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Energy and exergy analysis of a combined Brayton/Brayton power cycle with humidification
Authors:AK Mossi Idrissa
Institution:Department of Mechanical and Aerospace Engineering, Royal Military College of Canada, Kingston, Canada
Abstract:ABSTRACT

First and second law approaches have been used to analyze the performance of a humidified Brayton/Brayton power cycle. The energy efficiency and exergy destruction rates consistently improved when the combustion temperature was increased. Both performance indicators improved, reached an optimum, and then deteriorated when the topping cycle pressure ratio increased, while their sensitivity to the bottoming cycle pressure ratio depended on the humidification rate used at the bottoming cycle. Upon increasing the mass flowrate of air through the bottoming cycle, the energy efficiency of the power cycle increased linearly, while the irreversibility generation had a non-monotonic variation. In all cases, a higher degree of humidification always resulted in greater first and second law performances.
Keywords:Combined gas power cycles  Brayton  Humidification  Energy  Exergy
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