IP Library Granted Patent US 7,276,209
Granted Patent B2
US 7,276,209 · App. 10/435,932 · Granted Oct 2, 2007

Air-gas mixing systems and methods for endothermic gas generators

Assignee: Atmosphere Engineering Co., LLC
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Quick Facts
Patent No.
US 7,276,209
App. No.
10/435,932
Granted
Oct 2, 2007
Kind
B2
Abstract

Systems and methods create an air-gas mixture supply for an endothermic generator. The systems and methods convey a hydrocarbon gas under pressure through a valve, to thereby form an air-gas mixture supply for the endothermic generator. The systems and methods sense an actual air-gas ratio of the air-gas mixture supply. The systems and methods receive from an operator a set point air-gas ratio. The systems and methods compare the actual value to the set point value and generate a deviation. The systems and methods generating a control signal to operate the valve based upon the deviation, and, preferably, to minimize the deviation.

Claims (53)

1. An air-gas mixing assembly adapted to be coupled to an endothermic generator comprising:

a gas inlet line constructed and arranged for coupling to a pressurized source of a hydrocarbon gas;

an air inlet line constructed and arranged for coupling to a pressurized source of air;

an air-gas junction communicating with the gas inlet line and the air inlet line and with the endothermic generator; and

an injection valve assembly in the gas inlet line upstream of the air-gas junction, through which a volume of hydrocarbon gas is injected under pressure into the air-gas junction, the injection valve assembly including a controlled member that regulates the volume of the hydrocarbon gas injection in response to a control signal thereby providing a controlled mixture of air and hydrocarbon gas to the endothermic generator.

2. An air-gas mixing assembly adapted to be coupled to an endothermic generator comprising:

a gas inlet line constructed and arranged for coupling to a pressurized source of a hydrocarbon gas;

an air inlet line constructed and arranged for coupling to a pressurized source of air;

an air-gas junction communicating with the gas inlet line and the air inlet line and with the endothermic generator; and

an injection valve assembly in the gas inlet line upstream of the air-gas junction through which a volume of hydrocarbon gas is injected under pressure upstream of the endothermic generator, the injection valve assembly including a controlled member that regulates the volume of the hydrocarbon gas injection in response to a control signal thereby providing a controlled mixture of air and hydrocarbon gas to the endothermic generator.

3. An air-gas mixing assembly according to claim 1 or 2 wherein the controlled member includes a valve throat having an inlet orifice communicating with the gas inlet line and an outlet orifice communicating with the air-gas junction, a valve member within the inlet orifice to define a gas flow passage having a dimension in the inlet orifice, the valve member being movable to adjust the dimension of the gas flow passage.

4. An air-gas mixing assembly according to claim 3 wherein the valve member includes a tapered head aligned with the inlet orifice.

5. An air-gas mixing assembly adapted to be coupled to an endothermic generator comprising:

a gas inlet line constructed and arranged for coupling to a pressurized source of a hydrocarbon gas;

an air inlet line constructed and arranged for coupling to a pressurized source of air;

an air-gas junction communicating with the gas inlet line and the air inlet line and with the endothermic generator; and

a valve assembly in the gas inlet line upstream of the air-gas junction, through which a volume of hydrocarbon gas is conveyed under pressure into the air-gas junction, the valve assembly including a controlled member that regulates the volume of the hydrocarbon gas conveyance in response to a control signal thereby providing a controlled mixture of air and hydrocarbon gas to the endothermic generator.

6. An air-gas mixing assembly adapted to be coupled to an endothermic generator comprising:

a gas inlet line constructed and arranged for coupling to a pressurized source of a hydrocarbon gas;

an air inlet line constructed and arranged for coupling to a pressurized source of air;

an air-gas junction communicating with the gas inlet line and the air inlet line and with the endothermic generator; and

an injection valve assembly in the gas inlet line upstream of the air-gas junction, through which a volume of hydrocarbon gas is injected under pressure into the air-gas junction, the injection valve assembly including a controlled member that regulates the volume of the hydrocarbon gas injection in response to a control signal thereby providing a controlled mixture of air and hydrocarbon gas to the endothermic generator.

7. An air-gas mixing assembly according to claim 1 or 2 or 5 or 6 wherein the air inlet line includes an air flow sensing unit.

8. An air-gas mixing assembly according to claim 1 or 2 or 5 or 6 wherein the gas inlet line includes a gas flow sensing unit.

