Bibliografia Tesi

RIFERIMENTI BIBLIOGRAFICI

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[1.1]   Kelly, J. M., Skinner, R. I. and Heine, A. J., (1972), “Mechanisms of Energy Absorption in Special Devices for Use in Earthquake Resistant Structures”, Bulletin of the New Zeland Natoinal Society for Eartquake Engineering, Vol. 5, pp. 63-88.

 [1.2]   Skinner, R.I., Kelly, J.M., and Heine, A.J., (1975), “Hysteresis Dampers for Earthquake-Resistant Structures”, Earthquake engineering and Structural Dynamics, Vol. 3, pp. 287-296.

 [1.3]  Mayers, R.L. and Mowbray, n.A., (1975) “The effect of Coulomb Damping on Multidegree of Freedom Elastic Structures”, Earthquake Engineering and Structural Dynamics, vol. 3, pp. 275-286.

 [1.4]   Keightley, W. O., (1977), “Building Damping by Coulomb Friction”, Sixth World Conference on Earthquake Engineering, New Dehli, India, pp. 3043-3048.

 [1.5]   Pall, A.S., and Marsh, C., and Fazio, P., (1980), “Friction Joints for Seismic Control of Large Pannel Structures”, Journal of Prestressed Concrete Institute, Vol. 25, No. 6, pp 38-61.

 [1.6]   Pall, A.S., and Marsh, C., (1982), “Response of Friction Damper Braced Frames”, Journal of structural Division, ASCE, Vol. 108, No ST6, pp. 1313-1323.

 [1.7]   Aiken, I. D. and Kelly, J. M. , (1990), Earthquake simulator testing and analytical studies of two energy-absorbing systems for multistory structures, technical report UCB/EERC-90/03, University of California, Berckeley, CA.

 [1.8]   FitzGerald, T. F., Anagnos, T., Goodson, M., and Zsutty, T., (1989), “Slotted Bolted Connections in Aseismic Design for Concentrically Braced Connections”, Earthquake Spectra, Vol. 5, No. 2, pp. 383-391.

 [1.9]   Williams, M.L., (1964), “Structural Analysis of  Viscoelastic Materials”, AIAA Journal, Vol. 2, pp. 785-808.

 [1.10] Shen, K.L., and Soong, T.T., (1995), “Modelling of Viscoelastic Dampers for Structural Applications”, Journal of Engineering Mechanics, ASCE, Vol. 121, No. 6, pp. 694-701.

 [2.1]   Dargush, G.F. and Soong, T. T., (1995), “Behavior of metallic plate dampers in seismic passive energy dissipation systems”, Earthquake Spectra, Vol. 11, Nò. 4, pp. 545-568.

 [2.2] Constantinou, M. C., Symans, M. D., Tsopelas, P., and Taylor, D- P., (1993), “Fluid Viscous Dampers in Applications od Seismic Energy Dissipation and Seismic Isolation”, Procedings of ATC 17.1 on Seismic Isolation, Energy Dissipation and Active Control, San Francisco, CA, Vol. 2, pp. 581-591.

 [2.3]   Constantinou, M. C., and Symans, M. D. (1993), “Experiment study of seismic response of buildings with supplemental  fluid dampers”, Structural Design at Tall Buildings, Vol. 2, No. 2, pp. 93.132.

 [2.4]   Dargush, G.F ., (1999) Cyclic Elastoplastic Analysis of Metallic Plate Dampers, http://civil.eng.buffalo.edu/users_ntwk/computational/benchmark_problems/Dargush02.html

 [2.5]   Skinner, R.I., Tyler,R. G., Heine, A. J., and Robinson, W. H., (1980), “Hysteresis Dampers for the Protection of Structures from Earthquakes”, Bulletin of the New Zealand Society of Earthquake Engineering, Vol 13, No. 1, pp. 22-36.

 [2.6]   Bergman, D. M. and Goel, S. C., (1987), “Evaluation of Cyclic Testing of Steel-Plate Devices for Added Damping and Stiffness”, Technical Report UMCE 87-10, The University of Michigan, Ann Arbor, MI.

 [2.7]   Whittaker, A.S. Bertero, V., Alonso, J., and Thompson, C., (1991), “Seismic Testing of Steel Plate Energy Dissipation Devices”, Earthquake Spectra, vol. 7, No. 4, pp. 563-604.

