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This model considers interactions and quadratic effects of different operating conditions and predicts the maximum or minimum power production over the entire working range of the parameters.
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The introduced index relies on maximum hydrogen production through minimum excess power production of resources.
As given in the objective function in (10), the maximum hydrogen production rate considering minimum excess power production of combined wind turbine and photovoltaic system is evaluated in this study.
The efficiency of a multistage endoreversible combined cycle power plant corresponding to maximum power production or minimum operating cost is observed to be identical to that of a single endoreversible heat engine under the same operating conditions.
The originality of the study is to use an objective function by defining a new efficiency term for the maximum power production with the minimum exergy destruction which results 23.49% increase in the thermal efficiency and, in the meantime, 23.61% decrease in the exergy destruction.
The obtained optimal configuration presented maximum exergy efficiency, hydrolyzed bagasse fraction, capital costs and ethanol production rate, and minimum cooling water consumption and power production rate.
The optimal mass-transfer time, minimum entropy production rate and minimum power input are calculated.
This regime has a maximum thermal efficiency and a minimum entropy generation at corresponding maximum power production.
They need to operate continuously at a high level of reliability and availability to achieve established plant production quotas with minimum power usage and without loss of revenue.
In this context, it should be checked if the minimum proportion of combined heat and power production can be seasonally differentiated if bioenergy plants show a seasonally strong diverging operation.
The cost can be significantly reduced using the minimum required number of wind turbines for specific power production, occupying at the same time the least possible acreage of land.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com