9. An air-gas mixing assembly according to claim 1 or 2 or 5 or 6 wherein the air inlet line includes an air blower.

10. An air-gas mixing assembly according to claim 1 or 2 or 5 or 6 further including:

a frame; and

wherein the air inlet line, the gas inlet line, air-gas junction, and the injection valve assembly are mounted on the frame and comprise a unitary frame assembly.

11. An air-gas mixing assembly according to claim 1 or 2 or 5 or 6 further including a control module adapted and arranged to be coupled to the controlled member, the control module including a control function manager for generating the control signal.

12. An air-gas mixing assembly according to claim 11 wherein the control function manager generates the control signal to maintain a desired air-gas ratio.

13. An air-gas mixing assembly according to claim 11 wherein the control function manager generates the control signal based upon sensing air flow in the air inlet line and gas flow in the gas flow line.

14. An air-gas mixing assembly according to claim 11 wherein the control function manager generates the control signal to maintain an air-gas ratio to maintain a desired dew point in an endothermic gas product of the endothermic generator.

15. An air-gas mixing assembly according to claim 14 wherein the control function manager generates the control signal based upon sensing a dew point of the endothermic gas product.

16. An air-gas mixing assembly according to claim 11 wherein the control module includes a display device, and wherein the control function manager generates a user interface on the display device.

17. An air-gas mixing assembly according to claim 16 wherein the user interface includes a field for displaying an air-gas ratio.

18. An air-gas mixing assembly according to claim 16 wherein the user interface includes a field for displaying a dew point of an endothermic gas product of the endothermic generator.

19. A control module for an air-gas mixing system coupled to an endothermic generator comprising:

a gas injection valve adapted and arranged to be coupled to the air-gas mixing system to inject gas under pressure into a flow of air, to thereby form an air-gas mixture supply for the endothermic generator;

a control input for sensing an actual air-gas ratio of the air-gas mixture supply;

a control input for receiving from an operator a set point air-gas ratio;

a control output coupled to the gas injection valve; and

a ratio control function manager that compares the actual air-gas ratio to the set point air-gas ratio and generates a deviation, the ratio control function generating a control signal through the control output to operate the gas injection valve based upon the deviation.

20. A control module according to claim 19 wherein the control signal operates the gas injection valve to minimize the deviation.

21. A control module according to claim 19 further including a display device, and wherein the ratio control function manager generates a user interface on the display device.

22. A control module according to claim 21 wherein the user interface includes a field that displays at least one of the actual air-gas ratio and the set point air-gas ratio.

23. A control module for an air-gas mixing system coupled to an endothermic generator comprising:

a gas injection valve adapted and arranged to be coupled to the air-gas mixing system to inject gas under pressure into a flow of air, to thereby form an air-gas mixture supply for the endothermic generator;

a control input for sensing an actual dew point of an endothermic gas product of the endothermic generator;

a control input for receiving from an operator a set point dew point;

a control output coupled to the gas injection valve; and

a ratio control function manager that compares the actual dew point to the set point dew point and generates a deviation, the ratio control function generating a control signal through the control output to operate the gas injection valve based upon the deviation.

24. A control module according to claim 23 wherein the control signal operates the gas injection valve to minimize the deviation.

25. A control module according to claim 23 further including a display device, and wherein the ratio control function manager generates a user interface on the display device.

Assignments (6)
SECURITY INTEREST Recorded Aug 3, 2023
From: UNITED PROCESS CONTROLS INC.
To: BANK OF MONTREAL
Reel/Frame 064478/0817 →
MERGER Recorded Jul 27, 2023
From: ATMOSPHERE ENGINEERING COMPANY, INC.
To: UNITED PROCESS CONTROLS INC.
Reel/Frame 064406/0658 →
SECURITY INTEREST Recorded Oct 24, 2017
From: UNITED PROCESS CONTROLS INC.
To: BANK OF MONTREAL
Reel/Frame 043933/0388 →
CONVERSION Recorded Sep 11, 2017
From: ATMOSPHERE ENGINEERING , LLC
To: ATMOSPHERE ENGINEERING COMPANY, INC.
Reel/Frame 043811/0274 →
CONVERSION Recorded Sep 7, 2017
From: ATMOSPHERE ENGINEERING, LLC
To: ATMOSPHERE ENGINEERING COMPANY, INC.
Reel/Frame 043778/0948 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2003
From: JOSSART, JASON
To: ATOMSOPHERE ENGINEERING CO., LLC
Reel/Frame 014541/0279 →
Continuity (1)
Related Publication 20040228773A1 · Nov 18, 2004