Claims
- 1. A system for sensing and controlling the bed level of a fluidized bed comprising:
- first pressure sensing means for sensing pressure (P.sub.b) substantially at the bottom of said fluidized bed and establishing a signal indicative thereof;
- second pressure sensing means for sensing pressure (P.sub.b) above the top surface of said fluidized bed and establishing a signal indicative thereof;
- third pressure sensing means for sensing pressure (P.sub.d) between said first and second pressure sensing means so as to be within said fluidized bed and establishing a signal indicative thereof; and
- means for establishing a control signal directly proportional to the difference (P.sub.b -P.sub.h) between said signal indicative of the pressure (P.sub.b) substantially at the bottom of said fluidized bed and said signal indicative of the pressure (P.sub.h) above the top surface of said fluidized bed and inversely proportional to said signal indicative of the pressure (P.sub.d) between said first and second pressure sensing means for controlling an optimized bed level.
- 2. The system as defined in claim 1 further including means for establishing a signal indicative of a zero bed level in response to a predetermined level of pressure difference (P.sub.b -P.sub.d) between said first and third pressure sensing means.
- 3. The system as defined in claim 1 wherein said control signal inversely proportional to said signal indicative of the pressure (P.sub.d) between said first and second pressure sensing means is inversely proportional to the difference (P.sub.b -P.sub.d) between said signal indicative of the pressure (P.sub.b) substantially at the bottom of said fluidized bed and said signal indicative of the pressure (P.sub.d) between said first and second pressure sensing means.
- 4. The system as defined in claim 3 further including means for establishing a signal indicative of the location (d) of said third pressure sensing means wherein said control signal is directly proportional to the product of the location (d) of said third pressure sensing means and the difference (P.sub.b -P.sub.h) between said signal indicative of the pressure (P.sub.b) substantially at the bottom of said fluidized bed and said signal indicative of the pressure (P.sub.h) above the top surface of said fluidized bed and inversely proportional to the difference (P.sub.b -P.sub.d) between said signal indicative of the pressure (P.sub.b) substantially at the bottom of said fluidized bed and said signal indicative of the pressure (P.sub.d) between said first and second pressure sensing means.
- 5. The system as defined in claim 1 further including a fourth pressure sensing means for sensing pressure (P.sub.d') between said second and third pressure sensing means and establishing a signal indicative thereof, and means for connecting said signal indicative of the pressure (P.sub.d') between said second and third pressure sensing means means to the bed level controlling system in place of said signal indicative of the pressure (P.sub.d) between said first and second pressure sensing means in response to a predetermined level of pressure difference (P.sub.b -P.sub.h) between said first and second pressure sensing means.
- 6. The system as defined in claim 5 wherein said control signal inversely proportional to said signal indicative of the pressure (P.sub.d') between said second and third pressure sensing means is inversely proportional to the difference (P.sub.b -P.sub.d') between said signal indicative of the pressure (P.sub.b) substantially at the bottom of said fluidized bed and said signal indicative of the pressure (P.sub.d') between said second and third pressure sensing means.
- 7. The system as defined in claim 6 further including means for establishing a signal indicative of the location (d') of said fourth pressure sensing means wherein said control signal is directly proportional to the product of the location (d') of said fourth pressure sensing means and the difference (P.sub.b -P.sub.h) between said signal indicative of the pressure (P.sub.b) substantially at the bottom of said fluidized bed and said signal indicative of the pressure (P.sub.h) above the top surface of said fluidized bed and inversely proportional to the difference (P.sub.b -P.sub.d') between said signal indicative of the pressure (P.sub.b) substantially at the bottom of said fluidized bed and said signal indicative of the pressure (P.sub.d') between said second and third pressure sensing means.
- 8. A method for sensing and controlling the bed level of a fluidized bed comprising the steps of:
- sensing pressure (P.sub.b) substantially at the bottom of said fluidized bed and establishing a signal indicative thereof;
- sensing pressure (P.sub.h) above the top surface of said fluidized bed and establishing a signal indicative thereof;
- sensing pressure (P.sub.d) between said first and second pressure sensing means so as to be within said fluidized bed and establishing a signal indicative thereof; and
- establishing a control signal directly proportional to the difference (P.sub.b -P.sub.h) between said signal indicative of the pressure (P.sub.b) substantially at the bottom of said fluidized bed and said signal indicative of the pressure (P.sub.h) above the top surface of said fluidized bed and inversely proportional to said signal indicative of the pressure (P.sub.d) between said first and second pressure sensing means for controlling an optimized bed level.
- 9. The method as defined in claim 8 further including establishing a signal indicative of a zero bed level in response to a predetermined level of pressure difference (P.sub.b -P.sub.d) between said first and third pressure sensing means.
- 10. The method as defined in claim 8 wherein said control signal inversely proportional to said signal indicative of the pressure (P.sub.d) between said first and second pressure sensing means is inversely proportional to the difference (P.sub.b -P.sub.d) between said signal indicative of the pressure (P.sub.b) substantially at the bottom of said fluidized bed and said signal indicative of the pressure (P.sub.d) between said first and second pressure sensing means.
- 11. The method as defined in claim 10 further including establishing a signal indicative of the location (d) of said third pressure sensing means wherein said control signal is directly proportional to the product of the location (d) of said third pressure sensing means and the difference (P.sub.b -P.sub.h) between said signal indicative of the pressure (P.sub.b) substantially at the bottom of said fluidized bed and said signal indicative of the pressure (P.sub.h) above the top surface of said fluidized bed and inversely proportional to the difference (P.sub.b -P.sub.d) between said signal indicative of the pressure (P.sub.d) between said first and second pressure sensing means.
- 12. The method as defined in claim 8 further including sensing pressure (P.sub.d') between said second and third pressure sensing means and establishing a signal indicative thereof, and connecting said signal indicative of the pressure (P.sub.d') between said second and third pressure sensing means to the bed level controlling system in place of said signal indicative of the pressure (P.sub.d) between said first and second pressure sensing means in response to a predetermined level of pressure difference (P.sub.b -P.sub.h) between said first and second pressure sensing means.
- 13. The method as defined in claim 12 wherein said control signal inversely proportional to said signal indicative of the pressure (P.sub.d') between said second and third pressure sensing means is inversely proportional to the difference (P.sub.b -P.sub.d') between said signal indicative of the pressure (P.sub.b) substantially at the bottom of said fluidized bed and said signal indicative of the pressure (P.sub.d') between said second and third pressure sensing means.
- 14. The method as defined in claim 13 further including establishing a signal indicative of the location (d') of said fourth pressure sensing means wherein said control signal is directly proportional to the product of the location (d') of said fourth pressure means and the difference (P.sub.b -P.sub.h) between said signal indicative of the pressure (P.sub.b) substantially at the bottom of said fluidized bed and said signal indicative of the pressure (P.sub.h) above the top surface of said fluidized bed and inversely proportional to the difference (P.sub.b -P.sub.d') between said signal indicative of the pressure (P.sub.b) substantially at the bottom of said of said fluidized bed and said signal indicative of the pressure (P.sub.d') between said second and third pressure sensing means.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of applicants' copending application Ser. No. 450,508 filed Dec. 16, 1982, now abandoned.
US Referenced Citations (7)
Non-Patent Literature Citations (1)
Entry |
"Functional Diagramming of Instruments and Control Systems", Bailey Controls, SAMA Standard RC22-11-1966, (1981), pp. 1-12. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
450508 |
Dec 1982 |
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