IP Library Granted Patent US 10,430,998
Granted Patent B2
US 10,430,998 · App. 14/431,763 · Granted Oct 1, 2019

Converting reserve estimates in a reservoir model to a standard format for dynamic comparison

Inventors: Michael David Ewing (Castle Rock, CO); Sammi Igarashi (Lakewood, CO)
Assignee: LANDMARK GRAPHICS CORPORATION
G06T17/05E21B47/04E21B49/08G01V99/005G06T11/203G06T11/206G06T11/60G06T17/10G06T17/20G06T19/20G06K9/00214
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Quick Facts
Patent No.
US 10,430,998
App. No.
14/431,763
Granted
Oct 1, 2019
Kind
B2
Abstract

Systems and methods for converting reserve estimates in a reservoir model to a standard format for dynamic comparison by storing them with a sealed triangulated mesh and a thickness grid as a printable string in one or more Processing History fields.

Claims (30)

1. A method for converting reserve estimates with only numeric values into a reservoir model in a standard format capable of dynamic visual comparison with time dependent reserve estimates, which method comprises:

serializing the reserve estimates in numeric value form, a sealed triangulated mesh and a thickness grid, which each represents a reservoir model, into a byte array using a computer processor;

compressing the byte array;

converting the compressed byte array into a printable string using UTF-8/ASCII characters;

storing the printable string in Processing History fields with a link to a three dimensional (3D) modeling engine and predefined identification properties describing the reserve estimates;

displaying on a display a three dimensional (3D) visual color representation of gross rock volume (GRV) and reserve at a predetermined time,

dynamically displaying another three dimensional (3D) visual color representation representing the reservoir model at another predetermined time generated by the 3D modeling engine;

comparing the three dimensional (3D) visual color representation representing the reservoir model at the predetermined time and the another three dimensional (3D) visual color representation representing the reservoir model at another predetermined time; and

improving the reserve estimate in the reservoir model based on the comparison between the three dimensional (3D) visual color representation and the another three dimensional (3D) visual color representation.

2. The method of claim 1 , wherein the predefined identification properties include a time stamp for the creation and each update of the reserve estimates, and a last update user identification.

3. A non-transitory program carrier device tangibly carrying computer-executable instructions for converting reserve estimates with only numeric values into a reservoir model in a standard format capable of dynamic visual comparison with time dependent reserve estimates, the instructions being executable to implement:

serializing the reserve estimates in numeric value form, a sealed triangulated mesh and a thickness grid, which each represents a reservoir model, into a byte array;

compressing the byte array;

converting the compressed byte array into a printable string using UTF-8/ASCII characters;

storing the printable string in Processing History fields with a link to a three dimensional (3D) modeling engine and predefined identification properties describing the reserve estimates;

displaying on a display a three dimensional (3D) visual color representation of gross rock volume (GRV) and reserve at a predetermined time,

dynamically displaying another three dimensional (3D) visual color representation representing the reservoir model at another predetermined time generated by the 3D modeling engine;

comparing the three dimensional (3D) visual color representation representing the reservoir model at the predetermined time and the another three dimensional (3D) visual color representation representing the reservoir model at another predetermined time; and

improving the reserve estimate in the reservoir model based on the comparison between the three dimensional (3D) visual color representation and the another three dimensional (3D) visual color representation.

4. The program carrier device of claim 3 , wherein the predefined identification properties include a time stamp for the creation and each update of the reserve estimates, and a last update user identification.

5. A non-transitory program carrier device tangibly carrying computer-executable instructions for converting reserve estimates with only numeric values into a three dimensional (3D) visual reservoir model capable of dynamic visual comparison with other time dependent three dimensional (3D) visual reservoir models, the instructions being executable to implement:

serializing the reserve estimates, a sealed triangulated mesh and a thickness grid into a byte array;

compressing the byte array;

converting the compressed byte array into a printable string using UTF-8/ASCII characters;

storing the printable string in Processing History fields with a link to a three dimensional (3D) modeling engine and predefined identification properties describing the reserve estimates;

displaying on a display a three dimensional (3D) visual color representation of gross rock volume (GRV) and reserve at a predetermined time generated by the 3D modeling engine,

dynamically displaying another three dimensional (3D) visual color representation representing the reservoir model at another predetermined time;

comparing the three dimensional (3D) visual color representation representing the reservoir model at the predetermined time and the another three dimensional (3D) visual color representation representing the reservoir model at another predetermined time; and

improving the reserve estimate in the reservoir model based on the comparison between the three dimensional (3D) visual color representation and the another three dimensional (3D) visual color representation.

6. The program carrier device of claim 5 , wherein the predefined identification properties include a time stamp for the creation and each update of the reserve estimates, and a last update user identification.

Continuity (2)
Provisional Application 61866901 · Aug 16, 2013
Related Publication 20150253460A1 · Sep 10, 2015