SEISMIC RESPONSE MODEL INCLUDING SSI OF RC BUILDINGS ON ISOLATED AND RAFT FOUNDATIONS

Authors

  • Turkia Haithem Department of Civil Engineering, University of Batna, Batna, Algeria. Author
  • Lahbari Noureddine Department of Civil Engineering, University of Batna, Batna, Algeria. Author

Keywords:

Natural Period, Soil Structure Interaction, Raft , Isolated Foundations, Winkler Method

Abstract

From the literature it is clear that the interaction between the superstructure and the soilfoundation has not been taken into consideration in most of the research work. The effect of construction phase and mode of superstructure loading on the response of structure and foundation has not been given attention. The purpose of this study is to formulate and investigate analytical model for natural period of reinforced frame buildings (low, medium and high rise) based on RPA2013 with fixed and flexible base. Three types of soil hard, medium and soft are used; isolated foundation for hard and medium soil – sites S1, S2 and raft foundations for soft soil sites S3 and S4. For analysis SAP2000 software is used and the soil flexibility is incorporated using Winkler approach (spring model) and compared with Newmark Rosenblueth, Deleuze and Gazetas methods. A comparative study has also been done on spectral acceleration coefficient (S/g) for buildings with fixed and flexible bases founded on different soils.

 

References

Thompson W.T, theory of vibration with application, 2nd edition, Prentice Hall,Englewood cliffs, New jersey,(1981).

Adeli H, Approximate formulae for period of vibrations of building systems, civil engineering for practising and design engineers, Vol4 Nb1 pp93-128, junnary 1985.

Victor.D , la construction en zone sismique, Paris, Editions le Moniteur 1999.

Veletsos, A.S., and Meek, J.W, Dynamic behavior of building-foundation systems, J.Earthquake Engrg. Struct. Dyn., 3(2),121–138, 1974.

Veletsos, A. S., and Nair, V. V, Seismic interaction of structures on hysteretic foundations,J. Struct. Engrg., ASCE, 101(1), 109–129, 1975.

Khalil.L, Sadek.Marwan, Shahrouri.Isam, Influence de l’interaction sol structure ISS sur la fréquence fondamentale des bâtiments, XXIV Emes Rencontres universitaires de génie civil, Montpellier, 1-2 juin (2006).

R.Souloumiac, Interaction sol-structure, méthode simplifiée, Socotec, 1984.

ATC-3, Tentative Provisions for the Development of seismic regulations for buildings, ch.6, 1978.

Norris .C.H, Wilbur.J.B, Utku.S, Elementary Structural Analysis, Mc Graw Hill, 1976.

Ayman Ismail, Effect of Soil Flexibility on Seismic Performance of 3-D Frames, IOSR Journal of Mechanical and Civil Engineering (IOSR-JMCE) e-ISSN: 2278-1684,p-ISSN: 2320-334X, Volume 11, Issue 4 Ver. II, PP 135-143, Jul- Aug. 2014.

Michael James Givens, Dynamic Soil-Structure Interaction of Instrumented Buildings and Test Structures, doctoral dissertation, university of California - Los Angeles, 2013

Mylonakis, George and Gazetas, George, Seismic soil structure interaction: Beneficial or Detrimental?, Journal of Earthquake Engineering, 4: 3, 277 — 301, 2000

E.N.Rovithis, K.D. Pitilakis, G.E. Mylonakis, Seismic analysis of coupled soil pile structure systems leading to the definition of a pseudo natural SSI frequency, Soil dynmacis and earthquake engineering 1005-1015, 2009

Javier Avilés, Luis E. Pérez-Rocha, Evaluation of interaction effects on the system period and the system damping due to foundation embedment and layer depth, Soil Dynamics and Earthquake Engineering 15 11-27 ,Elsevier Science Limited, 1996.

Règles Parasismiques Algériennes 99-03, OPU, Algérie, 2003.

Gazetas, G. and Mylonakis, G, Seismic Soil-Structure Interaction: New Evidence and Emerging Issues, Emerging Issues Paper, Geotechnical Special Publication No 75, ASCE, Vol III., pp. 1119-1174, 1998.

Gazetas, G. and Mylonakis, G., Seismic soil-structure interaction: beneficial or detrimental, Journal Earthquake, vol. 4, No 3, 277-301, 2000.

Hamid reza Tabatabaiefar, Ali Massumi, A simplified method to determine seismic responses of reinforced concrete moment resisting building frames under influence of soil-structure interaction. Soil dynamics and erathquake engineering, 30 1259-1267,2010.

H.K Chinmayi, B.R Jayalekshmi, Soil-structure interaction analysis of RC frame shear wall buildings over raft foundations under seismic loading, International Journal of Scientific & Engineering Research Volume 4, Issue 5, May-2013

Jayalekshmi B.R, Chinmayi H.K , Effect of soil flexibility on lateral natural period in RC framed buildings with shear wall, International Journal of Innovative Research in Science, Engineering and Technology Vol. 2, Issue 6, June 2013.

I. Kraus & D. Džakić , Soil-structure interaction effects on seismic behaviour of reinforced concrete frames, 50 SE –EEE University of Osijek, Faculty of Civil Engineering Osijek,Croatia 2013.

Jian Zhang, Yuchuan Tang, Dimensional analysis of structures with translating and rocking foundations under near fault ground motions, Soil dynamics and earthquake engineering 1330-1346, 2009

Mr.Dipanjan Mukherjee, “Determination of Variation of Soil Characteristic Due To Lime Stabilization” International Journal of Civil Engineering & Technology (IJCIET), Volume 5, Issue 9, 2014, pp. 231 - 240, ISSN Print: 0976 – 6308, ISSN Online: 0976 – 6316.

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Published

2020-04-18

How to Cite

SEISMIC RESPONSE MODEL INCLUDING SSI OF RC BUILDINGS ON ISOLATED AND RAFT FOUNDATIONS. (2020). INTERNATIONAL JOURNAL OF CONSTRUCTION ENGINEERING (IJCE), 1(2), 42-55. https://mylib.in/index.php/IJCE/article/view/IJCE_01_02_003