IP Library › Granted Patent US 12,618,996
Granted Patent B2
US 12,618,996 · App. 18/626,870 · Granted May 5, 2026

Real-time characterization of fluid front in subsurface formation and inflow management

Inventors: Ryan W. McChesney (Carrollton, TX); Karl Ku (Houston, TX); Rex Dael Navarro (Singapore, SG); Daniel Thomas-Possee (Abingdon, GB)
Assignee: Halliburton Energy Services, Inc.
G01V1/50E21B49/00G01V2210/1299G01V2210/16G01V2210/646
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Quick Facts
Patent No.
US 12,618,996
App. No.
18/626,870
Filed
Apr 4, 2024
Granted
May 5, 2026
Kind
B2
Art Unit
3672
USPC
166/250.1
Abstract

Systems, methods, and apparatus, including computer programs encoded on computer-readable media, for performing a seismic survey and characterization of a subsurface formation. Seismic sources coupled to a wellbore of a well system may emit source seismic signals. Seismic sensors coupled to the wellbore may detect seismic signals associated with the plurality of source seismic signals. The detected seismic signals may be reflected seismic signals, refracted seismic signals, or both. A seismic characterization of the subsurface formation may be performed based on analysis of the detected seismic signals and the plurality of source seismic signals. A change in a fluid front of the subsurface formation may be detected based on the seismic characterization of the subsurface formation. Inflow control devices that control fluid flow in a plurality of zones of the wellbore may be controlled based on the seismic characterization and a detected change in the fluid front.

Claims (57)

1 . A method for performing a seismic survey of a subsurface formation, comprising:

emitting a plurality of source seismic signals from a plurality of seismic sources coupled to a wellbore of a well system;

detecting, by a plurality of seismic sensors coupled to the wellbore of the well system, seismic signals associated with the plurality of source seismic signals, the detected seismic signals being at least one of reflected seismic signals or refracted seismic signals;

performing a seismic characterization of the subsurface formation based on analysis of the detected seismic signals and the plurality of source seismic signals;

determining a change in a fluid front of the subsurface formation is greater than a threshold based on the seismic characterization of the subsurface formation; and

controlling inflow control devices that control fluid flow in a plurality of zones of the wellbore in response to determining the change in the fluid front is greater than the threshold.

2 . The method of claim 1 , further comprising:

determining whether to perform one or more well system operations on the wellbore based on the seismic characterization of the subsurface formation.

3 . The method of claim 1 , wherein performing the seismic characterization of the subsurface formation based on the analysis of the detected seismic signals and the plurality of source seismic signals includes:

detecting the change in the fluid front of the subsurface formation based on the seismic characterization of the subsurface formation.

4 . The method of claim 3 , wherein detecting the change in the fluid front of the subsurface formation based on the seismic characterization of the subsurface formation includes:

performing a baseline seismic characterization of the subsurface formation;

performing one or more additional seismic characterizations of the subsurface formation; and

detecting the change in the fluid front of the subsurface formation based on a comparison of the baseline seismic characterization and the one or more additional seismic characterizations.

5 . The method of claim 1 , wherein performing the seismic characterization of the subsurface formation based on the analysis of the detected seismic signals and the plurality of source seismic signals includes:

generating a baseline seismic image of the subsurface formation including the fluid front of the subsurface formation based on a baseline seismic characterization of the subsurface formation;

generating one or more additional seismic images of the subsurface formation including the fluid front of the subsurface formation based on one or more additional seismic characterizations of the subsurface formation; and

detecting the change in the fluid front of the subsurface formation based on a comparison of the baseline seismic image and the one or more additional seismic images of the subsurface formation.

6 . The method of claim 1 , wherein controlling the inflow control devices that control the fluid flow in the plurality of zones of the wellbore includes controlling the inflow control devices that control the fluid flow in the plurality of zones of the wellbore prior to the fluid front making contact with the wellbore.

7 . The method of claim 1 , further comprising:

determining that the change in the fluid front of the subsurface formation is a fluid front change that affects a first zone of the plurality of zones of the wellbore; and

controlling the inflow control devices that control the fluid flow in the first zone and in one or more additional zones of the wellbore in response to determining the change in the fluid front is greater than the threshold.

8 . The method of claim 7 , wherein:

controlling the inflow control devices that control the fluid flow in the first zone includes one of turning off the fluid flow, reducing the fluid flow, or throttling the fluid flow in the first zone prior to the fluid front of the subsurface formation contacting the wellbore, and

controlling the inflow control devices that control the fluid flow in the one or more additional zones includes increasing the fluid flow in the one or more additional zones prior to the fluid front of the subsurface formation contacting the wellbore.

