IP Library Granted Patent US 11,776,667
Granted Patent B2
US 11,776,667 · App. 16/692,085 · Granted Oct 3, 2023

Composition tracking of mixed species in chemical processes

Inventors: Ashley Hull (Bryan, TX); Kevin Lunsford (Bryan, TX)
Assignee: Bryan Research & Engineering
G16C20/90G16C20/10G16C20/30G06F2111/10
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 11,776,667
App. No.
16/692,085
Granted
Oct 3, 2023
Kind
B2
Abstract

Systems and methods of chemical process simulation providing improved methods and systems for expressing the composition of a stream in a chemical process model in a manner that is not immediately indicative of the underlying composition, providing for improved accuracy of allocation of a process output stream to the appropriate source(s), avoiding duplication of components or other inaccurate component representations in relation to critical calculations, and improving the operation of a computer or other computing system for performing chemical process modeling and simulation. The systems or methods provide for three distinct layers of interaction, separating mixed species displayed to the user from individual species used in calculations, while providing transformation objects between dataset layers to provide for accurate modeling, calculation, and display.

Claims (37)

1. A system for modeling of chemical processes comprising:

(1) a computer system comprising a data processing unit, and having access to at least one data storage device; and

(2) computer code in said computer system, said computer code comprising:

(a) means for evaluating chemical process models; each process model comprising one or more unit operations, one or more input streams into each unit operation, and one or more output streams from each unit operation; each of the streams comprising chemical composition data; each of the unit operations comprising one or more calculations transforming data from at least one of the streams connected thereto and accordingly updating data of at least one of the streams connected thereto;

(b) at least three layers: an external layer, a middle layer, and an internal layer; the external layer comprises mixed species, individual species, or both, as determined by a user; the middle layer comprises individual species duplicated by source; and the internal layer comprises only unique individual species;

(c) transformation objects to convert between the three layers;

(d) component-sensitive calculation rules directing each unit operation, or portion thereof, to operate on either the middle layer or internal layer; and

(e) calculation efficiency rules directing each unit operation, or portion thereof, to operate on either the middle layer or internal layer.

2. The system of claim 1 wherein at least one of the input streams of (2)(a) is a mixed species stream representing at least one mixed specie, and there is included proportions data of the individual species comprising the at least one mixed specie.

3. The system of claim 1 adapted for use with proprietary mixed species, wherein the computer code further comprises visibility rules prohibiting unauthorized users from viewing the composition of proprietary mixed species, said rules including activating transformation objects when users view data from the middle layer or internal layer to present to the user only the external layer for proprietary mixed species.

4. The system of claim 1 , wherein the component-sensitive calculations rules comprise one or more rules directing thermodynamic calculations to be performed on the internal layer.

5. The system of claim 1 , wherein the unit operations comprise thermodynamic operations.

6. The system of claim 1 , wherein the unit operations comprise at least one entropy operations, and Gibbs free energy operations.

7. The system of claim 1 , wherein the unit operations further comprise allocation.

8. A method for improving the operation of at least one computer during chemical process modeling, the method comprising:

(a) evaluating a chemical process model; the process model comprising one or more unit operations, one or more input streams into each unit operation, and one or more output streams from each unit operation; each of the streams comprising chemical composition data; each of the unit operations comprising one or more calculations transforming data from at least one of the streams connected thereto and accordingly updating data of at least one of the streams connected thereto;

(b) maintaining stream composition data in at least three layers: an external layer, a middle layer, and an internal layer; the external layer comprises mixed species, individual species, or both, as determined by a user; the middle layer comprises individual species duplicated by source; and the internal layer comprises only unique individual species;

(c) applying component-sensitive calculation rules to direct each unit operation, or portion thereof, to operate on either the middle layer or internal layer;

(d) applying calculation efficiency rules directing each unit operation, or portion thereof, to operate on either the middle layer or internal layer; and

(e) applying transformation objects to convert between the three layers as directed by rules, including the component-sensitive calculation rules and the calculation efficiency rules.

9. The method of claim 8 wherein at least one of the input streams of (4)(a) is a mixed species stream representing at least one mixed specie, and there is included proportions data of the individual species comprising the at least one mixed specie.

10. The method of claim 8 adapted for use with proprietary mixed species, further comprising visibility rules prohibiting unauthorized users from viewing the composition of proprietary mixed species, said rules including activating transformation objects when users view data from the middle layer or internal layer to present to the user only the external layer for proprietary mixed species.

11. The method of claim 8 , wherein the component-sensitive calculations rules comprise one or more rules directing thermodynamic calculations to be performed on the internal layer.

12. The method of claim 8 , wherein the unit operations comprise thermodynamic operations.

13. The method of claim 8 , wherein the unit operations further comprise at least one of: entropy operations, and Gibbs free energy operations.

14. The method of claim 8 , wherein the unit operations further comprise allocation.

15. At least one non-transitory computer readable medium containing program instructions for causing a computer to perform a method for improving the operation of at least one computer during chemical process modeling, the method comprising:

(a) evaluating a chemical process model; the process model comprising one or more unit operations, one or more input streams into each unit operation, and one or more output streams from each unit operation; each of the streams comprising chemical composition data; each of the unit operations comprising one or more calculations transforming data from at least one of the streams connected thereto and accordingly updating data of at least one of the streams connected thereto;

(b) maintaining stream composition data in at least three layers: an external layer, a middle layer, and an internal layer; the external layer comprises mixed species, individual species, or both, as determined by a user; the middle layer comprises individual species duplicated by source; and the internal layer comprises only unique individual species;

(c) applying component-sensitive calculation rules to direct each unit operation, or portion thereof, to operate on either the middle layer or internal layer;

(d) applying calculation efficiency rules directing each unit operation, or portion thereof, to operate on either the middle layer or internal layer; and

(e) applying transformation objects to convert between the three layers as directed by rules, including the component-sensitive calculation rules and the calculation efficiency rules.

16. The at least one non-transitory computer readable medium containing program instructions of claim 15 wherein at least one of the input streams of (7)(a) is a mixed species stream representing at least one mixed specie, and there is included proportions data of the individual species comprising the at least one mixed specie.

17. The at least one non-transitory computer readable medium containing program instructions of claim 15 adapted for use with proprietary mixed species, further comprising visibility rules prohibiting unauthorized users from viewing the composition of proprietary mixed species, said rules including activating transformation objects when users view data from the middle layer or internal layer to present to the user only the external layer for proprietary mixed species.

18. The at least one non-transitory computer readable medium containing program instructions of claim 15 , wherein the component-sensitive calculations rules comprise one or more rules directing thermodynamic calculations to be performed on the internal layer.

19. The at least one non-transitory computer readable medium containing program instructions of claim 15 , wherein the unit operations comprise at least one of: thermodynamic operations, entropy operations, and Gibbs free energy operations.

20. The at least one non-transitory computer readable medium containing program instructions of claim 15 , wherein the unit operations further comprise allocation.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 21, 2020
From: HULL, ASHLEY; LUNSFORD, KEVIN
To: BRYAN RESEARCH & ENGINEERING
Reel/Frame 053563/0486 →
Continuity (2)
Provisional Application 62904806 · Sep 24, 2019
Related Publication 20210089689A1 · Mar 25, 2021