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Purfleet's experience with a combined cycle CHPWARD, C. R.Paper technology (1989). 1992, Vol 33, Num 7, pp 18-20, issn 0958-6024Article

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

Packaged cogenerationKOSTRZEWA, L. J; DAVIDSON, K. G.ASHRAE journal. 1988, Vol 30, Num 2, pp 22-28, issn 0001-2491Article

When the cogen turbine takes offWILLIAMS, A. F.Energy engineering. 1987, Vol 84, Num 2, issn 0199-8595, 3Article

Modeling of a Biomass Gasification CHP Plant: Influence of Various Parameters on Energetic and Exergetic EfficienciesFRANCOIS, Jessica; MAUVIEL, Guillain; FEIDT, Michel et al.Energy & fuels. 2013, Vol 27, Num NOVDEC, pp 7398-7412, issn 0887-0624, 15 p.Conference Paper

Stand der Technik und Entwicklungstrends von Mikroturbinen für die Kraft-Wärme-Kopplung = State of the art and development trends of microturbine for power heat plantsRICHARTS, Fritz.Kraftwerksstechnisches kolloquium. 2002, 2Vol, vol 2, p. 7Conference Paper

A new method for distribution of consumed heat in a fuel and costs in power and heating plantsKADRNOZKA, J.District heating international. 1993, Vol 22, Num 9, pp 388-396, issn 0933-6540, 5 p.Article

Operational analysis of a small-capacity cogeneration system with a gas hydrate batteryOBARA, Shin'ya; KIKUCHI, Yoshinobu; ISHIKAWA, Kyosuke et al.Energy (Oxford). 2014, Vol 74, pp 810-828, issn 0360-5442, 19 p.Article

Stromwitschaftliche Zusammenarbeit mit dem Elektrizitätsversorgungsunternehmen bei Errichtung und Betrieb von BHKW = Collaboration économique avec les entreprises de distribution d'électricité pour la construction et l'exploitation de centrales BHKWBORN, P.VDI-Berichte. 1987, Num 630, pp 33-52, issn 0083-5560Conference Paper

Energy and exergy analysis of intercooled combustion-turbine based combined cycle power plantSANJAY; PRASAD, Bishwa N.Energy (Oxford). 2013, Vol 59, pp 277-284, issn 0360-5442, 8 p.Article

Complex analysis of the optimal coefficient of the share of cogeneration in district heating systemsGŁADYSZ, Paweł; ZIEBIK, Andrzej.Energy (Oxford). 2013, Vol 62, pp 12-22, issn 0360-5442, 11 p.Conference Paper

Parametric study on economic feasibility of microturbine cogeneration systems by an optimization approachGAMOU, Satoshi; YOKOYAMA, Ryohei; ITO, Koichi et al.Journal of engineering for gas turbines and power. 2005, Vol 127, Num 2, pp 389-396, issn 0742-4795, 8 p.Conference Paper

Dynamic simulation of a small modified Joule cycle reciprocating Ericsson engine for micro-cogeneration systemsLONTSI, Frederic; HAMANDJODA, Oumarou; FOZAO, Kennedy et al.Energy (Oxford). 2013, Vol 63, pp 309-316, issn 0360-5442, 8 p.Article

A new vigour in RigaDEN ELZEN, Aad.Modern power systems. 2004, Num SEP, pp 33-34, issn 0260-7840, 2 p.Article

Industrial cogeneration: analysis of energy parksBROCK, P; MANNO, V. P.Journal of energy engineering. 1987, Vol 113, Num 2, pp 61-77, issn 0733-9402Article

Installations de récupération et de réseau d'une turbine à vapeur de production combinéeKULICHIKHIN, V. V; KASHNIKOV, N. A; ANTONOV, EH. I et al.Promyšlennaâ ènergetika. 1987, Num 7, pp 32-35, issn 0033-1155Article

Umweltfreundlich umgerüstetes Heizkraftwerk Düsseldorf-Garath der Stadtwerke Düsseldorf AG ― Technik und Betriebserfahrungen = Centrale chaleur, force non polluante de Düsseldorf-Garath exploitée par les Usines municipales de Düsseldorf AG. Technique et expériences d'exploitationBEWERUNGE, J; KASSEBOHM, B.Fernwärme international. 1986, Vol 15, Num 1, pp 10-15, issn 0340-3572Article

Allocating resources and products in multi-hybrid multi-cogeneration: What fractions of heat and power are renewable in hybrid fossil-solar CHP?BERETTA, Gian Paolo; LORA, Paolo; GHONIEM, Ahmed F et al.Energy (Oxford). 2014, Vol 78, pp 587-603, issn 0360-5442, 17 p.Article

Analysis and assessment of a new organic Rankine based heat engine system with/without cogenerationHOGERWAARD, Janette; DINCER, Ibrahim; ZAMFIRESCU, Calin et al.Energy (Oxford). 2013, Vol 62, pp 300-310, issn 0360-5442, 11 p.Article

Energy and cost-efficient CHP systemsGas engineering and management. 2000, Vol 40, Num MAR, pp 13-15, issn 0306-6444, 2 p.Article

Optimal sizing of cogeneration systemsBULLARD, C. W; PIEN, S. J.ASHRAE transactions. 1987, Vol 93, pp 321-332, issn 0001-2505, 2Conference Paper

Die optimale Auslegung von Kondensationsturbinen für die Wärme-Kraft-Kopplung = Le dimensionnement optimal de turbines à condensation destinées à la production combinée de chaleur et forceURBANEK, J.Energietechnik. 1986, Vol 36, Num 7, pp 275-278, issn 0013-7421Conference Paper

A micro tri-generation system based on direct flame fuel cells for residential applicationsYUQING WANG; YIXIANG SHI; MENG NI et al.International journal of hydrogen energy. 2014, Vol 39, Num 11, pp 5996-6005, issn 0360-3199, 10 p.Article

Calculation of the power loss coefficient of steam turbine as a part of the cogeneration plantUROSEVIC, Dragan; GVOZDENAC, Dušan; GRKOVIC, Vojin et al.Energy (Oxford). 2013, Vol 59, pp 642-651, issn 0360-5442, 10 p.Article

A potential candidate for the sustainable and reliable domestic energy generation―Thermoelectric cogeneration systemZHENG, X. F; YAN, Y. Y; SIMPSON, K et al.Applied thermal engineering. 2013, Vol 53, Num 2, pp 305-311, issn 1359-4311, 7 p.Conference Paper

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