9 . A well system for performing a seismic survey of a subsurface formation, comprising:

a plurality of seismic sources to be coupled to a wellbore of the well system, the plurality of seismic sources configured to emit a plurality of source seismic signals;

a plurality of seismic sensors to be coupled to the wellbore of the well system, the plurality of seismic sensors configured to detect seismic signals associated with the plurality of source seismic signals, the detected seismic signals being at least one of reflected seismic signals or refracted seismic signals; and

a data processing system configured to;

perform a seismic characterization of the subsurface formation based on analysis of the detected seismic signals and the plurality of source seismic signals,

determine a change in a fluid front of the subsurface formation is greater than a threshold based on the seismic characterization of the subsurface formation, and

control inflow control devices that control fluid flow in a plurality of zones of the wellbore in response to determining the change in the fluid front is greater than the threshold.

10 . The well system of claim 9 , wherein the data processing system is further configured to:

determine whether to perform one or more well system operations on the wellbore based on the seismic characterization of the subsurface formation.

11 . The well system of claim 9 , wherein the data processing system configured to perform the seismic characterization of the subsurface formation based on the analysis of the detected seismic signals and the plurality of source seismic signals includes the data processing system configured to:

detect the change in the fluid front of the subsurface formation based on the seismic characterization of the subsurface formation.

12 . The well system of claim 11 , wherein the data processing system configured to detect the change in the fluid front of the subsurface formation based on the seismic characterization of the subsurface formation includes the data processing system configured to:

perform a baseline seismic characterization of the subsurface formation;

perform one or more additional seismic characterizations of the subsurface formation; and

detect the change in the fluid front of the subsurface formation based on a comparison of the baseline seismic characterization and the one or more additional seismic characterizations.

13 . The well system of claim 9 , wherein the data processing system configured to perform the seismic characterization of the subsurface formation based on the analysis of the detected seismic signals and the plurality of source seismic signals includes the data processing system configured to:

generate a baseline seismic image of the subsurface formation including the fluid front of the subsurface formation based on a baseline seismic characterization of the subsurface formation;

generate one or more additional seismic images of the subsurface formation including the fluid front of the subsurface formation based on one or more additional seismic characterizations of the subsurface formation; and

detect the change in the fluid front of the subsurface formation based on a comparison of the baseline seismic image and the one or more additional seismic images of the subsurface formation.

14 . The well system of claim 9 , wherein the data processing system configured to control the inflow control devices that control the fluid flow in the plurality of zones of the wellbore includes the data processing system configured to control the inflow control devices that control the fluid flow in the plurality of zones of the wellbore prior to the fluid front making contact with the wellbore.

15 . The well system of claim 9 , wherein the data processing system is further configured to:

determine that the change in the fluid front of the subsurface formation is a fluid front change that affects a first zone of the plurality of zones of the wellbore; and

control the inflow control devices that control the fluid flow in the first zone and in one or more additional zones of the wellbore in response to determining the change in the fluid front is greater than the threshold.

16 . The well system of claim 9 , wherein the plurality of seismic sources and the plurality of seismic sensors are coupled downhole to a horizontal portion of the wellbore of the well system.

17 . A method for performing a seismic survey of a subsurface formation, comprising:

emitting a plurality of source seismic signals from a plurality of seismic sources coupled to a wellbore of a well system;

detecting, by a plurality of seismic sensors coupled to the wellbore of the well system, seismic signals associated with the plurality of source seismic signals, the detected seismic signals being at least one of reflected seismic signals or refracted seismic signals;

performing a seismic characterization of the subsurface formation based on analysis of the detected seismic signals and the plurality of source seismic signals;

detecting a change in a fluid front of the subsurface formation based on the seismic characterization of the subsurface formation;

determining that the change in the fluid front of the subsurface formation is a fluid front change that affects at least a first zone of the plurality of zones of the wellbore;

determining the change in the fluid front is greater than a threshold; and

controlling inflow control devices that control fluid flow in the first zone and in one or more additional zones of the wellbore in response to determining the change in the fluid front is greater than the threshold.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2024
From: MCCHESNEY, RYAN W.; KU, KARL; NAVARRO, REX DAEL; THOMAS-POSSEE, DANIEL
To: HALLIBURTON ENERGY SERVICES, INC.
Reel/Frame 067009/0559 →
Continuity (1)
Related Publication 20250314794A1 · Oct 9, 2025
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