Comparative Analysis of Single Pile with Embedded Beam Row and Volume Pile Modeling under Seismic Load

IF 0.7 Q4 MECHANICS
Queen Arista Rosmania Putri Sumarsono, A. Munawir, Harimurti
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引用次数: 0

Abstract

Abstract Indonesia is located between the Eurasian, Pacific, Philippines, and Indo-Australian plates. Various tectonic processes in the world and collisions between large plates and several small plates trigger many earthquakes in Indonesia. This study aimed to evaluate the response of bored piles in the Auditorium Building of Brawijaya University toward seismic loads through analytical and numerical approaches based on finite elements with 2D (embedded beam row) and 3D (volume pile) modeling, where the analysis approach of pile deformation and lateral resistance with numerical methods will depend on idealization of the model used. In addition, the lateral resistance was compared based on combination lateral loads, pile stiffness, and soil stiffness when the values were different. The 2D finite element analysis reduces lateral resistance but overestimated the deflection on the pile surface. This is because in the 2D finite element modeling with an embedded beam row that the friction factor represented by the spring can reduces the stiffness and the pile–soil is tangent, so that there is no slipping against each other. In addition, the 3D finite element analysis with volume pile modeling increases soil stiffness at greater depths and the friction factor (interface) can improve the interaction between the soil and pile.
地震荷载作用下嵌梁排单桩与体积桩模型的对比分析
摘要印度尼西亚位于欧亚板块、太平洋板块、菲律宾板块和印澳板块之间。世界上的各种构造过程以及大板块和几个小板块之间的碰撞在印度尼西亚引发了许多地震。本研究旨在通过基于二维(嵌入式梁排)和三维(体积桩)建模的有限元分析和数值方法,评估布拉维贾亚大学礼堂大楼钻孔桩对地震荷载的响应,其中,采用数值方法分析桩变形和侧阻力的方法将取决于所用模型的理想化。此外,基于组合横向荷载、桩刚度和土壤刚度对不同值时的横向阻力进行了比较。二维有限元分析降低了横向阻力,但高估了桩表面的挠度。这是因为在具有嵌入式梁排的二维有限元建模中,由弹簧表示的摩擦系数可以降低刚度,并且桩-土是相切的,因此不会相互滑动。此外,采用体积桩建模的三维有限元分析增加了更深处的土壤刚度,摩擦系数(界面)可以改善土壤和桩之间的相互作用。
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来源期刊
CiteScore
1.30
自引率
16.70%
发文量
20
审稿时长
16 weeks
期刊介绍: An international journal ‘Studia Geotechnica et Mechanica’ covers new developments in the broad areas of geomechanics as well as structural mechanics. The journal welcomes contributions dealing with original theoretical, numerical as well as experimental work. The following topics are of special interest: Constitutive relations for geomaterials (soils, rocks, concrete, etc.) Modeling of mechanical behaviour of heterogeneous materials at different scales Analysis of coupled thermo-hydro-chemo-mechanical problems Modeling of instabilities and localized deformation Experimental investigations of material properties at different scales Numerical algorithms: formulation and performance Application of numerical techniques to analysis of problems involving foundations, underground structures, slopes and embankment Risk and reliability analysis Analysis of concrete and masonry structures Modeling of case histories
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