 [2.8]   Martinez-Romero, E., (1993), “Experiences on the Use of Supplemental Energy Dissipators on Building Structures“, Earthquake Spectra, Vol. 9, No. 3, pp. 581-624.

 [2.9]   Perry, C. L., Fierro, E. A., Sedarat, H., and Scholl, R. E., (1993), “Seismic Upgrade in San Francisco Using Energy Dissipation Devices” Earthquake Spectra, Vol. 11, No. 2, pp. 249-267.

 [2.10] Tsai, C.S. and Tsai, K.C., (1995) “TPEA Device as Seismic Damper for High-Rise Buildings”, Journal of Engineering Mechanics, ASCE, vol. 121, No. 10, pp. 1075-1081.

 [2.11] Mroz, Z. (1967), ``On the Description of Anisotropic Work Hardening, J. Mech. Phys. Solids, 15, 163-175.

 [2.12] Krieg, R. D., (1975) “A Practical Two Surface Plasticity Theory”, Journal of Applied Mechanics, ASME, Vol. E42, pp.641-646.

 [2.13]   Valanis, K.C., (1971) “A Theory of Viscoplasticity without a Yield Surface”, Archives of Mechanics, Vol. 23, pp. 517-534.

 [2.14]   Valanis, K.C. (1980), ``Fundamental Consequence of a New Intrinsic Time Measure-Plasticity as a Limit of the Endochronic Theory,'' Arch. Mech., 32, 171.

 [2.15]   UNI ENV 1993 - Eurocodice 3 Progettazione delle strutture di acciaio.

 [3.1]   Terenzi, G., Tesi di Dottorato, Università degli Studi di Roma,“Effetti dissipativi nell’isolamento sismico”.

 [3.2]   S. Sorace, G. Terenzi. "Design assessment of fluid viscous dampers for base-isolation systems", submitted for publication in the ASCE Journal of Structural Engineering, January 2000.

 [4.1]   Rollo, M., (2002) Tesi di Laurea, Università degli Studi di Udine “Analisi del danno sismico di due telai a grande scala in presenza o meno di un sistema di controventi dissipativi”.

 [5.1] Cheng e Pantelides (1988) “Optimal placement of actuators for structural control”, Technical Report NCEER-88-0037, National Center for Earthquake Engineering Research. Buffalo, NY.

 [5.2]   Zhang, R.H., Soong, T.T., (1992) “Seismic Seismic Design of Viscoelastic Dampers for Structural Applications”, Journal of Structural Engineering, ASCE, Vol. 118, No. 5, pp. 1375-1392..

 [7.1]   Ministero dei lavori pubblici, D. M. 16/01/1996 “Norme tecniche per le costruzioni in zone sismiche”, Gazzetta Ufficiale, N°29, 5 Febbraio 1996.

 [7.2]   Ministero dei lavori pubblici, Circ. 10/04/1997 N° 65/AA.GG. “Istruzioni per l’applicazione delle “Norme tecniche per le costruzioni in zone sismiche” di cui al decreto ministeriale 16 Gennaio 1996.”, Gazzetta Ufficiale, N°97-suppl.,28.

 [7.3]   UNI ENV 1998,  Eurocodice 8: Indicazioni progettuali per la resistenza sismica delle strutture

 [7.4]   F.E.M.A., “NEHRP guidelines for the seismic rehabilitation of buildings”, FEMA, Report N° 273, ottobre 1997, Cap.1- 5.

 [7.5]   NT4.1, un catalogo parametrico di terremoti di area italiana al di sopra della soglia del danno  http://emidius.mi.ingv.it/NT/home.htm

 [8.1]   CNR-UNI 1001: Costruzioni in acciaio. Istruzioni per il calcolo, l’esecuzione, il collaudo e la manutenzione 

[10.1] Catalogo prodotti Jarret “Domange – Jarret amortisseurs de chocs viscoelastiques gamme standard”

 [10.2] Giulio Ballio, Federico Mazzolani  “Strutture in Acciaio, Sistemi strutturali – Sicurezza e carichi – Materiale Unioni e collegamenti – Resistenza e stabilità, 1979.

