IP Library Granted Patent US 12710556
Granted Patent B2
US 12710556 · App. 18/080,958 · Granted Aug 18, 2026

Detecting near-surface structures

Inventors: Ali Aldawood (Safwa, SA); Mohammed Almarzoug (Dammam, SA)
Assignee: Saudi Arabian Oil Company
G01V1/288G01V1/226G01V1/307G01V2210/67
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Quick Facts
Patent No.
US 12710556
App. No.
18/080,958
Granted
Aug 18, 2026
Kind
B2
Abstract

Example methods and systems for near-surface characterization through passive monitoring of rig-generated noise are disclosed. One example method includes positioning a distributed acoustic sensing (DAS) cable in a spiral configuration layout around a drilling rig, where the drilling rig includes one or more pieces of drilling rig equipment, and the DAS cable includes a fiber-optic cable. The DAS cable is interrogated using multiple distributed fiber-optic sensing (DFOS) laser pulses during a drilling operation of the drilling rig. Multiple backscattered laser pulses are received from the DAS cable after the DAS cable is interrogated using the multiple DFOS laser pulses. A respective location of each of one or more anomalies in sub-terrain around the drilling rig is determined based on the multiple backscattered laser pulses.

Claims (55)

1 . A method, comprising:

positioning a distributed acoustic sensing (DAS) cable in a spiral configuration layout around a drilling rig, wherein the drilling rig comprises one or more pieces of drilling rig equipment, and the DAS cable comprises a fiber-optic cable;

interrogating, using a plurality of distributed fiber-optic sensing (DFOS) laser pulses, the DAS cable during a drilling operation of the drilling rig;

receiving a plurality of backscattered laser pulses from the DAS cable after the DAS cable is interrogated using the plurality of DFOS laser pulses; and

determining, based on the plurality of backscattered laser pulses, a respective location of each of one or more anomalies in sub-terrain around the drilling rig, the determining comprising:

determining, based on the plurality of backscattered laser pulses, one or more gathers of seismic traces; and

determining, based on the one or more gathers of seismic traces and using frequency-wavenumber (F-K) analysis, the respective location of each of the one or more anomalies.

2 . The method of claim 1 , wherein the method further comprises:

constructing, based on the one or more gathers, a one-dimensional (1D) velocity profile of the sub-terrain around the drilling rig.

3 . The method of claim 2 , wherein constructing the 1D velocity profile comprises obtaining a dispersion curve from one of the one or more gathers using multichannel analysis of surface waves (MASW).

4 . The method of claim 1 , wherein determining the one or more gathers comprises decoding the one or more gathers using a pilot trace from a top-drive sensor at the drilling rig, and wherein the pilot trace comprises a signal representing characteristics of vibration of the one or more pieces of drilling rig equipment during the drilling operation.

5 . The method of claim 1 , wherein the respective location comprises a respective azimuth and offset of each of the one or more anomalies, and the respective offset is with respect to the drilling rig.

6 . The method of claim 1 , wherein the one or more pieces of drilling rig equipment comprise at least one of a generator, a mud pump, or a shale shaker.

7 . The method of claim 1 , wherein interrogating the DAS cable comprises interrogating the DAS cable using an interrogator connected to the DAS cable, and wherein the plurality of DFOS laser pulses are from the interrogator.

8 . The method of claim 1 , wherein the one or more anomalies in the sub-terrain around the drilling rig comprise at least one of karst, cavity, or fault.

9 . The method of claim 1 , wherein positioning the DAS cable in the spiral configuration layout around the drilling rig comprises positioning the DAS cable in the spiral configuration layout around the drilling rig and in a star shape configuration layout, and the star shape configuration layout comprises a plurality of radial paths that intersect at the drilling rig.

10 . A system, comprising:

a distributed acoustic sensing (DAS) cable positioned in a spiral configuration layout around a drilling rig, wherein the drilling rig comprises one or more pieces of drilling rig equipment, and the DAS cable comprises a fiber-optic cable; and

a control system communicably coupled to the DAS cable and configured to perform operations comprising:

interrogating, using a plurality of distributed fiber-optic sensing (DFOS) laser pulses, the DAS cable during a drilling operation of the drilling rig;

receiving a plurality of backscattered laser pulses from the DAS cable after the DAS cable is interrogated using the plurality of DFOS laser pulses; and

determining, based on the plurality of backscattered laser pulses, a respective location of each of one or more anomalies in sub-terrain around the drilling rig, the determining comprising:

determining, based on the plurality of backscattered laser pulses, one or more gathers of seismic traces; and

determining, based on the one or more gathers of seismic traces and using frequency-wavenumber (F-K) analysis, the respective location of each of the one or more anomalies.

11 . The system of claim 10 , wherein the operations further comprise:

constructing, based on the one or more gathers, a one-dimensional (1D) velocity profile of the sub-terrain around the drilling rig.

