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Thermo-economic analysis 8 Geothermal energy 2 Organic Rankine Cycle 2 Solar energy 2 CO2 capture 1 Carbon capturing 1 Coal gasification 1 Combined heat and power 1 Efficiency 1 Energy and exergy analysis 1 Exergy 1 Freshwater 1 Gas turbine cogeneration plant 1 Gasification 1 Hydrate forming zone 1 Integrating solar thermal technology 1 Levelized cost of electricity 1 Liquefied natural gas 1 Low-grade waste heat 1 Multi-objective genetic algorithm 1 Natural gas 1 Natural gas pressure drop station 1 ORC 1 Optimization 1 Organic Rankine cycle 1 Parabolic trough collector 1 Productivity 1 Renewable energy 1 SOFC 1 STIG 1 Solar chimney power plant 1 Solar distillation systems 1 Solar thermal power plants 1 Solid oxide fuel cell 1 Woodchips 1 geothermal power generation 1 thermo-economic analysis 1 zeotropic mixtures 1
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Undetermined 8 Free 1
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Article 9
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Undetermined 9
Author
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Al-Sulaiman, Fahad A. 1 Arabkoohsar, A. 1 Brüggemann, Dieter 1 Chang, Brian Y. 1 Dabwan, Yousef N. 1 Du, Xiaoze 1 Farzaneh-Gord, M. 1 Fiaschi, Daniele 1 Ghezelbash, R. 1 Gholamalizadeh, Ehsan 1 Guo, Cong 1 Habib, Mohamed A. 1 Heberle, Florian 1 Kaushik, S.C. 1 Kim, Man-Hoe 1 Koury, R.N.N. 1 Litster, Shawn 1 Machado, L. 1 Mazzucco, Andrea 1 Mokheimer, Esmail M.A. 1 Pilevari, L. 1 Ranjan, K.R. 1 Rokni, Masoud 1 Said, Syed A.M. 1 Siefert, Nicholas S. 1 Tempesti, Duccio 1 Xue, Xiaodi 1 Yang, Lijun 1 Yang, Yongping 1
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Energy 5 Applied Energy 2 Energies 1 Renewable and Sustainable Energy Reviews 1
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RePEc 9
Showing 1 - 9 of 9
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Thermo-Economic Evaluation of Organic Rankine Cycles for Geothermal Power Generation Using Zeotropic Mixtures
Heberle, Florian; Brüggemann, Dieter - In: Energies 8 (2015) 3, pp. 2097-2124
We present a thermo-economic evaluation of binary power plants based on the Organic Rankine Cycle (ORC) for geothermal power generation. The focus of this study is to analyse if an efficiency increase by using zeotropic mixtures as working fluid overcompensates additional requirements regarding...
Persistent link: https://www.econbiz.de/10011203087
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Development and assessment of integrating parabolic trough collectors with steam generation side of gas turbine cogeneration systems in Saudi Arabia
Mokheimer, Esmail M.A.; Dabwan, Yousef N.; Habib, Mohamed A. - In: Applied Energy 141 (2015) C, pp. 131-142
Integrating solar thermal technologies with gas turbine cogeneration plants reduces fuel consumption and consequently results in a considerable reduction in gas emissions. These technologies are expected to play an important role in solving the global environmental and energy problems. The...
Persistent link: https://www.econbiz.de/10011189397
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Thermodynamic analysis and optimization of a two-stage organic Rankine cycle for liquefied natural gas cryogenic exergy recovery
Xue, Xiaodi; Guo, Cong; Du, Xiaoze; Yang, Lijun; Yang, … - In: Energy 83 (2015) C, pp. 778-787
A two-stage ORC (organic Rankine cycle) is proposed, by which low-grade heat of exhaust flue gas of a 123.5 MW gas-steam combined cycle power generating unit, as well as the cryogenic energy of LNG (liquefied natural gas) can be effectively recovered and utilized. R227ea and R116 are selected...
Persistent link: https://www.econbiz.de/10011264386
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Employing geothermal heat exchanger in natural gas pressure drop station in order to decrease fuel consumption
Farzaneh-Gord, M.; Ghezelbash, R.; Arabkoohsar, A.; … - In: Energy 83 (2015) C, pp. 164-176
been chosen as a case study. Comprehensive thermo-economic analysis has been carried out on the proposed system. The …
Persistent link: https://www.econbiz.de/10011264412
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Thermo-economic triple-objective optimization of a solar chimney power plant using genetic algorithms
Gholamalizadeh, Ehsan; Kim, Man-Hoe - In: Energy 70 (2014) C, pp. 204-211
A triple-objective design method was developed for a solar chimney power plant system that simultaneously optimizes the expenditure, total efficiency, and power output. A multi-objective genetic algorithm was used to obtain the best combination of geometric parameters of the power plant. The...
Persistent link: https://www.econbiz.de/10010811351
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Exergy and economic analysis of a CaO-looping gasifier for IGFC–CCS and IGCC–CCS
Siefert, Nicholas S.; Chang, Brian Y.; Litster, Shawn - In: Applied Energy 128 (2014) C, pp. 230-245
We present exergy and economic analyses for two potential advanced coal-based power plants with CO2 capture and sequestration. Each system generates three products: electricity, carbon dioxide compressed to 15MPa, and pre-calcined feedstock for cement kilns. First, we analyzed a system that...
Persistent link: https://www.econbiz.de/10010784920
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Thermo-economic analysis of a solid oxide fuel cell and steam injected gas turbine plant integrated with woodchips gasification
Mazzucco, Andrea; Rokni, Masoud - In: Energy 76 (2014) C, pp. 114-129
This paper presents a thermo-economic analysis of an integrated biogas-fueled solid oxide fuel cell (SOFC) system for …% respectively which are significantly greater than conventional 10 MWe plants fed by biomass. Thermo-economic analysis provides an …
Persistent link: https://www.econbiz.de/10011055863
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Energy, exergy and thermo-economic analysis of solar distillation systems: A review
Ranjan, K.R.; Kaushik, S.C. - In: Renewable and Sustainable Energy Reviews 27 (2013) C, pp. 709-723
been made to review works on economic and thermo-economic analysis of solar stills. The cost of desalination through solar …
Persistent link: https://www.econbiz.de/10010702999
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Thermo-economic assessment of a micro CHP system fuelled by geothermal and solar energy
Tempesti, Duccio; Fiaschi, Daniele - In: Energy 58 (2013) C, pp. 45-51
thermo-economic analysis. The system is sized in base of the weather data of a city in the centre of Italy in three different …) are presented. The results of the thermo-economic analysis show that R245fa allows the lowest price of electricity …
Persistent link: https://www.econbiz.de/10011054992
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