 [11.1] C.Allin Cornell, Dimitrios Vamvatsikos, Fatemeh Jalayer, Nico Luco and Maziar Motahari RMS Affiliates Meeting Stanford University , May 31-June 1, 2001

 [11.2] F.E.M.A. Federal Emergency Management Agency, (1997) NEHRP Guidelines for the Seismic Rehabilitation of Buildings, Report No. FEMA-273, and NEHRP Commentary of the Guidelines for the Seismic Rehabilitation of Buildings, Report No. FEMA-274., Washington, D. C., October.

 [11.3] Federal Emergency Management Agency, (1995), 1994 NEHPR Recommended Provisions for the Seismic Regulations for the New Buildings, Report, No. FEMA 222A, Washington, D.

 

Altri riferimenti non espressamente citati:

 J. Scheller, M.C. Constantinou Response History Analysis of Structures with Seismic Isolation and Energy Dissipation Systems: Verification Examples for Program SAP2000 - MCEER-99-0002

 DRAIN2DX Manuals Static and Dynamic Analysis of Inelastic Plane Structures V. Prakash, G. H. Powell and S. Campbell, Department of Civil Engineering, University of California, Berkeley 1993.

 SAP2000 NonLinear Version 7.12 – Structural Analysis Program – Manual – Computer and Structures, Inc. 1995 University Ave.

 Arima, S. A. and Hanson, R.D., (1987), Elastic seismic response of buildings with supplemental damping, technical report UMCE 87-01, The University of Michigan, Ann Arbor, MI.

 Bagley, R. L. and Torvik, P. J., (1983), “Fractional Calculus – A different approach to the analisys of viscoelastically damped structures”, AIAA Journal, Vol. 21 No. 5, pp. 742-748.

 Cofie, N. G. and Krawinkler, H., (1985), “Uniaxial cyclic stress-strain behavior od structural  steel”, Journal of Engineering Mechanics, ASCE, vol. 111, No. 9, pp. 1105-1120.

 Dafalias, Y. F. and Popov, E. P., (1975), “A model of nonlinearity hardening materials for complex loading”, Acta Mechanica, Vol. 21, pp. 173-192.

 Erdeli, A., Magnus, W., Oberhettinger, F., and Tricomi, F. G., (1954), Tables of Integral transforms, II, McGrraw-Hill, New York.

 Ferry, J. D., (1980), Viscoelastic Properties of Polymers, John Wiley, New York.

 Gemant, A., (1936), “A Method of Analyzing Experimental Results Obtained from Elastoviscous Bodies”, Physics, Vol. 7, No. 8, pp. 311-317.

 Greasser, E. J. And Corazzelli, F. A..,(1991). A Multidimensional Hysteretic Model for Plastically Deforming Metals in Energy Absorbing Devices, Technical report NCEER-91-0006, National Center for Earthquake Engineering Research, Buffalo, NY.

 Greasser, E. J. And Corazzelli, F. A..,(1989). A Multidimensional Models of Hysteretic Materials Behavior for Vibration and Analysis of Shape Memory Energy Absorbing Device, Technical report NCEER-89-0018, National Center for Earthquake Engineering Research, Buffalo, NY.

 Hanson, R. D., (1993), “Supplemental Damping for Improved Seismic Performances”, Earthquake Spectra, Vol. 9, pp. 319-334.

 Huffamann, G K, (1985), “Full Base Isolation for Earthquake Protection by Helical Springs and Viscodampers”, Nuclear Engineering Design, Vol. 84, No. 2, pp. 331.-338.

 Macris, N., (1992), Theoretical and Experimental investigation of viscous Dampers in Applications of Seismic and Vibration Isolation, PhD. Dissertation, State University of New York at Buffalo, NY.

 Macris, N. and Constantinou, M.C., (1993), “Model of Viscoelasticity with complex Order Derivatives”, Journal of Engineering Mechanics, ASCE, Vol. 119, Vol. 7, pp. 1453-1464.

 Macris, N. and Constantinou, M.C., (1991), “Fractional Derivates Maxwell model for Viscous Dampers”, Journal of Engineering Mechanics, ASCE, Vol. 117,No. 9, pp. 2708-2724.

 Macris, N. and Constantinou, M.C., (1990), Viscous Dampers: testing, modelling and Application in vibration and Seismic Isolation, Technical Report NCEER-90-0028/, National Centre of Earthquake Engineering Research, Buffalo, NY.

 Macris, N., Dargush, G.F., and Constantinou, M.C., (1995), “Dinamic analysis of viscoelastic Fluid Dampers”, Journal of Engineering Mechanics, ASCE, Vol. 121,No. 2, pp. 431-441.

