Distributed system for optimizing the performance of a plurality of multi-stage steam turbines using function blocks
First Claim
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1. A distributed system for optimizing the performance of a plurality of multi-stage steam turbines comprising:
- means for measuring the steam output flow from the multi-stages of said steam turbines and establishing a series of steam output signals;
means for measuring the output power produced by said steam turbines and establishing a series of output power signals;
limit setting means responsive to said series of output power signals and said series of steam output signals for establishing a logic 1 signal if said steam output and output power signals are within preset limits and a logic 0 signal if said steam output and output power signals are not within preset limits;
limit sequencing means responsive to said logic signals of said limit setting means for establishing either a logic 1 signal, a logic 0 signal, or a high level output signal G;
means for measuring the efficiency of each of the multi-stages of said steam turbines and establishing a series of efficiency signals;
means establishing a load increase limit signal in response to output signals from said efficiency measuring means and said limit sequencing means;
pressure measuring means for measuring the pressure of the outputs of said turbines and establishing a signal indicative thereof; and
load allocation means responsive to the output signal from said pressure measuring means and said load increase limit establishing means for assigning a decrease in load demand to the lowest efficiency turbine and an increase in load demand to the highest efficiency turbine.
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Abstract
A system for optimizing the performance of a plurality of energy conversion devices is disclosed. Measurements of fluid flow into and out of the energy conversion devices, the efficiencies of the conversion devices and the power produced by the conversion devices are used as inputs to function blocks in a logic arrangements. The function blocks cause a decrease in load demand to be applied to the energy conversion device having the lowest efficiency and an increase in load demand to be applied to the energy conversion device having the highest efficiency.
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Citations
5 Claims
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1. A distributed system for optimizing the performance of a plurality of multi-stage steam turbines comprising:
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means for measuring the steam output flow from the multi-stages of said steam turbines and establishing a series of steam output signals; means for measuring the output power produced by said steam turbines and establishing a series of output power signals; limit setting means responsive to said series of output power signals and said series of steam output signals for establishing a logic 1 signal if said steam output and output power signals are within preset limits and a logic 0 signal if said steam output and output power signals are not within preset limits; limit sequencing means responsive to said logic signals of said limit setting means for establishing either a logic 1 signal, a logic 0 signal, or a high level output signal G; means for measuring the efficiency of each of the multi-stages of said steam turbines and establishing a series of efficiency signals; means establishing a load increase limit signal in response to output signals from said efficiency measuring means and said limit sequencing means; pressure measuring means for measuring the pressure of the outputs of said turbines and establishing a signal indicative thereof; and load allocation means responsive to the output signal from said pressure measuring means and said load increase limit establishing means for assigning a decrease in load demand to the lowest efficiency turbine and an increase in load demand to the highest efficiency turbine. - View Dependent Claims (2, 3, 4, 5)
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Specification