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2022 | OriginalPaper | Chapter

Responses of a Cantilever Retaining Wall Subjected to Asymmetric Near-Fault Ground Motions

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Abstract

Fault rupture produces pulse-like ground motions in the near-fault regions, which are significantly different from ordinary ground motions in the far-field regions with respect to both intensity and frequency contents. The pulse-like ground motions are characterized as high amplitude and long period pulses that could cause severe damage to structures. In this study, we investigated how the pulse-like ground motions have effects on the responses of a cantilever retaining wall by performing a series of numerical simulations. The seismic behaviors of the retaining wall were numerically modeled by adopting a finite difference scheme. High amplitude ground motions scaled to a fixed PGA were first collected as an input dataset and classified into pulse-like, non-pulse-like, and ambiguous motions by a pulse indicator. Then, differences in the development of displacements at the wall were quantitatively compared between the types of the motions. Additional simulations were carried out with the original and inverted input ground motions to investigate the effect of asymmetry of ground motion on the wall responses. It turned out that the asymmetrical ground motions with larger velocity amplitudes in the direction coincide with the relative wall movement could generate significant wall displacements.

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Literature
1.
go back to reference Somerville, P.G.: Engineering characterization of near fault ground motions. In: Proceedings of the Conference NZSEE, pp. 1–8 (2005) Somerville, P.G.: Engineering characterization of near fault ground motions. In: Proceedings of the Conference NZSEE, pp. 1–8 (2005)
2.
go back to reference Moustafa, A., Takewaki, I.: Deterministic and probabilistic representation of near-field pulse-like ground motion. Soil Dyn. Earthq. Eng. 30, 412–422 (2010)CrossRef Moustafa, A., Takewaki, I.: Deterministic and probabilistic representation of near-field pulse-like ground motion. Soil Dyn. Earthq. Eng. 30, 412–422 (2010)CrossRef
3.
go back to reference Baker, J.W.: Quantitative classification of near-fault ground motions using wavelet analysis. Bull. Seismol. Soc. Am. 97, 1486–1501 (2007)CrossRef Baker, J.W.: Quantitative classification of near-fault ground motions using wavelet analysis. Bull. Seismol. Soc. Am. 97, 1486–1501 (2007)CrossRef
4.
go back to reference Seo, H., Kim, B., Park, D.: Seismic Fragility evaluation of inverted t-type wall with a backfill slope considering site conditions. KSCE J. Civ. Environ. Eng. Res. 41, 533–541 (2021) Seo, H., Kim, B., Park, D.: Seismic Fragility evaluation of inverted t-type wall with a backfill slope considering site conditions. KSCE J. Civ. Environ. Eng. Res. 41, 533–541 (2021)
5.
go back to reference Richards, R., Jr., Elms, D.G.: Seismic behavior of gravity retaining walls. J. Geotech. Eng. Div. 105, 449–464 (1979)CrossRef Richards, R., Jr., Elms, D.G.: Seismic behavior of gravity retaining walls. J. Geotech. Eng. Div. 105, 449–464 (1979)CrossRef
6.
go back to reference Anderson, D.G.: Seismic analysis and design of retaining walls, buried structures, slopes, and embankments, vol. 611. Transportation Research Board (2008) Anderson, D.G.: Seismic analysis and design of retaining walls, buried structures, slopes, and embankments, vol. 611. Transportation Research Board (2008)
7.
go back to reference Malhotra, P.K.: Response of buildings to near-field pulse-like ground motions. Earthq. Eng. Struct. Dyn. 28, 1309–1326 (1999)CrossRef Malhotra, P.K.: Response of buildings to near-field pulse-like ground motions. Earthq. Eng. Struct. Dyn. 28, 1309–1326 (1999)CrossRef
Metadata
Title
Responses of a Cantilever Retaining Wall Subjected to Asymmetric Near-Fault Ground Motions
Authors
Seong Jun Ha
Hwanwoo Seo
Hyungseob Kim
Byungmin Kim
Copyright Year
2022
DOI
https://doi.org/10.1007/978-3-031-11898-2_65