Claims
- 1. A system for controlling operating parameters of a combustion process in a combustion chamber yielding products including flowing gases having particles entrained therein, said system comprising:
- a. a single photodector for detecting a preselected wavelength of light emitted from particles entrained in the combustion product gas stream which exits the combustion chamber thereby excluding radiation from flame within the combustion chamber, wherein the intensity of the light at said preselected wavelength is indicative of inefficiency in the combustion process; and
- b. means for generating a signal indicative of the intensity of light at said wavelength detected by the detection means, for indicating the presence of inefficiency.
- 2. The system of claim 1 further comprising means responsive to the signal generated in step (b) for controlling the operating parameter in the combustion process.
- 3. The system of claim 2 wherein the means responsive to the signal comprises a signal processor.
- 4. The system of claim 2 wherein the operating parameter comprises an auxiliary burner.
- 5. The system of claim 2 wherein the operating parameter comprises a pollution control system.
- 6. The system of claim 5 wherein the pollution control system comprises a means for injecting a pollution control chemical or chemicals into the flowing gases thereby converting harmful compounds in the gases to benign compounds.
- 7. The system of claim 6 wherein the pollution control chemical comprises ammonia or urea.
- 8. The system of claim 1 wherein the intensity of the wavelength of light detected is indicative of the temperature of the entrained particles.
- 9. The system of claim 8 wherein the indicated temperature is unaffected by light emitted from media other than the entrained particles.
- 10. A system for controlling thermal efficiency in a combustion chamber having a heat exchange surface and combustion products including flowing gases having particles entrained therein, said system comprising:
- a. a single photodector for detecting a preselected wavelength of light emitted from particles entrained in the combustion product gas stream which exits the combustion chamber thereby excluding radiation from flame within the combustion chamber, wherein the intensity of the light at said preselected wavelength is indicative of inefficiency in the combustion chamber; and
- b. means for generating a signal indicative of the intensity of light at said wavelength detected by the detection means, for indicating the presence of inefficiency.
- 11. The system of claim 10 further comprising means responsive to the signal generated in step (b) for controlling a combustion parameter or heat transfer in the combustion chamber.
- 12. The system of claim 10 wherein the intensity of the wavelength of light detected is indicative of the temperature of the entrained particles.
- 13. The system of claim 10 wherein the indicated temperature is unaffected by light emitted from media other than the entrained particles.
- 14. The system of claim 10 wherein the wavelength of light detected is within the range from about 400 nm to about 900 nm and the photodetector detects a band of light having a bandwidth of about 10 nm to 12 nm.
- 15. The system of claim 11 wherein the means responsive to the signal comprises a signal processor.
- 16. The system of claim 11 wherein the means for controlling comprises a means for cleaning the heat exchange surface of the combustion chamber.
- 17. The system of claim 16 wherein the means for cleaning the heat exchange surface of the combustion chamber is selected from the group consisting of a soot blowing device and a water lance.
- 18. The system of claim 17 wherein the combustion chamber is adapted for combustion of a fuel selected from the group consisting of coal and solid waste products.
- 19. A method for regulating thermal efficiency in a combustion chamber having a heat exchange surface and combustion products including a gas stream having particles entrained herein, comprising the steps of:
- a. detecting with a single photodetector a preselected wavelength of light emitted from particles entrained in the combustion product gas stream which exits the combustion chamber thereby excluding radiation from flame within the combustion chamber, wherein the intensity of light at said preselected wavelength is indicative of thermal inefficiency in the combustion chamber;
- b. generating a signal indicative of the intensity of light at said wavelength detected for indicating the presence of inefficiency; and
- c. analyzing the signal obtained in step (b) and utilizing the analysis obtained thereby for regulating a combustion parameter or heat transfer in the combustion chamber.
- 20. The method of claim 19 wherein the wavelength of light detected is within the range from about 400 nm to 900 nm and the photodetector detects a band of light having a bandwidth of about 10 nm to 12 nm.
- 21. The method of claim 19 wherein step (c) is performed by analyzing the signal obtained in step (b) with a signal processor and applying the analysis obtained to initiate cleaning a heat exchange surface of the combustion chamber.
- 22. The method of claim 21 wherein the cleaning is performed using a member selected from the group consisting of a soot blowing device and a water lance.
- 23. The method of claim 19 wherein the combustion chamber is adapted for combustion of a fuel selected from the group consisting of a coal and solid waste products.
- 24. A device for controlling thermal efficiency in a combustion chamber having a heat exchange surface and combustion products including a gas stream having particles entrained therein, comprising:
- a. single photodetector which is capable of selectively detecting a specific wavelength of light emitted from ash particles in the combustion product exhaust which exits the combustion chamber thereby excluding radiation from flame within the combustion chamber;
- b. means for generating a signal indicative of the intensity of the specific wavelength of light detected; and
- c. a signal processor for analyzing the signal obtained in step (b) and for producing an output signal useful to control at least one combustion or heat transfer parameter.
- 25. The device of claim 24 wherein the wavelength of light detected is within the range from about 400 nm to about 900 nm and having a bandwidth of about 10 nm to 12 nm.
- 26. The device of claim 24 further comprising means responsive to the output signal for automatically initiating a decrease in furnace exit gas temperature.
- 27. The device of claim 24 wherein the means responsive to the output signal comprises a means for cleaning the heat exchange surface of the combustion chamber.
