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논문 기본 정보

자료유형
학술저널
저자정보
Riyadh Alsultani (Almustaqbal University College) Ibtisam R. Karim (University of Technology) Saleh I. Khassaf (University of Basrah)
저널정보
한국콘크리트학회 International Journal of Concrete Structures and Materials International Journal of Concrete Structures and Materials Vol.17 No.2
발행연도
2023.3
수록면
329 - 343 (15page)

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초록· 키워드

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The goal of the experiment described in this paper was to examine the effects of structure orientation (0°–90°) and fluid–structure interaction (FSI) under combined water loads, represented by water current and waves, and earthquake actions, on the dynamic response of a reduced-scale bridge pier specimen with pile foundation. The peak relative displacement and peak acceleration of the specimen are measured using the first time innovative in Iraq, Reality Water–Structure–Earthquake Interaction Test (RWSEIT). The findings are given and analyzed concerning water depths, current speed, wave characteristics, earthquake amplitudes, and structural orientations. A numerical model of the examined specimen with three dimensions (3D) was constructed, and the findings were successfully confirmed using the data from the experiments. A pile foundation bridge pier’s 3D structural response under orientations that cannot be tested in a lab was computed using the constructed numerical model. The complicated dynamically produced FSI effects on the response of coastal pile foundation bridges may be better understood according to the research’s experimental and numerical findings.

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Abstract
1 Introduction
2 Experimental Work
3 Numerical Modeling
4 Test Results and Analysis
5 Conclusions
References

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