화학공학소재연구정보센터
검색결과 : 21건
No. Article
1 Performance assessment of a biogas fuelled molten carbonate fuel cell-thermophotovoltaic cell-thermally regenerative electrochemical cycle-absorption refrigerator-alkaline electrolyzer for multigenerational applications
Erzen S, Acikkalp E, Hepbasli A
International Journal of Hydrogen Energy, 44(42), 23741, 2019
2 Exergy, Exergoeconomic and Enviroeconomic Evaluation of a Biomass Boiler-Steam Engine Micro-CHP System
Acikkalp E, Zeng T, Ortwein A, Burkhardt H, Klenk W
Chemical Engineering & Technology, 41(11), 2141, 2018
3 Optimum insulation thickness of the piping system with combined economic and environmental method
Acikkalp E, Kandemir SY
Energy Sources Part A-recovery Utilization and Environmental Effects, 40(23), 2876, 2018
4 Performance assessment of an ice rink refrigeration system through advanced exergoeconomic analysis method
Erol GO, Acikkalp E, Hepbasli A
Energy and Buildings, 138, 118, 2017
5 Performance analysis of irreversible molten carbonate fuel cell -Braysson heat engine with ecological objective approach
Acikkalp E
Energy Conversion and Management, 132, 432, 2017
6 Performance analysis of irreversible solid oxide fuel cell - Brayton heat engine with ecological based thermo-environmental criterion
Acikkalp E
Energy Conversion and Management, 148, 279, 2017
7 Ecologic and sustainable objective thermodynamic evaluation of molten carbonate fuel cell-supercritical CO2 Brayton cycle hybrid system
Acikkalp E
International Journal of Hydrogen Energy, 42(9), 6272, 2017
8 Assessment of nano-scale Stirling refrigerator using working fluid as Maxwell-Boltzmann gases by thermo-ecological and sustainability criteria
Acikkalp E, Savas AF, Caner N, Yamik H
Chemical Physics Letters, 658, 303, 2016
9 Advanced exergy analysis of an aircraft gas turbine engine: Splitting exergy destructions into parts
Sohret Y, Acikkalp E, Hepbasli A, Karakoc TH
Energy, 90, 1219, 2015
10 Advanced low exergoeconomic (ALEXERGO) assessment of a building along with its heating system at various stages
Acikkalp E, Yucer CT, Hepbasli A, Karakoc TH
Energy and Buildings, 87, 66, 2015