Claims
- 1. A heat exchanger performance monitor for generating a fouling factor, indicative of the cleanliness of a heat exchanger, said heat exchanger having a heat exchange surface area for transferring heat between a medium which passes against one side of said heat exchange surface area and a heat exchange fluid which passes against an opposite side of said heat exchange surface area, comprising:
- first temperature transmitter means for supplying a first signal corresponding to the output temperature of the medium exiting from the heat exchanger;
- second temperature transmitter means for supplying a second signal corresponding to the input temperature of the medium entering the heat exchanger;
- third temperature transmitter means for supplying a third signal corresponding to the temperature of the heat exchange fluid on the opposite side of the heat exchange surface area;
- first mass flow rate means for supplying a fourth signal corresponding to the mass flow rate of medium passing through the heat exchanger;
- second mass flow rate means for supplying a fifth signal corresponding to the mass flow rate of heat exchange fluid passing through the heat exchanger;
- an actual heat transfer module, connected to said first, second and third temperature transmitter means and to said second mass flow rate means, for calculating a sixth signal corresponding to an actual heat transfer coefficient (U.sub.act) of said heat exchanger as a function of said first, second, third and fifth signals, said heat exchange surface area, and a specific heat value of said medium;
- means for calculating a seventh signal corresponding to a nominal heat transfer coefficient (U.sub.ava) of said heat exchanger; and
- a first divider unit, connected to said actual heat transfer module for calculating said sixth signal corresponding to said actual heat transfer coefficient (U.sub.act) and to said means for calculating said seventh signal corresponding to said nominal heat transfer coefficient (U.sub.ava) for calculating an eighth signal corresponding to a ratio of said nominal heat transfer coefficient (U.sub.ava) to said actual heat transfer coefficient (U.sub.act), said ratio corresponding to the fouling factor of said heat exchanger.
- 2. A heat exchanger performance monitor according to claim 1, wherein said means for calculating said seventh signal corresponding to said nominal heat transfer coefficient (U.sub.ava) comprises:
- a medium surface film module for calculating a film coefficient of the medium h.sub.w as a function of said first and second signals corresponding to the output and input temperatures of the medium exiting and entering the heat exchanger, said third signal corresponding to the temperature of the heat exchange fluid on the opposite side of the heat exchange surface area, said fourth signal corresponding to the mass flow rate of medium passing through the heat exchanger;
- a heat exchange fluid surface film module for calculating a film coefficient for the heat exchange fluid h.sub.r as a function of said fifth signal corresponding to the mass flow rate of heat exchange fluid passing through the heat exchanger, said third signal corresponding to the temperature of the heat exchange fluid on the opposite side of the heat exchange surface area, a surface temperature of the tubes, T.sub.s, in the heat exchanger, and a level of the heat exchange fluid in said heat exchanger; and
- an analytical heat transfer module, connected to said medium surface film module and to said heat exchange fluid surface film module, for calculating said seventh signal corresponding to the nominal heat transfer coefficient (U.sub.ava) as a function of the film coefficient of the medium, h.sub.w, the film coefficient of the heat exchange fluid, h.sub.r, and structural data of the heat exchanger.
- 3. A heat exchanger performance monitor according to claim 1, wherein said actual heat transfer module comprises:
- a first difference unit having a first output signal corresponding to the difference between said first signal and said third signal;
- a second difference unit having a second output signal corresponding to the difference between said second signal and said third signal;
- a third difference unit, connected to said first and second difference units, having a third output signal corresponding to the difference between said second and first output signals;
- a first divider unit, connected to said first and second difference units, having a fourth output signal corresponding to the ratio of said second output signal to said first output signal;
- a natural logarithm function generator, connected to said first divider unit, having a fifth output signal corresponding to the natural logarithm of said fourth output signal;
- a second divider unit, connected to said natural logarithm function generator and to said third difference unit, having a sixth output signal corresponding to the ratio of said third output signal to said fifth output signal;
- a fourth difference unit having a seventh output signal corresponding to the difference between said second signal and said first signal;
- a first multiplier unit having an eighth output signal corresponding to the product of said fifth signal and said seventh output signal;
- a second multiplier unit, connected to said first multiplier unit, having a ninth output signal corresponding to the product of said eighth output signal and the ratio of the specific heat of the medium to the heat exchange surface area; and
- a third divider unit, connected to said second multiplier unit and to said second divider unit, for calculating said sixth signal corresponding to the actual heat transfer coefficient (U.sub.act) of the heat exchanger according to the relation: ##EQU10## wherein C.sub.p is the specific heat of the medium, M.sub.w is the mass flow rate of the medium, T.sub.hot is the input temperature of the medium, T.sub.cold is the output temperature of the medium, A is the heat exchange surface area, and T.sub.r is the temperature of the heat exchange fluid on the opposite side of the heat exchange surface area.
- 4. A heat exchanger performance monitor according to claim 1 wherein said medium is water.
- 5. A heat exchanger performance monitor according to claim 1 wherein said heat exchange fluid is water.
- 6. A heat exchanger performance monitor according to claim 1 wherein said heat exchanger is a pre-cooler.
- 7. A heat exchanger performance monitor according to claim 1 wherein said heat exchanger is an air-cooler.
- 8. A heat exchanger performance monitor according to claim 1 wherein said heat exchanger is an evaporator.
- 9. A heat exchanger performance monitor according to claim 1 wherein said heat exchanger is a condenser.
CROSS REFERENCE TO RELATED APPLICATION
This application is a continuation of application Ser. No. 592,498, filed Mar. 23, 1984, now abandoned.
US Referenced Citations (7)
Continuations (1)
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Number |
Date |
Country |
Parent |
592498 |
Mar 1984 |
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