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( {text{HR}} ) Generators' heat rate (( {text{Kcal}}/{text{Kwh}} )). ( w^{text{fuel}} ) Generation unit cost for fuel consumption (( {text{rial}}/{text{Kcal}} )). ( w^{{{text{SO}}_{2} }} ) Generation unit cost for emission of sulfur oxide (( {text{rial}}/{text{Kcal}} )). ( r^{{{text{SO}}_{2} }} ) Emission rate of sulfur oxide for the generation unit.
Generators' heat rate (( {text{Kcal}}/{text{Kwh}} )).
Because the generators' heat will be used to run the cooling systems, it frees up more electricity for the communications equipment, so fewer generators will be needed.
To evaluate the energy utilization, one combined cycle unit and one cogeneration system, consisting of gas turbine generators, heat recovery steam generators, one steam turbine generator with steam extracted for process have been analyzed.
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Qboi generator heat input (kW).
This energy analysis leads to generator heat flow rate, which is in this case about 70.4 kW.
The highest exergetic cost was found in the solution coming out of the rectifier to the generator heat exchanger.
By partially replacing the refractory wall in thickness with a thermoelectric generator, heat loss is kept at the current 9 kW/m2.
The model includes an off-grid wind turbine generator, heat producers, chillers, a water supply network and terminal loads.
For hybrid heat pump, the different coefficients of performance, the primary energy ratio, the generator heat, and the compressor power are analyzed for different values of compressor proportion.
GE Open image in new window (heat input from the generator heat source) and Q. AB Open image in new window (heat output to the absorber heat sink) may be defined as Q.
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