim 7 , wherein the pump carter is attached to an outside of the body of the AUV and the jet pump block is also attached to the outside of the body.

12 . The AUV of claim 1 , wherein the plural jet pumps are distributed symmetrically around a longitudinal axis of the AUV.

13 . The AUV of claim 1 , wherein the jet pump group is removably attached to the head part of the body and another jet pump group is removably attached to the tail part of the of the body.

14 . The AUV of claim 13 , wherein each jet pump group has three jet pumps independently controlled.

15 . A seismic survey system for collecting seismic data, the system comprising:

plural autonomous underwater vehicle (AUV);

a deployment vessel configured to deploy the plural AUVs in water; and

a seismic source configured to generate seismic waves in the water,

wherein an AUV comprises,

a body having a head part and a tail part,

a propulsion system for guiding the AUV to a final target on the ocean bottom,

a jet pump group connected to the body and including plural jet pumps,

a control device connected to the jet pumps, and

a seismic sensor configured to record seismic signals,

wherein the jet pump group controls the steering of the AUV by generating water jets according to a given sequence.

16 . A method for recording seismic signals with an autonomous underwater vehicle (AUV), the method comprising:

deploying the AUV in water, the AUV having a body with a head part and a tail part;

driving the AUV with a propulsion system to a final target on the ocean bottom;

steering the AUV during its journey to the final target with a jet pump group connected to the body and including plural jet pumps; and

recording with a seismic sensor the seismic signals,

wherein the jet pump group steers the AUV by generating water jets according to a given sequence.

17 . The method of claim 16 , wherein the jet pump group is removably attached to the head of the body and another jet pump group is removably attached to the tail of the of the body.

18 . The method of claim 17 , wherein each jet pump group has three or more jet pumps that are independently controlled.

19 . The method of claim 17 , further comprising:

replacing the jet pump group with a replacement jet pump group.

20 . The method of claim 16 , wherein the jet pump group is configured to steer the AUV during its journey, to anchor the AUV to the ocean bottom, and to detach the AUV from the ocean bottom by executing corresponding sequences of activating the plural jet pumps.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2023
From: SEABED GEOSOLUTIONS B.V.
To: PXGEO UK LIMITED
Reel/Frame 065462/0086 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2015
From: CGG SERVICES S.A.
To: SEABED GEOSOLUTIONS B.V.
Reel/Frame 036424/0436 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2014
From: BRIZARD, THIERRY
To: CGG SERVICES SA
Reel/Frame 032281/0146 →