US2018314398A1PendingUtilityA1
Systems and Methods For Monitoring Operations Data For Multiple Wells In Real-Time
Est. expiryMar 10, 2031(~4.6 yrs left)· nominal 20-yr term from priority
G06F 3/0484E21B 44/00
50
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Claims
Abstract
Systems and methods for simultaneously monitoring operations data for multiple wells in real-time using a graphical user interface.
Claims
exact text as granted — not AI-modified1 - 20 . (canceled)
21 . A computer-implemented method, comprising:
defining a well issue for a well, the well issue being defined by at least one component, and the at least one component being associated with a dimension; accessing an engineering model associated with the well, the engineering model representing an anticipated operation parameter of the at least one component; constructing the well; monitoring the construction of the well by receiving operations data substantially simultaneously with the construction of the well; comparing the engineering model and the operations data; determining, by a processor, a status of the well issue based on a result of the comparison, the status representing a difference between the anticipated operation parameter of the at least one component and the operations data; displaying, by the processor, the status of the well issue using a graphical representation of an object, the status being represented by a position of a visual indicator within the object, and the position of the visual indicator in relation to the dimension of the at least one component representing a magnitude of the status; and automatically modifying the construction of the well based on the status of the well issue.
22 . The computer-implemented method of claim 21 , wherein the position of the visual indicator in relation to two or more dimensions represents the magnitude of the status of the well issue.
23 . The computer-implemented method of claim 22 , wherein the object is a square base of a pyramid, and wherein the position of the visual indicator in relation to an edge of the square base represents the status of the well issue.
24 . The computer-implemented method of claim 21 , wherein the graphical representation of the object further comprises a plurality of walls, wherein the plurality of walls forms a three-dimensional object.
25 . The computer-implemented method of claim 24 , wherein each wall of the plurality of walls corresponds to a well issue.
26 . The computer-implemented method claim 21 , wherein the well issue corresponds to a depth of the well, and wherein the at least one component includes a resistivity component and a gamma-ray component of the well.
27 . The computer-implemented method of claim 21 , wherein modifying the construction of the well corresponds to stopping the construction of the well.
28 . A system, comprising:
one or more data processors; and a non-transitory computer-readable storage medium containing instructions which, when executed on the one or more data processors, cause the one or more data processors to perform operations including:
defining a well issue for a well, the well issue being defined by at least one component, and the at least one component being associated with a dimension;
accessing an engineering model associated with the well, the engineering model representing an anticipated operation parameter of the at least one component;
constructing the well;
monitoring the construction of the well by receiving operations data substantially simultaneously with the construction of the well;
comparing the engineering model and the operations data;
determining, by a processor, a status of the well issue based on a result of the comparison, the status representing a difference between the anticipated operation parameter of the at least one component and the operations data;
displaying, by the processor, the status of the well issue using a graphical representation of an object, the status being represented by a position of a visual indicator within the object, and the position of the visual indicator in relation to the dimension of the at least one component representing a magnitude of the status; and
automatically modifying the construction of the well based on the status of the well issue.
29 . The system of claim 28 , wherein the position of the visual indicator in relation to two or more dimensions represents the magnitude of the status of the well issue.
30 . The system of claim 29 , wherein the object is a square base of a pyramid, and wherein the position of the visual indicator in relation to an edge of the square base represents the status of the well issue.
31 . The system of claim 28 , wherein the graphical representation of the object further comprises a plurality of walls, wherein the plurality of walls forms a three-dimensional object.
32 . The system of claim 31 , wherein each wall of the plurality of walls corresponds to a well issue.
33 . The system of claim 28 , wherein the well issue corresponds to a depth of the well, and wherein the at least one component includes a resistivity component and a gamma-ray component of the well.
34 . The system of claim 28 , wherein modifying the construction of the well corresponds to stopping the construction of the well.
35 . A computer-program product tangibly embodied in a non-transitory machine-readable storage medium, including instructions configured to cause a data processing apparatus to perform operations including:
defining a well issue for a well, the well issue being defined by at least one component, and the at least one component being associated with a dimension; accessing an engineering model associated with the well, the engineering model representing an anticipated operation parameter of the at least one component; constructing the well; monitoring the construction of the well by receiving operations data substantially simultaneously with the construction of the well; comparing the engineering model and the operations data; determining, by a processor, a status of the well issue based on a result of the comparison, the status representing a difference between the anticipated operation parameter of the at least one component and the operations data; displaying, by the processor, the status of the well issue using a graphical representation of an object, the status being represented by a position of a visual indicator within the object, and the position of the visual indicator in relation to the dimension of the at least one component representing a magnitude of the status; and automatically modifying the construction of the well based on the status of the well issue.
36 . The computer-program product of claim 35 , wherein the position of the visual indicator in relation to two or more dimensions represents the magnitude of the status of the well issue.
37 . The computer-program product of claim 36 , wherein the object is a square base of a pyramid, and wherein the position of the visual indicator in relation to an edge of the square base represents the status of the well issue.
38 . The computer-program product of claim 35 , wherein the graphical representation of the object further comprises a plurality of walls, wherein the plurality of walls forms a three-dimensional object.
39 . The computer-program product of claim 38 , wherein each wall of the plurality of walls corresponds to a well issue.
40 . The computer-program product of claim 35 , wherein the well issue corresponds to a depth of the well, and wherein the at least one component includes a resistivity component and a gamma-ray component of the well.Join the waitlist — get patent alerts
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