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kw.\*:("Ciclo Stirling")

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Entwicklung von Stirling-Kältemaschinen alternativ zu Kaltdampf-Kältemaschinen = Developement of Stirling refrigerating machines as an alternative to cold-steam refrigerating machinesSCHIKORA, H; SIEGEL, A; SCHIEFELBEIN, K et al.Sanitär und Heizungstechnik. 1998, Vol 63, Num 10, pp 116-120, issn 0036-4401Article

The effect of regenerative losses on the efficiency of a Stirling heat engine at maximum power outputCHEN, J.International journal of ambient energy. 1997, Vol 18, Num 2, pp 107-112, issn 0143-0750Article

Test results for a commercial, low vibration, linear, Stirling cycle cryocoolerSPARR, L; CASTLES, S; JAMES, E et al.Advances in cryogenic engineering. 1996, Vol 41, pp 1569-1576, issn 0065-2482, BConference Paper

Thermoeconomic optimization and parametric study of an irreversible Stirling heat pump cycleTYAGI, S. K; JINCAN CHEN; KAUSHIK, S. C et al.International journal of thermal sciences. 2004, Vol 43, Num 1, pp 105-112, issn 1290-0729, 8 p.Article

Performance evaluation of an optimized two-stage, free-displacer plastic Stirling cryocooleer with gap regeneratorATREY, M. D; HEIDEN, C.Cryogenics (Guildford). 1996, Vol 36, Num 1, pp 47-52, issn 0011-2275Article

Germanium gamma-ray detector operation with a flight-like mechanical coolerGULLY, W. J; HOPKINS, R. A; CORK, C. P et al.Cryogenics (Guildford). 1996, Vol 36, Num 10, pp 843-848, issn 0011-2275Conference Paper

Frequency stability of a tunable diode laser mounted in a compact Stirling cycle coolerDURSO, S. S; MAY, R. D; TUCHSCHERER, M. A et al.Applied optics. 1989, Vol 28, Num 18, pp 3791-3792, issn 0003-6935Article

Long-life cryocooler performance and productionBARR, M. C; PRICE, K. D; PRUITT, G. R et al.Cryogenics (Guildford). 2004, Vol 44, Num 6-8, pp 409-412, issn 0011-2275, 4 p.Conference Paper

Optimization of pulse tubesDE WAELE, A. T. A. M.Cryogenics (Guildford). 1999, Vol 39, Num 1, pp 13-15, issn 0011-2275Article

Regenerator dynamics in the harmonic approximationDE WAELE, A. T. A. M; HOOIJKAAS, H. W. G; STEIJAERT, P. P et al.International cryogenic engineering conference. 1998, pp 157-160, isbn 0-7503-0597-5Conference Paper

Analysis of an endoreversible Stirling coolerCHIH WU.Energy conversion and management. 1993, Vol 34, Num 12, pp 1249-1253, issn 0196-8904Article

Multisimulation model for Stirling and Vuilleumier cycle machinesSEKIYA, H; YAMASHITA, I.JSME international journal. Series B, fluids and thermal engineering. 1993, Vol 36, Num 2, pp 383-390, issn 1340-8054Article

Optimization of design parameters of Stirling cycle machineATREY, M. D; BAPAT, S. L; NARAYANKHEDKAR, K. G et al.Cryogenics (Guildford). 1993, Vol 33, Num 10, pp 951-957, issn 0011-2275Article

Measurement of losses in a Stirling cycle coolerORLOWSKA, A. H; DAVEY, G.Cryogenics (Guildford). 1987, Vol 27, Num 11, pp 645-651, issn 0011-2275Article

Using cryogenic exergy of liquefied natural gas for electricity production with the Stirling cycleHUI DONG; LIANG ZHAO; SONGYUAN ZHANG et al.Energy (Oxford). 2013, Vol 63, pp 10-18, issn 0360-5442, 9 p.Article

Progress in two-stage superfluid stirling refrigerationPATEL, A. B; BRISSON, J. G.Advances in cryogenic engineering. 2000, Vol 45, pp 1647-1652, issn 0065-2482, BConference Paper

Optimum performance of an irreversible Stirling cryocoolerFENG WU; LINGEN CHEN; CHIH WU et al.International journal of ambient energy. 1999, Vol 20, Num 1, pp 39-44, issn 0143-0750Article

Stirlingkühler ILK 15 : Kältemaschine für 15 W bei 80 K = Stirling cooler ILK 15 : Refrigeration of 15 W at 80 KTZSCHEUTSCHLER, A; HEMPEL, O; BINNEBERG, A et al.KI. Luft- und Kältetechnik. 1998, Vol 34, Num 11, pp 540-542, issn 0945-0459Article

Interface loss in the small amplitude orifice pulse tube modelBAUWENS, L.Advances in cryogenic engineering. 1998, Vol 43, pp 1933-1940, issn 0065-2482, BConference Paper

Stirling refrigeration systems as an alternative to Perkins-Evans-cyclesSTEIMLE, F; SCHIEFELBEIN, K.Science et technique du froid. 1997, pp 173-181, issn 0151-1637, isbn 2-903633940Conference Paper

Dynamic and thermodynamic analysis of doubly motorized miniature Stirling cryocooler using double coil linear motorsGAUNEKAR, A. S; NARAYANKHEDKAR, K. G; BAPAT, S. L et al.Cryogenics (Guildford). 1994, Vol 34, Num 1, pp 43-50, issn 0011-2275Article

Dynamic modelling of Stirling cryorefrigeratorMINAS, C.Cryogenics (Guildford). 1994, Vol 34, Num 1, pp 37-41, issn 0011-2275Article

Pneumatically driven springless expander for 1 W split stirling cryocoolerMEROMI, A; VEPRIK, A.Proceedings of the International Cryogenic Engineering Conference. 1994, Vol 34, pp 195-198, issn 0308-5422Conference Paper

Regenerative characteristics of magnetic or gas Stirling refrigeration cycleCHEN, J; YAN, Z.Cryogenics (Guildford). 1993, Vol 33, Num 9, pp 863-867, issn 0011-2275Article

Thermodynamic analysis of the Stirling cycleTAILOR, P. R; NARAYANKHEDKAR, K. G.Cryogenics (Guildford). 1988, Vol 28, Num 1, pp 36-45, issn 0011-2275Article

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