IP Library Granted Patent US 8,303,297
Granted Patent B2
US 8,303,297 · App. 11/981,222 · Granted Nov 6, 2012

Method and apparatus for controlling combustion in a burner

Assignee: Webster Engineering & Manufacturing Co., LLC
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Quick Facts
Patent No.
US 8,303,297
App. No.
11/981,222
Granted
Nov 6, 2012
Kind
B2
Abstract

A method and apparatus that applies corrections to the mass flow rate of combustion air into a gas or oil-fired, forced-draft burner, and thus provides for correcting the air-fuel ratio, by directly measuring the combustion air temperature and/or the barometric pressure of the combustion air, and using these measurements to develop a fan speed drive signal that corrects the volume of air inlet to the burner system without the use of the complex and expensive fully metered control systems, or elaborate feedback systems, or systems that require real-time combustion analysis, and the like.

Claims (34)

1. For use with a burner system having an air inlet and an air inlet fan driven by a variable speed motor, an inlet air density adjustment device, comprising:

a barometric pressure sensor disposed near said air inlet for detecting minor daily or seasonal variations in atmospheric pressure near said air inlet and providing a signal proportional thereto; and

a motor speed controller having a first section for converting said signal from said barometric pressure sensor according to a first relationship K P =P B (min)÷P B (air), where P B (min)=minimum barometric pressure, and P B (air)=current barometric pressure measured near said air inlet of said burner system to a first electrical signal and a second section for converting said first electrical signal to a variable frequency AC voltage signal according to a second relationship S=K P ×M f rpm, where S=speed of said motor, M f =speed of said motor at 60 Hz, and rpm=revolutions per minute; and

a cable connecting said AC voltage signal from said second section to AC terminals of said motor for adjusting said speed of said variable speed motor corresponding to said minor daily or seasonal variations in atmospheric pressure, thereby adjusting for variations in said inlet air density.

2. The device of claim 1 , wherein:

said first section is a programmable logic controller (PLC) having at least a first input for receiving said first electrical signal; and

said second section is a variable frequency drive system that includes a frequency inverter circuit and a pulse width modulator circuit.

3. The device of claim 1 , further comprising:

a transfer function formed of first and second relationships and embedded in said motor speed controller that is operable to convert a percentage change in said inlet air density corresponding to said barometric pressure sensor output to an equivalent percentage change in said speed of said variable speed motor.

4. For use with a burner system having an air inlet and an air inlet fan driven by a variable speed motor, an inlet air density adjustment device, comprising:

an air temperature sensor disposed near said air inlet for detecting minor daily or seasonal variations in air temperature near said air inlet and providing a signal proportional thereto; and

a motor speed controller having a first section for converting said signal from said temperature sensor according to a first relationship K T =(460+T(air))÷(460+T(max)), where T(air)=current air temperature, and T(max)=maximum air temperature measured near said air inlet of said burner system to a first electrical signal and a second section for converting said first electrical signal to a variable frequency AC voltage signal according, to a second relationship S T =K T ×M f rpm, where S T =speed of said motor, M f =speed of said motor at 60 Hz, and rpm revolutions per minute; and

a cable connecting said AC voltage signal from said second section to AC terminals of said motor for adjusting said speed of said variable speed motor corresponding to said minor daily or seasonal variations in air temperature, thereby adjusting, for variations in said inlet air density.

5. The device of claim 4 , wherein:

said first section is a programmable logic controller (PLC) having at least a first input for receiving said first electrical signal; and

said second section is a variable frequency drive system that includes a frequency inverter circuit and a pulse width modulator circuit.

6. The device of claim 4 , further comprising:

a transfer function formed of first and second relationships and embedded in said motor speed controller that is operable to convert a percentage change in said inlet air density corresponding to said temperature sensor output to an equivalent percentage change in said speed of said variable speed motor.

7. For use with a burner system having an air inlet and an air inlet fan driven by a variable speed motor, an inlet air density adjustment device comprising:

a barometric pressure sensor disposed near said air inlet for detecting said minor daily or seasonal variations in atmospheric pressure near said air inlet providing a first signal proportional thereto;

an air temperature sensor disposed near said air inlet for detecting said minor daily or seasonal variations in air temperature near said air inlet providing a second signal proportional thereto; and

a motor speed controller for adjusting the speed of said variable speed motor corresponding to said minor daily or seasonal variations in said atmospheric pressure and temperature, thereby adjusting for variations in said inlet air density; wherein said motor speed controller further comprises:

a first section for receiving said respective first and second signals from said barometric pressure and air temperature sensor outputs and converting them according to respective first relationships to respective first and second electrical signals;

a second section for receiving said respective first and second electrical signals from said first section and converting them to an variable frequency AC voltage signal according to respective second relationships; and

a cable connecting said AC voltage signal from said second section to AC terminals of said motor to adjust the speed of said variable speed motor corresponding to said minor daily or seasonal variations in atmospheric pressure, thereby adjusting for variations in said inlet air density.

8. The device of claim 7 , wherein said first relationships comprise K P =P B (min)÷P B (air), where P B (min)=minimum barometric pressure, and P(air) current barometric pressure measured near said air inlet of said burner system, and K T=( 460+T(air))÷(460+T(max)), where T(air)=current air temperature, and T(max)=maximum air temperature measured near said air inlet of said burner system; and

said second relationships comprise S P =K P ×M f rpm, and S T =K T ×M f rpm where S P and S T respectively=speed of said motor and M f =speed of said motor at 60 Hz, and rpm revolutions per minute.

9. The device of claim 7 , further comprising:

a transfer function formed of said first and second respective relationships and embedded in said motor speed controller that is operable to convert a percentage change in said inlet air density corresponding to said barometric pressure and air temperature sensor outputs to an equivalent percentage change in said speed of said variable speed motor.

10. For use with a burner system having an air inlet and an air inlet fan driven by a variable speed motor, an inlet air density adjustment device, comprising:

a sensor disposed near said air inlet and providing a signal proportional to at least one of barometric pressure and air temperature at an output of said sensor;

a motor speed controller coupled at an output thereof to AC voltage terminals of said motor and having an input of said controller coupled to said output of said sensor;

a cable connecting a variable frequency AC voltage signal from said output of said controller to said AC voltage terminals of said motor and

a transfer function embedded in said motor speed controller that is operable according to a first relationship (ratio of a reference barometric pressure or air temperature and a current value near said air inlet) and a second relationship (product of said ratio and rated motor speed) calculated respectively in first and second sections of said motor speed controller to convert a percentage change in said inlet air density corresponding to an output of said sensor to an equivalent percentage change in said speed of said variable speed motor, thereby correcting said air inlet density for minor daily and seasonal variations in an atmospheric, condition sensed by said sensor.

Assignments (3)
SECURITY INTEREST Recorded Aug 21, 2015
From: WEBSTER COMBUSTION TECHNOLOGY LLC
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 036420/0007 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2014
From: WEBSTER ENGINEERING & MANUFACTURING CO., LLC
To: WEBSTER COMBUSTION TECHNOLOGY LLC
Reel/Frame 033401/0185 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 31, 2007
From: TOMPKINS, GENE; BRENNAN, ALAN; KUNKLE, JERRY
To: WEBSTER ENGINEERING & MANUFACTURING CO., LLC
Reel/Frame 020304/0414 →
Continuity (1)
Related Publication 20090111065A1 · Apr 30, 2009