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Results 1 to 25 of 514

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Ultrasonic spectroscopy of composite rings for Space station flywheel rotorsCOSGRIFF, Laura M; BAAKLINI, George Y.Materials evaluation. 2003, Vol 61, Num 9, pp 1013-1019, issn 0025-5327, 7 p.Article

Measurement and prediction of process-induced residual strains in thick wound composite ringsHA, Sung K; KIM, Hyung-Tae; SUNG, Tae-Hyun et al.Journal of composite materials. 2003, Vol 37, Num 14, pp 1223-1237, issn 0021-9983, 15 p.Article

Effect of a dual-mass flywheel on the impact-induced noise in vehicular powertrain systemsTHEODOSSIADES, S; GNANAKUMARR, M; RAHNEJAT, H et al.Proceedings of the Institution of Mechanical Engineers. Part D, Journal of automobile engineering. 2006, Vol 220, Num 6, pp 747-761, issn 0954-4070, 15 p.Article

Simulations of economical and technical feasibility of battery and flywheel hybrid energy storage systems in autonomous projectsPRODROMIDIS, George N; COUTELIERIS, Frank A.Renewable energy. 2012, Vol 39, Num 1, pp 149-153, issn 0960-1481, 5 p.Article

Design and analysis of passive homopolar null flux bearingsDAVEY, Kent; FILATOV, Alexei; THOMPSON, Richard et al.IEEE transactions on magnetics. 2005, Vol 41, Num 3, pp 1169-1175, issn 0018-9464, 7 p.Article

Experimental study of the stress distribution in the spokes of bare filament plywheelsFERRERO, C; GENTA, G; MARINARI, C et al.Composites. 1985, Vol 16, Num 4, pp 286-292, issn 0010-4361Article

Improving the dynamics of a flywheel energy storage system with superconducting magnetic bearingsKOMORI, Mochimitsu; KAWASHIMA, Toru.IEEE transactions on applied superconductivity. 2004, Vol 14, Num 2, pp 1655-1658, issn 1051-8223, 4 p.Conference Paper

A review of energy storage technologies for marine current energy systemsZHIBIN ZHOU; BENBOUZID, Mohamed; FREDERIC CHARPENTIER, Jean et al.Renewable & sustainable energy review. 2013, Vol 18, pp 390-400, issn 1364-0321, 11 p.Article

Analysis of dynamic behaviour of an energy accumulation system comprising a flywheel made of composites. III: Effect of the anisotropy of inertial, stiffness and dissipative characteristics of the flywheel on the rotation stabilityPORTNOV, G. G; BARINOV, I. N; KULAKOV, V. L et al.Mechanics of composite materials. 1993, Vol 29, Num 2, pp 212-221, issn 0191-5665Article

Selection of Magnetic Materials for Bearingless High-Speed Mobile Flywheel Energy Storage SystemsRECHEIS, Manes N; SCHWEIGHOFER, Bernhard; FULMEK, Paul et al.IEEE transactions on magnetics. 2014, Vol 50, Num 4, issn 0018-9464, 8000604.1-8000604.4, 1Conference Paper

Peak power reduction and energy efficiency improvement with the superconducting flywheel energy storage in electric railway systemHANSANG LEE; SEUNGMIN JUNG; YOONSUNG CHO et al.Physica. C. Superconductivity. 2013, Vol 494, pp 246-249, issn 0921-4534, 4 p.Conference Paper

Axial and journal bearings for superconducting flywheel systemsRASTOGI, Amit; RUIZ ALONSO, David; COOMBS, T. A et al.IEEE transactions on applied superconductivity. 2003, Vol 13, Num 2, pp 2267-2270, issn 1051-8223, 4 p., 2Conference Paper

The impact of resistive exercise training on the relationship between anthropometry and jump-based power indicesCARUSO, John F; CODAY, Michael A; RAMSEY, Charles A et al.Isokinetics and exercise science (Print). 2009, Vol 17, Num 1, pp 41-50, issn 0959-3020, 10 p.Article

Axial stiffness of journal bearings in zero-field and field-cooled modesRASTOGI, Amit; COOMBS, T. A; CAMPBELL, A. M et al.IEEE transactions on applied superconductivity. 2005, Vol 15, Num 2, pp 2242-2244, issn 1051-8223, 3 p., 2Conference Paper

Designs and analyses of flywheel energy storage systems using high-Tc superconductor bearingsSUNG, T. H; HAN, S. C; HAN, Y. H et al.Cryogenics (Guildford). 2002, Vol 42, Num 6-7, pp 357-362, issn 0011-2275Conference Paper

Entraînement récupératif à volant pour manipulateurs automatiques non-reprogrammablesYUDOVSKIJ, I. D.Vestnik mašinostroeniâ. 1985, Num 4, pp 9-11, issn 0042-4633Article

WHIRLING RESPONSE AND STABILITY OF FLEXIBLY MOUNTED, RING-TYPE FLYWHEEL SYSTEMSCHEN TLC; BERT CW.1980; J. MECH. DESIGN; USA; DA. 1980; VOL. 102; NO 2; PP. 369-378; BIBL. 21 REF.Article

DEVELOPMENT OF A LOW LOSS FLYWHEEL MAGNETIC BEARINGEISENHAURE D; OBERBECK G; DOWNER J et al.1979; INTERSOCIETY ENERGY CONVERSION ENGINEERING CONFERENCE. 14/1979/BOSTON MA; USA; WASHINGTON: AMERICAN CHEMICAL SOCIETY; DA. 1979; PP. 357-362; BIBL. 6 REF.Conference Paper

EVALUATION OF THE FLYWHEEL DRIVE CONCEPT FOR PASSENGER VEHICLESFRANK AA; BEACHLEY NH.1979; SAE TRANS.; ISSN 0096-736X; USA; DA. 1979 PUBL. 1980; VOL. 88; SECT. 1; PP. 230-241; BIBL. 16 REF.Article

Optimal Control of a Mechanical Hybrid Powertrain With Cold-Start ConditionsVAN BERKEL, Koos; KLEMM, Wouter; HOFMAN, Theo et al.IEEE transactions on vehicular technology. 2014, Vol 63, Num 4, pp 1555-1566, issn 0018-9545, 12 p.Article

Sizing and Energy Management of a Hybrid Locomotive Based on Flywheel and Accumulators : VEHICULAR ENERGY-STORAGE SYSTEMSJAAFAR, Amine; ROCKYS AKLI, Cossi; SARENI, Bruno et al.IEEE transactions on vehicular technology. 2009, Vol 58, Num 8, pp 3947-3958, issn 0018-9545, 12 p.Article

Flywheel energy storage systems: Review and simulation for an isolated wind power systemSEBASTIAN, R; PENA ALZOLA, R.Renewable & sustainable energy review. 2012, Vol 16, Num 9, pp 6803-6813, issn 1364-0321, 11 p.Article

Small motions of two linked platforms supporting moving flywheelsPLAKHTIENKO, N. P.Prikladnaâ mehanika (Kiev). 1990, Vol 26, Num 7, pp 103-107, issn 0032-8243, 5 p.Article

Inverter fed 10 kW advanced reluctance machine for flywheel energy storage systems operating from 12000 to 24000 RPMASPER, H. K; GRIEDER, T; RIESEN, H. J et al.Intersociety energy conversion engineering conference. 21. 1986, pp 889-894Conference Paper

Projet d'accumulateur d'énergie mécaniqueCHEREVATSKIJ, S. B; ROMASHOV, YU. P; SIDORIN, S. G et al.Mehanika kompozitnyh materialov. 1983, Num 6, pp 1116-1119Article

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