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Results 1 to 25 of 227

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A comparison of two low grade heat recovery optionsWALSH, Conor; THORNLEY, Patricia.Applied thermal engineering. 2013, Vol 53, Num 2, pp 210-216, issn 1359-4311, 7 p.Conference Paper

Utilisation de chaleur à bas niveau énergétique dans les entreprises de l'industrie de la cellulose et du papierPAVLOV, V. S; KRYUKOV, L. A; BAKHAREV, V. N et al.Bumažnaâ promyšlennost'. 1985, Num 9, pp 18-19, issn 0007-5817Article

Opportunities for low-grade heat recovery in the UK food processing industryLAW, Richard; HARVEY, Adam; REAY, David et al.Applied thermal engineering. 2013, Vol 53, Num 2, pp 188-196, issn 1359-4311, 9 p.Conference Paper

Energetic and exergetic analysis of CO2- and R32-based transcritical Rankine cycles for low-grade heat conversionHUIJUAN CHEN; YOGI GOSWAMI, D; RAHMAN, Muhammad M et al.Applied energy. 2011, Vol 88, Num 8, pp 2802-2808, issn 0306-2619, 7 p.Article

Multi-vane expanders as prime movers in low-grade energy enginesBADR, O; PROBERT, D; O'COLLAGHAN, P. W et al.Proceedings of the Institution of Mechanical Engineers. Part A. Power and process engineering. 1986, Vol 200, Num 2, pp 117-125, issn 0263-7138Article

Nonlinear heat transfer processes in a two-phase thermofluidic oscillatorMARKIDES, Christos N; OSUOLALE, Adebayo; SOLANKI, Roochi et al.Applied energy. 2013, Vol 104, pp 958-977, issn 0306-2619, 20 p.Article

Modelling of a two-phase thermofluidic oscillator for low-grade heat utilisation: Accounting for irreversible thermal lossesSOLANKI, Roochi; MATHIE, Richard; GALINDO, Amparo et al.Applied energy. 2013, Vol 106, pp 337-354, issn 0306-2619, 18 p.Article

The role of heat exchange on the behaviour of an oscillatory two-phase low-grade heat engineSOLANKI, Roochi; GALINDO, Amparo; MARKIDES, Christos N et al.Applied thermal engineering. 2013, Vol 53, Num 2, pp 177-187, issn 1359-4311, 11 p.Conference Paper

Dynamic modelling of a two-phase thermofluidic oscillator for efficient low grade heat utilization: Effect of fluid inertiaSOLANKI, Roochi; GALINDO, Amparo; MARKIDES, Christos N et al.Applied energy. 2012, Vol 89, Num 1, pp 156-163, issn 0306-2619, 8 p.Conference Paper

A review of thermodynamic cycles and working fluids for the conversion of low-grade heatHUIJUAN CHEN; YOGI GOSWAMI, D; STEFANAKOS, Elias K et al.Renewable & sustainable energy review. 2010, Vol 14, Num 9, pp 3059-3067, issn 1364-0321, 9 p.Article

Demonstration of 10-Wp micro organic Rankine cycle generator for low-grade heat recoveryYAMADA, Noboru; TOMINAGA, Yoshihito; YOSHIDA, Takanori et al.Energy (Oxford). 2014, Vol 78, pp 806-813, issn 0360-5442, 8 p.Article

HEAT RECOVERY OF LOW TEMPERATURE WASTE HEAT IN INDUSTRIAL PROCESSESKHAZANOV SI; MALYSHEV AN; SAUNIN VI et al.1981; PROMYSLENNAJA ENERGETIKA; ISSN 508160; SUN; DA. 1981; NO 12; PP. 9-12; BIBL. 2 REF.Article

HIGH-TEMPERATURE HEAT PUMPS FOR INDUSTRYFERRIS R.1979; CIM BULL. (1974); ISSN 0317-0926; CAN; DA. 1979; VOL. 72; NO 812; PP. 73-74Article

Low grade thermal energy sources and uses from the process industry in the UKAMMAR, Yasmine; JOYCE, Sharon; NORMAN, Rosemary et al.Applied energy. 2012, Vol 89, Num 1, pp 3-20, issn 0306-2619, 18 p.Conference Paper

Low heat power generation systemMATSUDA, Kazuo.Applied thermal engineering. 2014, Vol 70, Num 2, pp 1056-1061, issn 1359-4311, 6 p.Conference Paper

A review of chemical heat pumps, thermodynamic cycles and thermal energy storage technologies for low grade heat utilisationCHAN, C. W; LING-CHIN, J; ROSKILLY, A. P et al.Applied thermal engineering. 2013, Vol 50, Num 1, pp 1257-1273, issn 1359-4311, 17 p.Article

Waste heat usage : The 12th UK National Heat TransferSWITHENBANK, Jim; FINNEY, Karen N; QUN CHEN et al.Applied thermal engineering. 2013, Vol 60, Num 1-2, pp 430-440, issn 1359-4311, 11 p.Article

L'utilisation des pompes à chaleur pour la récupération de la chaleur à bas niveau d'entreprises industriellesBOGUN, V. A; SHCHEGOL'KOV, E. E.Promyšlennaâ ènergetika. 1988, Num 5, pp 9-10, issn 0033-1155Article

The overall efficiencies of low-grade energy Rankine-cycle engines as functions of their performance factorsMORCOS, V. H.Heat recovery systems & CHP. 1987, Vol 7, Num 6, pp 473-479, issn 0890-4332Article

Power from low-grade heat sources. Projet SPHERE ― an evaluation of the Trilateral wet Vapour cycleSMITH, I. K; MARTIN, P. R.CME. Chartered mechanical engineer. 1985, Vol 32, Num 1, pp 30-32, issn 0306-9532Article

Technical and economic investigations of a low-temperature rankine-cycle heat engineCAVOLA, R. G; HAUSER, S. G.Intersociety energy conversion engineering conference. 18. 1983, pp 655-661Conference Paper

Experimental study on ejector refrigeration system powered by low grade heatYAPICI, R; YETISEN, C. C.Energy conversion and management. 2007, Vol 48, Num 5, pp 1560-1568, issn 0196-8904, 9 p.Article

Development of the trilateral flash cycle system. I: Fundamental considerationsSMITH, I. K.Proceedings of the Institution of Mechanical Engineers. Part A. Journal of power and energy. 1993, Vol 207, Num 3, pp 179-194, issn 0957-6509Article

Experimental research on novel adsorption chiller driven by low grade heat sourceWANG, D. C; SHI, Z. X; YANG, Q. R et al.Energy conversion and management. 2007, Vol 48, Num 8, pp 2375-2381, issn 0196-8904, 7 p.Article

Optimisation d'un ensemble échangeur-turbine supersonique pour cycle à ammoniac = Optimization of a set of heat exchanger/supersonic turbine for an ammoniac cycle recovery unitBOURASSIN, René.1983, 34 p.Report

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