IP Library Granted Patent US 8,561,754
Granted Patent B2
US 8,561,754 · App. 13/606,717 · Granted Oct 22, 2013

Seismic source with positive reflection plate and method

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,561,754
App. No.
13/606,717
Granted
Oct 22, 2013
Kind
B2
Abstract

A marine source sub-array and method for generating a pressure wave in a body of water. The marine source sub-array includes a float configured to float in the body of water; base plates connected to the float through cables; plural individual source elements connected to the base plates and configured to generate pressure waves underwater; and a coverage plate located between the plural individual source elements and the float. The coverage plate has a surface area larger than a surface area of the float.

Claims (40)

1. A marine source sub-array for generating a pressure wave in a body of water, the marine source sub-array comprising:

a float configured to float in the body of water;

base plates connected to the float through cables;

plural individual source elements connected to the base plates and configured to generate pressure waves underwater; and

a coverage plate located between the plural individual source elements and the float,

wherein the coverage plate has a surface area larger than a surface area of the float.

2. The source sub-array of claim 1 , wherein a reflection coefficient of the coverage plate for pressure waves coming from the body of water is zero or positive.

3. The source sub-array of claim 1 , wherein the surface area of the coverage plate is larger than 100 square meters when a length of the sub-array is around 15 m.

4. The source sub-array of claim 1 , wherein the coverage plate is made of plural elements connected to each other by links.

5. The source sub-array of claim 4 , wherein the plural elements are foldable.

6. The source sub-array of claim 1 , wherein the coverage plate is located above the base plates.

7. The source sub-array of claim 1 , wherein the coverage plate includes the base plates.

8. The source sub-array of claim 1 , wherein sound waves upwardly generated by the plural individual source elements are partially reflected from the float and partially reflected from the coverage plate.

9. A marine source sub-array for generating a pressure wave in a body of water, the marine source sub-array comprising:

a float configured to float in the body of water;

base plates connected to the float through cables; and

plural individual source elements connected to the base plates and configured to generate pressure waves underwater,

wherein a reflection coefficient of the float for pressure waves coming from the body of water is zero or positive.

10. The source sub-array of claim 9 , wherein a surface area of the float is larger than 100 square meters when a length of the sub-array is around 15 m.

11. The source sub-array of claim 9 , wherein the float is made of plural elements connected to each other by links.

12. The source sub-array of claim 11 , wherein the plural elements are foldable.

13. A marine source array for generating a pressure wave in a body of water, the marine source array comprising:

three source sub-array configured to be towed by a vessel, at least one source sub-array including,

a float configured to float in the body of water,

base plates connected to the float through cables,

plural individual source elements connected to the base plates and configured to generate sound waves underwater, and

a coverage plate located between the plural individual source elements and the float,

wherein the coverage plate has a surface area larger than a surface area of the float.

14. The source array of claim 13 , wherein a reflection coefficient of the coverage plate for sound waves coming from the body of water is zero or positive.

15. The source array of claim 13 , wherein the surface area of the coverage plate is larger than 100 square meters when a length of the sub-arrays is around 15 m.

16. The source array of claim 13 , wherein the coverage plate is made of plural elements connected to each other by links.

17. The source array of claim 16 , wherein the plural elements are foldable.

18. A method for performing a seismic survey in a body of water, the method comprising:

towing a source array that includes at least one sub-array;

firing individual source elements of the sub-array such that sound waves upwardly generated by the at least one sub-array are partially reflected from a coverage plate provided above the at least one sub-array; and

reflecting the sound waves with positive or zero polarity at the coverage plate.

19. The method of claim 18 , further comprising:

locating the coverage plate between individual source elements and a float of the at least one sub-array.

20. The method of claim 18 , further comprising:

selecting a material of the coverage plate so that the coverage plate floats in water.

Assignments (4)
CHANGE OF NAME Recorded Feb 26, 2021
From: CGG SERVICES SAS
To: SERCEL SAS
Reel/Frame 055427/0558 →
CHANGE OF NAME Recorded Feb 8, 2021
From: CGG SERVICES SA
To: CGG SERVICES SAS
Reel/Frame 055258/0467 →
CHANGE OF NAME Recorded Jan 28, 2021
From: CGGVERITAS SERVICES SA
To: CGG SERVICES SA
Reel/Frame 055160/0080 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2012
From: NI, YUAN
To: CGGVERITAS SERVICES SA
Reel/Frame 028917/0381 →