Machaček, Jan ; Brosz, Frederik ; Staubach, Patrick ; Wichtmann, Torsten ; Zachert, Hauke (2024)
Back-calculations of centrifuge tests on pile groups subjected to high-cyclic loading.
DFI-EFFC International Conference on Deep Foundations and Ground Improvement: Smart Construction for the Future. Berlin, Germany (18.05. - 20.05.2022)
doi: 10.26083/tuprints-00027463
Konferenzveröffentlichung, Erstveröffentlichung, Verlagsversion
Kurzbeschreibung (Abstract)
The majority of heavy or strongly loaded structures, for instance high-rise buildings, large span bridges or gas storage tanks are founded on pile groups. However, current design codes and guidelines do not provide a standard procedure for their design under lateral dynamic and high-cyclic loading arising from e.g. wind, temperature or earthquake loads. To establish appropriate design strategies, a better understanding of the pile-soil, pile-pile and pile-cap interaction is required. This paper is focused on finite element backcalculations of centrifuge tests on single piles and pile groups subjected to up to 500 lateral load cycles. For the finite element simulations, a special calculation procedure is applied, combining two kinds of constitutive models, a conventional (Hypoplasticity with Intergranular Strain extension) and a special highcycle accumulation (HCA) model. The parameters of the constitutive models are calibrated based on static and cyclic laboratory tests on the sand used in the centrifuge tests. The performance of the applied numerical procedure is evaluated based on a detailed comparison of the simulation results with the measured data from the centrifuge tests. Overall the applicability of the used numerical strategy for simulating the behavior of pile groups subjected to high-cyclic loading is shown.
Typ des Eintrags: | Konferenzveröffentlichung |
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Erschienen: | 2024 |
Autor(en): | Machaček, Jan ; Brosz, Frederik ; Staubach, Patrick ; Wichtmann, Torsten ; Zachert, Hauke |
Art des Eintrags: | Erstveröffentlichung |
Titel: | Back-calculations of centrifuge tests on pile groups subjected to high-cyclic loading |
Sprache: | Englisch |
Publikationsjahr: | 4 Juni 2024 |
Ort: | Darmstadt |
Kollation: | 11 Seiten |
Veranstaltungstitel: | DFI-EFFC International Conference on Deep Foundations and Ground Improvement: Smart Construction for the Future |
Veranstaltungsort: | Berlin, Germany |
Veranstaltungsdatum: | 18.05. - 20.05.2022 |
DOI: | 10.26083/tuprints-00027463 |
URL / URN: | https://tuprints.ulb.tu-darmstadt.de/27463 |
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Herkunft: | Zweitveröffentlichungsservice |
Kurzbeschreibung (Abstract): | The majority of heavy or strongly loaded structures, for instance high-rise buildings, large span bridges or gas storage tanks are founded on pile groups. However, current design codes and guidelines do not provide a standard procedure for their design under lateral dynamic and high-cyclic loading arising from e.g. wind, temperature or earthquake loads. To establish appropriate design strategies, a better understanding of the pile-soil, pile-pile and pile-cap interaction is required. This paper is focused on finite element backcalculations of centrifuge tests on single piles and pile groups subjected to up to 500 lateral load cycles. For the finite element simulations, a special calculation procedure is applied, combining two kinds of constitutive models, a conventional (Hypoplasticity with Intergranular Strain extension) and a special highcycle accumulation (HCA) model. The parameters of the constitutive models are calibrated based on static and cyclic laboratory tests on the sand used in the centrifuge tests. The performance of the applied numerical procedure is evaluated based on a detailed comparison of the simulation results with the measured data from the centrifuge tests. Overall the applicability of the used numerical strategy for simulating the behavior of pile groups subjected to high-cyclic loading is shown. |
Freie Schlagworte: | pile groups, centrifuge tests, high-cyclic loading, back-analysis, high cyclic accumulation (HCA) model |
Status: | Verlagsversion |
URN: | urn:nbn:de:tuda-tuprints-274635 |
Sachgruppe der Dewey Dezimalklassifikatin (DDC): | 500 Naturwissenschaften und Mathematik > 550 Geowissenschaften 600 Technik, Medizin, angewandte Wissenschaften > 620 Ingenieurwissenschaften und Maschinenbau |
Fachbereich(e)/-gebiet(e): | 13 Fachbereich Bau- und Umweltingenieurwissenschaften 13 Fachbereich Bau- und Umweltingenieurwissenschaften > Institut für Geotechnik |
Hinterlegungsdatum: | 04 Jun 2024 14:45 |
Letzte Änderung: | 28 Jun 2024 11:18 |
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