Investigation of the applicability of dynamic loads acting on pile foundations as static loads in saturated clay
Is this your thesis?
This record came from a bulk archive import. If it’s yours, link it to your profile.
Abstract (EN)
In this study, the applicability of the dynamic loads acting on floating pile groups in saturated clay as static loads is studied. The group pile deformations under dynamic effects are modelled by the Plaxis software dynamic module and the equivalent static loads that cause the same deformations on pile group are determined by back-calculations.As a result, in the case of not using programs that consider the dynamic effects, dynamic forces can be considered as static loads to design of the pile foundations in saturated clay soils.For example in saturated clay cu=100 kPa Total vertical loads applied to the pile foundations can be increased 120% to consider the earthquakes up to magnitude of 6.0. And then cu=800 kPa saturated clay soils. Total vertical static loads applied to the pile foundations can be increased 280% to consider earthquake loads between 6.0 and 8.0.
Author
Hasan Bozkurt
How to Cite
Hasan Bozkurt (Master Thesis). Investigation of the applicability of dynamic loads acting on pile foundations as static loads in saturated clay, 2011, Anadolu University.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Anadolu University
- A survey on arabesque culture in Turkish cinema between the years 1970?2000(2012)
- Comparison of Koroglu operas by Uzeyir Hacibeyli and Ahmed Adnan Saygun(2024)
- Effects of manipulative news in social media on the Z generation(2023)
- Analysis of educational problems in guinea-bissau from independence to the present within the framework of public policy(2025)
- Representation of educational news in the media: A review of educational news in the context of critical discourse analysis(2024)
- Yabancı dı̇l olarak Almanca, İngı̇lı̇zce ve Türkçe ders kı̇taplarında kültürlerarasılık konusu üzerı̇ne(2025)