12 . The system of claim 11 , wherein constructing the 1D velocity profile comprises obtaining a dispersion curve from one of the one or more gathers using multichannel analysis of surface waves (MASW).

13 . The system of claim 10 , wherein determining the one or more gathers comprises decoding the one or more gathers using a pilot trace from a top-drive sensor at the drilling rig, and wherein the pilot trace comprises a signal representing characteristics of vibration of the one or more pieces of drilling rig equipment during the drilling operation.

14 . The system of claim 10 , wherein the respective location comprises a respective azimuth and offset of each of the one or more anomalies, and the respective offset is with respect to the drilling rig.

15 . The system of claim 10 , wherein the one or more pieces of drilling rig equipment comprise at least one of a generator, a mud pump, or a shale shaker.

16 . The system of claim 10 , wherein interrogating the DAS cable comprises interrogating the DAS cable using an interrogator connected to the DAS cable, and wherein the plurality of DFOS laser pulses are from the interrogator.

17 . The system of claim 10 , wherein the one or more anomalies in the sub-terrain around the drilling rig comprise at least one of karst, cavity, or fault.

18 . The system of claim 10 , wherein the DAS cable is positioned in the spiral configuration layout around the drilling rig and in a star shape configuration layout, and the star shape configuration layout comprises a plurality of radial paths that intersect at the drilling rig.

19 . A method, comprising:

positioning a distributed acoustic sensing (DAS) cable in a spiral configuration layout around a drilling rig, wherein the drilling rig comprises one or more pieces of drilling rig equipment, and the DAS cable comprises a fiber-optic cable;

interrogating, using a plurality of distributed fiber-optic sensing (DFOS) laser pulses, the DAS cable during a drilling operation of the drilling rig;

receiving a plurality of backscattered laser pulses from the DAS cable after the DAS cable is interrogated using the plurality of DFOS laser pulses; and

determining, based on the plurality of backscattered laser pulses, a respective location of each of one or more anomalies in sub-terrain around the drilling rig, the respective location comprising a respective azimuth and offset of each of the one or more anomalies, and the respective offset is with respect to the drilling rig.

20 . A method, comprising:

positioning a distributed acoustic sensing (DAS) cable in a spiral configuration layout around a drilling rig, the positioning comprising positioning the DAS cable in the spiral configuration layout around the drilling rig and in a star shape configuration layout, and the star shape configuration layout comprises a plurality of radial paths that intersect at the drilling rig, wherein the drilling rig comprises one or more pieces of drilling rig equipment, and the DAS cable comprises a fiber-optic cable;

interrogating, using a plurality of distributed fiber-optic sensing (DFOS) laser pulses, the DAS cable during a drilling operation of the drilling rig;

receiving a plurality of backscattered laser pulses from the DAS cable after the DAS cable is interrogated using the plurality of DFOS laser pulses; and

determining, based on the plurality of backscattered laser pulses, a respective location of each of one or more anomalies in sub-terrain around the drilling rig.

21 . A system, comprising:

a distributed acoustic sensing (DAS) cable positioned in a spiral configuration layout around a drilling rig, wherein the drilling rig comprises one or more pieces of drilling rig equipment, and the DAS cable comprises a fiber-optic cable; and

a control system communicably coupled to the DAS cable and configured to perform operations comprising:

interrogating, using a plurality of distributed fiber-optic sensing (DFOS) laser pulses, the DAS cable during a drilling operation of the drilling rig;

receiving a plurality of backscattered laser pulses from the DAS cable after the DAS cable is interrogated using the plurality of DFOS laser pulses; and

determining, based on the plurality of backscattered laser pulses, a respective location of each of one or more anomalies in sub-terrain around the drilling rig, the respective location comprising a respective azimuth and offset of each of the one or more anomalies, and the respective offset is with respect to the drilling rig.

22 . A system, comprising:

a distributed acoustic sensing (DAS) cable positioned in a spiral configuration layout around a drilling rig, the DAS cable being positioned in the spiral configuration layout around the drilling rig and in a star shape configuration layout, and the star shape configuration layout comprises a plurality of radial paths that intersect at the drilling rig, wherein the drilling rig comprises one or more pieces of drilling rig equipment, and the DAS cable comprises a fiber-optic cable; and

a control system communicably coupled to the DAS cable and configured to perform operations comprising:

interrogating, using a plurality of distributed fiber-optic sensing (DFOS) laser pulses, the DAS cable during a drilling operation of the drilling rig;

receiving a plurality of backscattered laser pulses from the DAS cable after the DAS cable is interrogated using the plurality of DFOS laser pulses; and

determining, based on the plurality of backscattered laser pulses, a respective location of each of one or more anomalies in sub-terrain around the drilling rig.