 Nims, D.K., Inaudi, J.A., Richter, P.J., and Kelly, J.M., (1993a), “The Use of Energy Dissipating Restraint for Seismic Hazard Mitigation”, Earthquake spectra, Vo. 9, No. 3, pp. 467-489.

 Oldham, K.B., and Spainer, J., (1974), The Fractional Calculus, Academic Press, New York.

 Ozdemir, H., (1976) Nonlinear Transient Dynamic Analysis of Yielding Structure, PhD. Dissertation, University of California, Berkley, CA.

 Pekan, G., Mander, J.B., and Chen, S.S., (1995), “The Seismic Response of a 1:3 Scale Model R.C. Structure with elastomeric Spring Dampers”, Earthquake Spectra, Vol. 11, No. 2, pp. 249-267.

 Pong, W.S., Tsai, C.S., and Lee, G.C., (1994), Seismic Study of Building Frames with Added Energy-absorbing Devices, Technical Report NCEER-94-0016, National Centre for Earthquake Engineering Research, Buffalo, NY.

 Press, W.H., Teukolsky, S.A., Vetterling, W.T., and Flannery, B.P., (1992), Numerical Recipes in FORTRAN, Cambridge University Press, Cambridge, UK.

 Richter, P.J., Nims, D.K., Kelly, J.M., and Kallenbach, R.M., (1990) “The EDR-Energy Dissipating Restraint, A New Device for Mitigation of Seismic Effects”, Proceedings of the 1990 Structural Engineers Association of California (SEAOC) convention, Lake Tahoe, NV.

 Rivlin, R.S., (1981), “Some Comments on the Endochronic Theory of Plasticity”, Intarnational Journal of solids and Structures, Vol. 17, pp. 231-248.

 Scholl, R.E., (1993) “Design Criteria for Yelding and Friction Energy Dissipators”. Proceedings of ATC-17-1 on Seismic Isolation, Energy Dissipation, and Active Control, San Francesco, CA, Vol. 2, pp. 485-495.

 Soong. T.T., and Lai, M.L. (1991), “Correlation of Experimental Results With Predictions of Viscoelastic Damping of a Model Structure”, Proceedings of Damping 1991, San Diego, CA, pp. FCB.1-FCB.9.

 Su, T.C., and Hanson, R.D., (1990), Seismic Response of Building Structure with Mechanical Damping Devices, Technical Report UMCE 90-02, The university of Michigan, Ann Arbor, MI.

 P., and Su, Y. F., (1993), “Design of Steel Triangular Plate Energy Absorbers for Seismic-Resistant Construction”, Earthquake Spectra, Vol 9, No. 3, pp. 505-528

 Tsai, K.C., Chen, H. W., Hong, C.  (1995) “TPEA Device as Seismic Damper for High-Rise Buildings”, Journal of Engineering Mechanics, ASCE, vol. 121, No. 10, pp. 1075-1081.

 Tsopelas, P. and Costantinou, M.C., (1994) NCEER-Taisei Corporation Research Program on sliding Seismic Isolation System for Bridges: Experimental and Analytical Study of a System consisting of a Sliding Bearings and Fluid Restoring Force/Damping Devices, Technical Report NCEER-94-0014, National Centre for Earthquake Engineering Research, buffalo, NY.

 Whittaker, A.S. Bertero, V., Alonso, J., and Thompson, C., (1989), “Earthquake Simulator Testing of Steel Plate Added Damping and Stiffness Element, Technical Report EERC-89/02, University of California, Berkeley, CA.

 Xia, C., and Hanson, R.D., (1992) “Influence on ADAS Element Parameters on Building Seismic Response”, Journal of Structural Engineering, ASCE, Vol. 118, No. 7, pp. 1903-1918.

 Zhang, R.H., Soong, T.T., and Mahmoodi, P., (1989) “Seismic Response of steel Frame Structures with Added Viscoelastic Dampers”, Earthquake Engineering and Structural Dynamics, Vol. 18, pp. 389-396.

 Ministero dei lavori pubblici, D.M. 09/01/1996 “Norme tecniche per il calcolo, l’esecuzione ed il collaudo delle strutture in cemento armato, normale e precompresso e per le strutture metalliche.”, Gazzetta Ufficiale, N° 25,5 febbraio 1996.