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Results 1 to 25 of 61005

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Computer aided analysis of slowpoke mini-reactor heat pump cogeneration systemSAMI, S. M; MERCADIER, Y; DUONG, T et al.Heat recovery systems & CHP. 1990, Vol 10, Num 2, pp 135-149, issn 0890-4332Article

Planung und Bau von Müllverbrennungsanlagen = Planification et construction des usines d'incinération = Planning and construction of incineration plantsBrennstoff-Wärme-Kraft. 1989, Vol 41, Num 7-8, pp 350-351, issn 0006-9612Article

Economie énergétique et couplage chaleur-force = Energy economics and cogenerationNGUYEN DINH LAN.Gas, Wasser, Abwasser. 1989, Vol 69, Num 2, pp 83-92, issn 0036-8008Article

Cost allocation for electricity and water for the Umm Al Nar West cogeneration plant using the exergy accounting methodALI EL-NASHAR.Desalination (Amsterdam). 1989, Vol 71, Num 1, pp 57-71, issn 0011-9164Article

Patmos solar water distillation plant demolishedTWIDELL, J.Sunworld. 1989, Vol 13, Num 1, pp 26-27, issn 0149-1938Article

Cogeneration plant modernizes with distributed controlsGAHN, A. H; JACKSON, W. R; HEUSZEL, C. B et al.Power engineering (Barrington, IL.). 1989, Vol 93, Num 10, pp 28-29, issn 0032-5961Article

Dewpoint evaluation supports lowering flue-gas temperatureSCHUETZENDUEBEL, W. G; CLEMONS, C. W; NOBLES, W. C et al.Power. 1989, Vol 133, Num 12, pp 49-50, issn 0032-5929Article

Getting the most out of wasteKEITH, T. R; BIELAWSKI, G. T; MAZUR, K. S et al.Modern power systems. 1989, Vol 9, Num 9, pp 71-76, issn 0260-7840, 4 p.Article

Optimal operation of cogeneration plants in industryTOMSIC, M; FOUAD AL-MANSOUR.Energy (Oxford). 1989, Vol 14, Num 8, pp 483-490, issn 0360-5442Article

Reconsider waste-fuel preparationBRETZ, E. A.Power. 1989, Vol 133, Num 6, pp 39-40, issn 0032-5929Article

Semass aims for total recovery of all resourcesPower. 1989, Vol 133, Num 10, pp S28-S32, issn 0032-5929, 3 p.Article

Technical and economical comparison between large capacity multi stage flash and reverse osmosis desalting plantsDARWISH, M. A; ABDEL-JAWAD, M; ALY, G. S et al.Desalination (Amsterdam). 1989, Vol 72, Num 3, pp 367-379, issn 0011-9164Article

Upgrading to mid-size DCS breathes life into old plantPower. 1989, Vol 133, Num 12, issn 0032-5929, 67Article

Production propre d'électricité et de chaleur à partir du charbon = Non pollutant production of electric and thermal energy from coalKRAEMER, W.Revue ABB. 1989, Num 5, pp 3-10Article

Cogeneration power-desalination plantsDARWISH, M. A.Desalination (Amsterdam). 1988, Vol 69, Num 1, pp 27-46, issn 0011-9164Article

Benefits of combined cycle cogenerationAHNER, D. J.Chemical engineering progress. 1988, Vol 84, Num 3, pp 49-53, issn 0360-7275Article

Co-generation in arid and cool climates: a new unified perspective using exergy analysisBARCLAY, F. J.Proceedings of the Institution of Mechanical Engineers. Part A. Power and process engineering. 1988, Vol 202, Num 2, pp 129-139, issn 0263-7138Article

Cogeneration by combining gas turbine engine with organic rankine cycleNAJJAR, Y. S. H; RADHWAN, A. M.Heat recovery systems & CHP. 1988, Vol 8, Num 3, pp 211-219, issn 0890-4332Article

Désalination. Recovery forecast after 1987 Disaster. Waste heat doubles efficiency. Multi-purpose use for offshore RO plant. RO effective for leachatesBAKER, G.World water. 1988, Vol 11, Num 10, pp 19-28, issn 0140-9050, 6 p.Article

Process/power integration offers new cogen-system opportunitiesPower. 1988, Vol 132, Num 3, pp 89-98, issn 0032-5929, 7 p.Article

ENSERCH Main actor in sweetwater project. West Texas cogenerationWATTS, J.Pipeline & gas journal. 1988, Vol 215, Num 12, pp 27-28, issn 0032-0188Article

Sur l'utilité de la création de la turbine à vapeur de production combinée T420/500-240KNOT'KO, P. N; SAFONOV, L. P; ALEKSO, A. I et al.Teploenergetika (Moskva, 1954). 1988, Num 3, pp 9-12, issn 0040-3636Article

Entwicklung eines Heizkraftwerks mit 40-t/h-Dampfkesseln und 12-MW-Gegendruckturbinen bei Einsatz neuer Technologien zur Rauchgasentschwefelung und zur Abwärmenutzung = Développement d'une centrale de production conjuguée de chaleur et d'énergie électrique comportant des chaudières à vapeur de 40 tonnes/heure et des turbines à contre-pression de 12 MW en utilisant de nouvelles technologies pour la désulfuration des gaz de fumées et pour la récupération de la chaleur perdue = Developing a heat and power plant with 40 t/h steam boilers and 12 MW back pressure turbines involving the use of new techniques for flue gas desulphulirization and waste heat utilizationSCHINDLER, G; KOHLER, E.Energietechnik. 1988, Vol 38, Num 10, pp 382-385, issn 0013-7421Article

Optimum running conditions for a gas turbine cogeneration systemSALA, J. M; VIAN, J.G.Heat recovery systems & CHP. 1988, Vol 8, Num 5, pp 411-418, issn 0890-4332Article

Combined heat and power generating systemsMARECKI, J.IEE energy series. 1988, Vol 3, issn 0262-1770, XXIII-184 pSerial Issue

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