참고문헌
- American Institute of Steel Construction (1995), Load and Resistance Factor Design (LRFD).
- American Institute of Steel Construction (1997), Seismic Provisions of Structural Steel Buildings.
- Connor, J.J. and Klink, B.S.A. (1995), "A methodology for motion based design", Proc. A New Direction in Seismic Design, Tokyo, Japan, 9-10 Oct.
- Connor, J.J. and Klink, B.S.A. (1996), Introduction to Motion Based Design, WIT Press, Southampton.
- European Committee for Standardization (CEN) (1992), Eurocode 3: Design of Steel Structures, Part 1.1: General Rules and Rules for Buildings, ENV 1993-1.1.
- European Committee for Standardization (CEN) (1994), Eurocode 8: Design Provisions for Earthquake Resistance of Structures, Part 1.3: General Rules Specific Rules for Various Materials and Elements, ENV 1998-1.3.
- Gantes, C.J., Vayas, I., Spiliopoulos, A. and Pouangare, C.C. (2000), "Optimum bending and shear stiffness distribution for performance based design of rigid and braced multi-story steel frames", Proc. of Behaviour of Steel Structures in Seismic Areas, STESSA 2000, Montreal, Canada, 21-24 Aug.
- Gionis, G.A. (1999), "A new method for the preliminary design of high-rise buildings", Diploma thesis, Civil Engineering Department, National Technical University of Athens, Greece (in Greek).
- Haris, A.A.K. (1977), "Approximate stiffness analysis of high-rise buildings", J. Struct. Div., ASCE, 104(ST4), August.
- Heidebrecht, A.C., Stafford Smith, B. (1973), "Approximate analysis of tall wall-frame structures", J. Struct. Div., ASCE, 99(ST2), February, 199-221.
- Lu, L.-W., Ricles, J.M. and Kasai, K. (1997), "Global performance, general report", Proc. Behaviour of Steel Structures in Seismic Areas, STESSA 97, Kyoto, Japan.
- Pouangare, C.C. (1990), "New design concepts for tall buildings", Ph.D. thesis, Department of Civil Engineering, Massachusetts Institute of Technology, Cambridge, MA.
- Przemieniecki, J.S. (1985), Theory of Matrix Structural Analysis, Dover.
- Scarlat, A.S. (1996), Approximate Methods in Structural Seismic Design, E. & F.N. Spon, London.
- Stafford Smith, B., Kuster, M. and Hoenderkamp, J.C.D. (1981), "A generalized approach to the deflection analysis of braced frame, rigid frame and coupled wall structures", Canadian Journal of Civil Engineering, 8, January, 230-239. https://doi.org/10.1139/l81-030
- Stafford Smith, B. and Coull, A. (1991), Tall Building Structures: Analysis and Design, John Wiley & Sons, Inc., New York.
- Takewaki, I. (1997a), "Efficient semi-analytical generator of initial stiffness designs for steel frames under seismic loading Part 1: Fundamental frame", The Structural Design of Tall Buildings, 6, 151-162. https://doi.org/10.1002/(SICI)1099-1794(199706)6:2<151::AID-TAL90>3.0.CO;2-M
- Takewaki, I. (1997b), "Efficient semi-analytical generator of initial stiffness designs for steel frames under seismic loading Part 2: Slender frame", The Structural Design of Tall Buildings, 6, 163-170. https://doi.org/10.1002/(SICI)1099-1794(199706)6:2<163::AID-TAL91>3.0.CO;2-E
- Taranath, B.S. (1998), Steel, Concrete, & Composite Design of Tall Buildings, McGraw-Hill, New York.
- Vayas, I. (1997), "Stability and ductility of steel elements", J. Constr. Steel Res., 44(1-2), 23-50. https://doi.org/10.1016/S0143-974X(97)00036-9
- Vayas, I. (1999), "Design of braced frames", in F.M. Mazzolani, V. Gioncu (Eds), Seismic Resistant Steel Structures, International Centre for Mechanical Sciences (CISM), Courses and lectures No 420, Springer Verlag, 241-288.
- Viest, I.M., Colaco, J.P., Furlong, R.W., Griffis, L.G., Leon, R.T. and Wyllie L.A. Jr. (1996), Composite Construction Design for Buildings, McGraw-Hill, New York.
피인용 문헌
- Seismic assessment of thin steel plate shear walls with outrigger system vol.74, pp.2, 2001, https://doi.org/10.12989/sem.2020.74.2.267