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A combined cycle plant with air and fuel recuperator for captive power application. Part 2: Inverse analysis and parameter estimationGOGOI, T. K; DAS, Ranjan.Energy conversion and management. 2014, Vol 79, pp 778-789, issn 0196-8904, 12 p.Article

Die neue Generation hochflexibler GuD-Anlagen mit KWK am Beispiel „Fortuna” = The new generation of highly-flexible combined cycle power plants taking the Fortuna power plant as an exampleGIEHL, Martin; BEER, Marcus; KREYENBERG, Olaf et al.VGB powertech. 2014, Num 5, pp 64-68, issn 1435-3199, 5 p.Article

Potential solar thermal integration in Spanish combined cycle gas turbinesANTONANZAS, J; JIMENEZ, E; BLANCO, J et al.Renewable & sustainable energy review. 2014, Vol 37, pp 36-46, issn 1364-0321, 11 p.Article

Exergetic and economic evaluation of the effect of HRSG configurations on the performance of combined cycle power plantsMOHAMMAD TAJIK MANSOURI; AHMADI, Pouria; ABDOLSAEID GANJEH KAVIRI et al.Energy conversion and management. 2012, Vol 58, pp 47-58, issn 0196-8904, 12 p.Article

Exergoenvironmental optimization of Heat Recovery Steam Generators in combined cycle power plant through energy and exergy analysisABDOLSAEID GANJEH KAVIRI; MOHAMMAD NAZRI MOHD. JAAFAR; THOLUDIN MAT LAZIM et al.Energy conversion and management. 2013, Vol 67, pp 27-33, issn 0196-8904, 7 p.Article

Energy and exergy based performance analyses of a solid oxide fuel cell integrated combined cycle power plantGOGOI, T. K; SARMAH, P; DEB NATH, D et al.Energy conversion and management. 2014, Vol 86, pp 507-519, issn 0196-8904, 13 p.Article

Thermodynamic analysis of an integrated power generation system driven by solid oxide fuel cellJIANGFENG WANG; ZHEQUAN YAN; SHAOLIN MA et al.International journal of hydrogen energy. 2012, Vol 37, Num 3, pp 2535-2545, issn 0360-3199, 11 p.Article

Exergetic analysis of solar concentrator aided natural gas fired combined cycle power plantSIVA REDDY, V; KAUSHIK, S. C; TYAGI, S. K et al.Renewable energy. 2012, Vol 39, Num 1, pp 114-125, issn 0960-1481, 12 p.Article

Fuel switching in power-plants: Modelling and impact on the analysis of energy projectsVARYMPOPIOTIS, G; TOLIS, A; RENTIZELAS, A et al.Energy conversion and management. 2014, Vol 77, pp 650-667, issn 0196-8904, 18 p.Article

Proposed combined-cycle power system based on oxygen-blown coal partial gasificationGUOQIANGZHANG; YONGPINGYANG; HONGGUANGJIN et al.Applied energy. 2013, Vol 102, pp 735-745, issn 0306-2619, 11 p.Article

A combined cycle plant with air and fuel recuperator for captive power application, Part 1: Performance analysis and comparison with non-recuperated and gas turbine cycle with only air recuperatorGOGOI, T. K.Energy conversion and management. 2014, Vol 79, pp 771-777, issn 0196-8904, 7 p.Article

Los ciclos combinados son el «hada madrina» del gas natural = Combined cycles are the «beneficient deïties» for natural gasÁLVAREZ PELEGRY, E.Oilgas. 1999, Vol 32, Num 367, pp 19-22, issn 0030-1493, 3 p.Article

Off-design performance of power plants: an integrated gasification combined-cycle exampleERBES, M. R; PHILLIPS, J. N; JOHNSON, M. S et al.Science (Washington, D.C.). 1987, Vol 237, Num 4813, pp 379-383, issn 0036-8075Article

Parametric analysis of combined gas-steam cyclesCERRI, G.Journal of engineering for gas turbines and power. 1987, Vol 109, Num 1, pp 46-54, issn 0742-4795Article

Synthetic fuel technology finds increased application in petroleum coke utilizationSTEWART, J. T; FABUSS, B. M; JOHNSON, K. M et al.Energy efficiency in the eighties. Energy technology conference. 9. 1982, pp 681-695Conference Paper

Untersuchungserebnisse zur Ammoniumfahrweise einer Kondensatreinigungsanlage bei GuD-Kraftwerken = Experimental results of ammonia operated condensate polishing plants in combined cycle power plantsOCHSMANN, Christian; JAHR, Henrik; GLÜCK, Wolfgang et al.VGB powertech. 2013, Num 3, pp 67-71, issn 1435-3199, 5 p.Article

Combined cycle plant utilising coal-fired pressurised fluidised bed combustionROBERTS, A. G; PILLAI, K. K.Turbines à gaz. Congrès international des machines à combustion. 15. 1983, pp 889-901Conference Paper

Optimal utilisation of heat demand in district heating system—A case studyGEBREMEDHIN, Alemayehu.Renewable & sustainable energy review. 2014, Vol 30, pp 230-236, issn 1364-0321, 7 p.Article

A hydrogen and oxygen combined cycle with chemical-looping combustionXIAOSONG ZHANG; SHENG LI; HUI HONG et al.Energy conversion and management. 2014, Vol 85, pp 701-708, issn 0196-8904, 8 p.Conference Paper

Gas Turbine Combined Cycle Dynamic Simulation: A Physics Based Simple ApproachGÜLEN, S. Can; KIHYUNG KIM.Journal of engineering for gas turbines and power. 2014, Vol 136, Num 1, issn 0742-4795, 011601.1-011601.15Article

Small-medium scale polygeneration systems: Methanol and power productionNARVAEZ, A; CHADWICK, D; KERSHENBAUM, L et al.Applied energy. 2014, Vol 113, pp 1109-1117, issn 0306-2619, 9 p.Article

Modeling and multi-objective exergy based optimization of a combined cycle power plant using a genetic algorithmABDOLSAEID GANJEH KAVIRI; MOHAMMAD NAZRI MOHD. JAAFAR; THOLUDIN MAT LAZIM et al.Energy conversion and management. 2012, Vol 58, pp 94-103, issn 0196-8904, 10 p.Article

Thermoeconomic optimisation of heat recovery steam generators of combined cycle gas turbine power plants considering off-design operationROVIRA, A; SANCHEZ, C; MUNOZ, M et al.Energy conversion and management. 2011, Vol 52, Num 4, pp 1840-1849, issn 0196-8904, 10 p.Article

Biomass Integrated Gasification Combined Cycle for heat and power at ethanol plantsDE KAM, Matthew J; VANCE MOREY, R; TIFFANY, Douglas G et al.Energy conversion and management. 2009, Vol 50, Num 7, pp 1682-1690, issn 0196-8904, 9 p.Article

Avoid using average values in capacity-factor calculationsAHNER, D. J; HALL, E. W.Power. 1985, Vol 129, Num 8, pp 49-52, issn 0032-5929Article

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