- 28. The device of claim 27 wherein the means for cleaning the heat exchange surface comprises a soot blowing device or a water lance.
- 29. A device for detecting a preselected wavelength of light emitted from ash particles entrained in combustion product gas streams which exit a combustion chamber, comprising:
- a. an aperture tube which mates with a combustion product stack which exits the combustion chamber;
- b. an objective lens disposed to receive light from said aperture tube;
- c. at least one field lens or optical fiber which images light from the objective lens;
- d. a single photodetector which detects wavelengths of light passing through the field lenses; and
- e. means for converting the light detected to signals indicative of the temperature of the ash particles.
- 30. The device of claim 29 further comprising means for transporting the signal indicative of the temperature of the ash particles to a combustion chamber efficiency control device.
- 31. The device of claim 29 wherein the means for converting light to signals comprises a signal processor.
- 32. A system for controlling operating parameters of a combustion process in a combustion chamber yielding products including flowing gases having reflective particles entrained therein, said system comprising:
- a. at least one photodetector located in a flue for selectively detecting preselected wavelengths of light emitted from said reflective particles entrained in the gas stream discharged from the combustion chamber, wherein said preselected wavelengths are wavelengths at which said particles forward scatter light reflected from flame in the combustion chamber thereby permitting selective detection of light emitted from said particles, and wherein the intensity of the emitted light at said wavelengths is indicative of the efficiency of the combustion process; and
- b. means for generating a signal indicative of the intensity of said detected emitted light indicating the presence of combustion inefficiency.
- 33. The system of claim 32 further comprising means responsive to the signal generated in step (b) for controlling the operating parameter in the combustion process.
- 34. The system of claim 33 wherein the means responsive to the signal comprises a signal processor.
- 35. The system of claim 32 wherein the particles exhibit forward scattering of light reflected from the combustion process.
- 36. The system of claim 32 comprising a pollution control system.
- 37. The system of claim 36 wherein the pollution control system comprises a means for injecting a pollution control chemical into the flowing gases thereby converting harmful compounds in the gases to benign compounds.
- 38. The system of claim 37 wherein the pollution control chemical comprises ammonia or urea.
- 39. The system of claim 32 comprising at least two photodetectors wherein each photodetector detects a wavelength of light different from the other.
- 40. The system of claim 32 wherein the intensity of emitted light detected is indicative of the temperature of the reflective particles.
- 41. The system of claim 40 wherein the indicated temperature is unaffected by light from media other than that emitted from the entrained particles.
- 42. A method for controlling operating parameters of a combustion process in a combustion chamber yielding products including flowing gases having reflective particles entrained therein, the method comprising selectively detecting light emitted from said reflective particles with at least one photodetector located in a flue and which detects wavelengths of light at which said particles forward scatter light reflected from flame within the combustion chamber thereby permitting selective detection of light emitted from said particles, and wherein the intensity of the emitted light at said wavelength is indicative of the efficiency of the combustion process.
- 43. The method of claim 42 wherein the reflective particles result from combustion of fuel having a high mineral content.
- 44. The method of claim 42 wherein the fuel comprises coal.
- 45. The method of claim 42 further comprising the step of generating a signal indicative of the intensity of light at said wavelength detected, for indicating thermal inefficiency in the combustion process.
- 46. The method of claim 45 further comprising analyzing the signal and utilizing the analysis obtained for regulating a combustion parameter or heat transfer in the combustion process.
- 47. The method of claim 42 wherein at least two photodetectors are used, and wherein each photodetector detects a band of wavelengths of light different from the others.
- 48. The method of claim 42 wherein the wavelength of light detected is in the range of from about 400 nm to 900 nm and has a bandwidth of about 10 nm to 12 nm.
- 49. A device for controlling thermal efficiency in a combustion chamber which generates combustion products including a gas stream having reflective particles entrained therein, comprising:
- a. at least one photodetector for selectively detecting specific wavelengths of light emitted from said reflective particles at a wavelengths wherein said particles forward scatter light reflected from flame in the combustion chamber thereby permitting selective detection of light emitted from said particles, wherein the intensity of the emitted light at said wavelengths is indicative of the efficiency of the combustion process;
- b. means for generating a signal indicative of the intensity of said detected, emitted light; and
- c. a signal processor responsive to the signal obtained in step (b) for producing an output signal useful to control at least one combustion or heat transfer parameter.
- 50. The method of claim 49 wherein the wavelength of light detected is within the range of from about 400 nm to about 000 nm and has a bandwidth of about 10 nm to 12 nm.
- 51. The device of claim 49 wherein the reflective particles have a particle size conductive to forward scattering of light reflected from the combustion chamber.
- 52. The device of claim 49 comprising at least two photodetectors wherein each photodetector detects a wavelength of light different from the others.
RELATED APPLICATIONS
This application is a continuation-in-part of copending U.S. application Ser. No. 07/742,540 filed Jun. 20, 1991 entitled "Apparatus For Combustion, Pollution and Chemical Process Control" by M. B. Frish et al. and now U.S. Pat. No. 5,112,215, the entire disclosure of which is hereby incorporated herein by reference.
GOVERNMENT SUPPORT
The work described herein was supported by Grant No. ISI-8961358 from the National Science Foundation. The government has certain rights in this invention.
US Referenced Citations (28)
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
724540 |
Jun 1991 |
|