Chapter
Apr 17, 2018
Structures Congress 2018

Comparative Assessment of Soil-Structure Interaction Regulations of ASCE 7-16 and ASCE 7-10

Publication: Structures Congress 2018: Buildings and Disaster Management

ABSTRACT

This paper evaluates the consequences of practicing soil structure interaction (SSI) regulations of ASCE 7-16 on seismic performance of building structures. The motivation for this research stems from the significant changes in the new SSI provisions of ASCE 7-16 compared to the previous 2010 edition. Generally, ASCE 7 considers SSI as a beneficial effect, and allows designer to reduce the design base shear. However, literature shows that this idea cannot properly capture the SSI effects on nonlinear systems. ASCE 7-16 is the first edition of ASCE 7 that considers the SSI effect on yielding systems. This study investigates the consequences of practicing the new provisions on a wide range of buildings with different dynamic characteristics on different soil types. Ductility demand of the structure forms the performance metric of this study, and the probability that practicing SSI provisions, in lieu of fixed-base provisions, increases the ductility demand of the structure is computed. The analyses are conducted within a probabilistic framework which considers the uncertainties in the ground motion and in the properties of the soil-structure system. It is concluded that, for structures with surface foundation on moderate to soft soils, SSI regulations of both ASCE 7-10 and ASCE 7-16 are fairly likely to result in a similar and larger structural responses than those obtained by practicing the fixed-base design regulations. However, for squat and ordinary stiff structures on soft soil or structures with embedded foundation on moderate to soft soils, the SSI provisions of ASCE 7-16 result in performance levels that are closer to those obtained by practicing the fixed-base regulations. Finally, for structures on very soft soils, the new SSI provisions of ASCE 7-16 are likely to rather conservative designs.

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REFERENCES

American Society of Civil Engineers,. (2010). Minimum design loads for buildings and other structures. ASCE/SEI 7, Reston, VA.
American Society of Civil Engineers,. (2016). Minimum design loads and associated criteria for buildings and other structures. ASCE/SEI 7, Reston, VA.
Barcena, A., and Esteva, L. (2007). “Influence of dynamic soil-structure interaction on the nonlinear response and seismic reliability of multistorey systems.” Earthquake engineering & structural dynamics, Wiley Online Library, 36(3), 327–346.
Bielak, J. (1978). “Dynamic response of non-linear building-foundation systems.” Earthquake Engineering & Structural Dynamics, John Wiley & Sons, Ltd, 6(1), 17–30.
Chiou, B., Darragh, R., Gregor, N., and Silva, W. (2008). “NGA project strong-motion database.” Earthquake Spectra, 24(1), 23–44.
Chopra, A. (2012). Dynamics of Structures: Theory and Applications to Earthquake Engineering. Prentice Hall, New Jersey.
Demirol, E., and Ayoub, A. S. (2017). “Inelastic displacement ratios of SSI systems.” Soil Dynamics and Earthquake Engineering, Elsevier, 96, 104–114.
FEMA. (2015). NEHRP recommended seismic provisions for new buildings and other structures. FEMA P-1050, Washington, DC.
Ghannad, M. A., and Ahmadnia, A. (2006). “The effect of soil-structure interaction on inelastic structural demands.” European Earthquake Engineering, 20(1), 23–35.
Ghannad, M. A., Fukuwa, N., and Nishizaka, R. (1998). “A study on the frequency and damping of soil-structure systems using a simplified model.” Journal of Structural Engineering, Architectural Institute of Japan (AIJ), 44(B), 85–93.
Hassani, N., Bararnia, M., and Amiri, G. G. (2018). “Effect of soil-structure interaction on inelastic displacement ratios of degrading structures.” Soil Dynamics and Earthquake Engineering, Elsevier, 104, 75–87.
Khoshnoudian, F., Ahmadi, E., and Nik, F. A. (2013). “Inelastic displacement ratios for soil-structure systems.” Engineering Structures, Elsevier, 57, 453–464.
Khosravikia, F. (2016). “Seismic risk analysis considering soil-structure interaction.” Master’s Thesis, Department of Civil Engineering, Sharif University of Technology, Tehran, Iran.
Khosravikia, F., Mahsuli, M., and Ghannad, M. A. (2017). “Probabilistic evaluation of 2015 NEHRP soil-structure interaction provisions.” Journal of Engineering Mechanics, 143(9), 04017065.
Khosravikia, F., Mahsuli, M., and Ghannad, M. A. (2018). “The effect of soil–structure interaction on the seismic risk to buildings.” Bulletin of Earthquake Engineering, Springer Netherlands.
Kramer, S. L. (1996). Geotechnical earthquake engineering. Prentice Hall, New Jersey.
Mahsuli, M., and Haukaas, T. (2013). “Seismic risk analysis with reliability methods, part II: Analysis.” Structural Safety, 42, 63–74.
Meek, J. W., and Wolf, J. P. (1994). “Cone models for embedded foundation.” Journal of Geotechnical Engineering, 60–80.
Newmark, N. M. (1959). “A method of computation for structural dynamics.” Journal of the Engineering Mechanics Division, 85(3), 67–94.
Tang, Y., and Zhang, J. (2011). “Probabilistic seismic demand analysis of a slender RC shear wall considering soil-structure interaction effects.” Engineering Structures, 33(1), 218–229.
Veletsos, A. S. (1977). “Dynamics of structure-foundation systems.” Structural and geotechnical mechanics, W. J. Hall, ed., Prentice-Hall, New Jersey, 333–361.
Veletsos, A. S., and Verbic, B. (1974). “Dynamics of elastic and yielding structure-foundation systems.” 5th World Conference on Earthquake Engineering, Editrice Libraria, Italy.
Wolf, J. P. (1985). Dynamic soil-structure interaction. Prentice Hall, Upper Saddle River, New Jersey.
Wolf, J. P. (1994). Foundation vibration analysis using simple physical models. Prentice Hall, New Jersey.

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Published In

Go to Structures Congress 2018
Structures Congress 2018: Buildings and Disaster Management
Pages: 388 - 399
Editor: James Gregory Soules, 1CB&I
ISBN (Online): 978-0-7844-8132-5

History

Published online: Apr 17, 2018
Published in print: Apr 17, 2018

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Authors

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Farid Khosravikia, S.M.ASCE [email protected]
Ph.D. Candidate, Dept. of Civil, Architectural, and Environmental Engineering, Univ. of Texas at Austin, Austin, TX, USA. E-mail: [email protected]
Mojtaba Mahsuli, A.M.ASCE [email protected]
Assistant Professor, Dept. of Civil Engineering, Sharif Univ. of Technology, Tehran, Iran. E-mail: [email protected]
Mohammad Ali Ghannad [email protected]
Professor, Dept. of Civil Engineering, Sharif Univ. of Technology, Tehran, Iran. E-mail: [email protected]

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