Claims
- 1. A method of controlling operation of a sludge material handling system, the sludge material handling System having a positive displacement piston/cylinder pump, having a sludge material feed system which delivers sludge material to the positive displacement pump, and having a sludge material disposal system which receives and disposes of sludge material from the positive displacement pump, the positive displacement pump having an inlet for receiving sludge material delivered by the sludge material feed system and an outlet through which sludge material is delivered to the sludge material disposal system under pressure, the sludge material received at the inlet being partially compressible such that a reduction in volume of the sludge material occurs during a pumping cycle as it is pumped from the inlet to the outlet, the method comprising:
- sensing a first parameter, the first parameter being related to operation of the pump and bearing a known relationship to an actual volume of sludge material delivered during a pumping cycle;
- determining from the sensed first parameter an output value;
- providing a control signal as a function of the output value; and
- controlling the sludge material disposal system in response to the control signal.
- 2. The method of claim 1 wherein the sludge material disposal system includes an incinerator which incinerates the sludge material.
- 3. A method of controlling operation of a sludge material handling system, the sludge material handling system having a positive displacement piston/cylinder pump, having a sludge material feed system which delivers sludge material to the positive displacement pump, and having a sludge material disposal system which receives and disposes of sludge material from the positive displacement pump, the positive displacement pump having an inlet for receiving sludge material delivered by the sludge material feed system and an outlet through which sludge material is delivered to the sludge material disposal system under pressure, the sludge material received at the inlet being partially compressible such that a reduction in volume of the sludge material occurs during a pumping cycle as it is pumped from the inlet to the outlet, the method comprising:
- sensing a first parameter, the first parameter being related to operation of the pump and bearing a known relationship to an actual volume of sludge material delivered during a pumping cycle;
- determining from the sensed first parameter an output value;
- sensing a second parameter, the second parameter being related to operation of the sludge material disposal system; and
- providing a control signal as a function of the output value and of the second parameter.
- 4. The method of claim 3 wherein the sludge material disposal system includes an incinerator and the second parameter is related to an operating temperature of the incinerator.
- 5. A method of controlling operation of a sludge material handling system, the sludge material handling system having a positive displacement piston/cylinder pump, having a sludge material feed system which delivers sludge material to the positive displacement pump, and having a sludge material disposal system which receives and disposes of sludge material from the positive displacement pump, the positive displacement pump having an inlet for receiving sludge material delivered by the sludge material feed system and an outlet through which sludge material is delivered to the sludge material disposal system under pressure, the sludge material received at the inlet being partially compressible such that a reduction in volume of the sludge material occurs during a pumping cycle as it is pumped from the inlet to the outlet, the method comprising:
- sensing a first parameter, the first parameter being related to operation of the pump and bearing a known relationship to an actual volume of sludge material delivered during a pumping cycle:
- determining from the sensed first parameter an output value;
- sensing a second parameter, the second parameter being related to operation of the sludge material feed system; and
- providing a control signal as a function of the output value and of the second parameter.
- 6. A control system for controlling a sludge material handling system, the sludge material handling system having a positive displacement piston/cylinder pump, having a sludge material feed system which delivers sludge material to the positive displacement pump, and having a sludge material. disposal system, which receives and disposes of sludge material from the positive displacement pump, the positive displacement pump having an inlet for receiving sludge material delivered by the sludge material feed system and an outlet through which sludge material is delivered to the sludge material disposal system under pressure, the sludge material received at the inlet being partially compressible such that a reduction in volume of the sludge material occurs during a pumping cycle as it is pumped from the inlet to the outlet, the method comprising:
- means for sensing a first parameter, the first parameter being related to operation of the pump and bearing a known relationship to an actual volume of sludge material delivered during a pumping cycle;
- means for determining from the sensed first parameter an output value; and
- means for generating a control signal as a function of the output value; and
- means for controlling the sludge material disposal system as a function of the control signal.
- 7. A method of controlling operation of a sludge material handling system, the sludge material handling system having a positive displacement piston/cylinder pump, having a sludge material feed system which delivers sludge material to the positive displacement pump, and having a sludge material disposal system which receives and disposes of sludge material from the positive displacement pump, the positive displacement pump having an inlet for receiving sludge material delivered by the sludge material feed system and an outlet through which sludge material is delivered to the sludge material disposal system under pressure, the sludge material received at the inlet being partially compressible such that a reduction in volume of the sludge material occurs during a pumping cycle as it is pumped from the inlet to the outlet, the method comprising:
- providing a control signal as a function of a fill percentage of the pump; and
- controlling operation of the sludge material feed system and the sludge material disposal system as a function of the control signal.
- 8. A method of controlling operation of a sludge material handling system, the sludge material handling system having a positive displacement piston/cylinder pump, having a sludge material feed system which delivers sludge material to the positive displacement pump, and having a sludge material disposal system which receives and disposes of sludge material from the positive displacement pump, the positive displacement pump having an inlet for receiving sludge material delivered by the sludge material feed system and an outlet through which sludge material is delivered to the sludge material disposal system under pressure, the sludge material received at the inlet being partially compressible such that a reduction in volume of the sludge material occurs during a pumping cycle as it is pumped from the inlet to the outlet, the method comprising:
- providing a control signal as a function of a fill percentage of the pump; and
- controlling a rate at which the sludge material disposal system disposes of sludge material as a function of the control signal.
- 9. A method of controlling operation of a sludge material handling system, the sludge material handling system having a positive displacement piston/cylinder pump, having a sludge material feed system which delivers sludge material to the positive displacement pump, and having a sludge material disposal system which receives and disposes of sludge material from the positive displacement pump, the positive displacement pump having an inlet for receiving sludge material delivered by the sludge material feed system and an outlet through which sludge material is delivered to the sludge material disposal system under pressure, the sludge material received at the inlet being partially compressible such that a reduction in volume of the sludge material occurs during a pumping cycle as it is pumped from the inlet to the outlet, the method comprising:
- providing a control signal as a function of a fill percentage of the pump; and
- controlling operation of the sludge material disposal system as a function of the control signal, the sludge material disposal system including an incinerator which incinerates the sludge.
- 10. A method of controlling operation of a sludge material handling system, the sludge material handling system having a positive displacement piston/cylinder pump, having a sludge material feed system which delivers sludge material to the positive displacement pump, and having a sludge material disposal system which receives and disposes of sludge material from the positive displacement pump, the positive displacement pump having an inlet for receiving sludge material delivered by the sludge material feed system and an outlet through which sludge material is delivered to the sludge material disposal system under pressure, the sludge material received at the inlet being partially compressible such that a reduction in volume of the sludge material occurs during a pumping cycle as it is pumped from the inlet to the outlet, the method comprising:
- determining a fill percentage of the pump based upon a parameter related to operation of the pump; and
- controlling operation of the sludge material disposal system as a function of the fill percentage determined.
Parent Case Info
This is a continuation-in-part of U.S. application Ser. No. 07/981,982, filed Nov. 24, 1992, now U.S. Pat. No. 5,257,912, which is a divisional application of U.S. application Ser. No. 07/595,457 filed Oct. 10, 1990 and which has issued as U.S. Pat. No. 5,106,272.
US Referenced Citations (14)
Divisions (1)
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595457 |
Oct 1990 |
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Continuation in Parts (1)
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981982 |
Nov 1992 |
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