Method of Controlling a Combustion Facility Using a Combination of Coefficient of Resistance and Flame Front Estimation
The present invention relates to a method of controlling at least one parameter (1,2) of a combustion facility, said combustion facility comprising an in-feed system feeding fuel to a number of moving grates on which the fuel is fed forward and subjected to successive drying, ignition, combustion and outburning, primary air for the combustion being supplied from beneath the grates and through the layer of fuel on the grates, said method comprising -calculating a coefficient of resistance (ζpv) for the air flow through the grates and fuel, -controlling the at least one parameter (1,2) of the combustion facility based on the coefficient of resistance (ζpv), and -providing an estimation of the position (Fpv) of the flame front by image analysis of a camera image of the combustion zone and -using said estimated position (Fpv) of the flame front to provide a correction of the control of the at least one parameter (1,2) based on the coefficient of resistance (ζpv).
The present invention relates to a control method used in a combustion facility comprising a feed-in system, feeding fuel to a number of moving grates, on which the fuel is fed forward and subjected to successive drying, ignition, combustion and outburning, primary air for the combustion being supplied from beneath the grates and through the layer of fuel on the grates.
BACKGROUND ARTIn combustion facilities of this kind it is known to provide a control of the in-feed system and possibly the speed of the moving grates, based on a calculation of the coefficient of resistance, e.g. based on Bernoulli's principle, for the airflow through the grates and fuel. A method of this kind is known from EP 955 499.
DISCLOSURE OF THE INVENTIONIt is the object of the present invention to provide a method of the kind referred to above, with which it is possible to provide a more precise control of the combustion, and this object is achieved with a method of said kind, which according to the present invention provides a correction of the control based on the coefficient of resistance by using an estimated position of the flame front, which is provided by image analysis of a camera image of the combustion zone. With this arrangement, the set point to or the control signal of the coefficient of resistance controller can be corrected, whenever the position of the flame front is detected to be deviating from the optimal position thereof.
In the following detailed part of the present description, the invention will be explained in more detail with reference to the exemplary embodiment of a method according to the invention shown in the drawings, in which
The control systems shown in
where
-
- Δp=Pressure loss over the grate and fuel thereon
- ζ=Coefficient of resistance
- ρ=Density of the media (combustion air)
- v=Velocity of the media
- x=Exponent dependent on flow being laminar or turbulent,
or
where
-
- ζI=Coefficient of resistance
- R=Gas constant for air (=287.1 J/(kg·K))
- T=Temperature of air (K)
- P=Pressure of air (Pa)
- Δp=Pressure loss over the grate and fuel thereon
- V =Volume flow of air (m3/s)
Or any other relevant equation giving a coefficient of resistance ζpv related to the thickness and density of the fuel on the grates.
The coefficient of resistance ζpv over the combustion zone thus calculated provides a good indication of necessary corrections of the speed 1,2 of the feeding system, due to the fact that the coefficient of resistance ζpv provides a good estimation of the thickness of the waste layer in the combustion zone.
In accordance with the present invention, however, the set point ζsp of the coefficient of resistance may be too high or too low and needs to be corrected further. This need for correction is in accordance with the present invention provided by use of the estimated position Fpv of the flame front, said estimate being provided by image analysis of a camera image of the combustion zone. The camera is, in a preferred embodiment, a red-green-blue image camera, however, other types of cameras may be used, such as an infrared camera.
In the exemplary embodiment shown in
Correspondingly
Furthermore,
Claims
1. Method of controlling at least one parameter (1, 2) of a combustion facility, said combustion facility comprising
- an in-feed system feeding fuel to a number of moving grates on which the fuel is fed forward and subjected to successive drying, ignition, combustion and outburning, primary air for the combustion being supplied from beneath the grates and through the layer of fuel on the grates, said method comprising calculating a coefficient of resistance (ζpv) for the air flow through the grates and fuel,
- controlling the at least one parameter (1, 2) of the combustion facility based on the coefficient of resistance (ζpv), and providing an estimation (Fpv) of the position of the flame front by image analysis of a camera image of the combustion zone and using said estimated position (Fpv) of the flame front to provide a correction of the control of the at least one parameter (1, 2) based on the coefficient of resistance (ζpv).
2. Method in accordance with claim 1, wherein the at least one parameter comprises the speed (1) of the in-feed system.
3. Method in accordance with claim 1 or 2, wherein the at least one parameter comprises the speed (2) of at least one of the moving grates.
4. Method in accordance with any of the preceding claims, wherein the correction to the control based on the coefficient of resistance (ζpv) is performed by a feedforward introduction of the estimated position (Fpv) of the flame front (FIG. 1).
5. Method in accordance with any of the preceding claims, wherein the correction to the control based on the coefficient of resistance (ζpv) is performed by a scaling introduction of the estimated position (Fpv) of the flame front (FIG. 2).
6. Method in accordance with any of the preceding claims, wherein the correction to the control based on the coefficient of resistance (ζpv) is performed by a gain scaling introduction of the estimated position (Fpv) of the flame front (FIG. 3).
Type: Application
Filed: Jun 10, 2008
Publication Date: May 26, 2011
Inventors: Soeren Nymann Thomsen (Virum), Benny Elbaek Soerensen (Aarre)
Application Number: 12/997,039
International Classification: F23N 1/00 (20060101);