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자료유형
학술저널
저자정보
Dalili, M. (Civil Engineering Faculty, Universiti Putra Malaysia) Alkarni, A. (Civil Engineering Faculty, King Saud University) Noorzaei, J. (Civil Engineering Faculty, Universiti Putra Malaysia) Paknahad, M. (Civil Engineering Faculty, Universiti Putra Malaysia) Jaafar, M.S. (Civil Engineering Faculty, Universiti Putra Malaysia) Huat, B.B.K. (Civil Engineering Faculty, Universiti Putra Malaysia)
저널정보
테크노프레스 Interaction and multiscale mechanics Interaction and multiscale mechanics 제4권 제1호
발행연도
2011.1
수록면
17 - 34 (18page)

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This paper deals with the modeling of the plane frame structure-foundation-soil system. The superstructure along with the foundation beam is idealized as beam bending elements. The soil medium near the foundation beam with stress concentrated is idealized by isoparametric finite elements, and infinite elements are used to represent the far field of the soil media. This paper presents the modeling of shear wall structure-foundation and soil system using the optimal membrane triangular, super and conventional finite elements. Particularly, an alternative formulation is presented for the optimal triangular elements aimed at reducing the programming effort and computational cost. The proposed model is applied to a plane frame-combined footing-soil system. It is shown that the total settlement obtained from the non-linear interactive analysis is about 1.3 to 1.4 times that of the non-interactive analysis. Furthermore, the proposed model was found to be efficient in simulating the shear wall-foundation-soil system, being able to yield results that are similar to those obtained by the conventional finite element method.

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