Isolated shallow rocking foundation on different soils with varying embedment depth

R. M. Kannan, P. Haldar, N. James
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Abstract

Although seismic design concepts integrated the idea of shallow rocking foundations as an effective way to dissipate the induced seismic energy, a practical design solution is yet to be established. To attain this objective, it is necessary to identify the key parameters that govern the rocking efficacy of foundation and eventually overall seismic performance of the entire structure. The primary focus of this study is to assess the key parameters such as soil type and embedment depth of footing in conjunction with varying rocking foundation efficacy on the seismic force and displacement demands of the Reinforced Concrete (RC) buildings. A simplified generic high rise RC building along with its foundation is considered for the analytical study which is designed and detailed as per relevant Indian Standards. To highlight the beneficial effects of rocking foundation, seismic responses of the RC buildings with varying foundation rocking efficacy are compared with the conventional foundation design philosophies by conducting nonlinear dynamic time history analyses. From the seismic responses, it is determined that the moment from column to foundation and base shear, owing to seismic action, decreases with an increasing settlement at the base of the foundation for rocking footing. It is also observed from the seismic responses that rocking foundations effectively de-amplifies the peak roof acceleration by utilizing the nonlinear soil responses during earthquakes. Hence, it can be depicted that the foundation rocking improves the overall stability of the buildings by decreasing the seismic force demands with a slight increase in seismic displacement demands. The investigation also indicates that the efficacy of rocking foundation is not sensitive to embedment depth of footing.
嵌入深度不同的不同土壤上的孤立浅层摇动地基
尽管抗震设计概念中包含了浅层摇晃地基作为消散诱发地震能量的有效方法的理念,但实际的设计方案仍有待确定。为实现这一目标,有必要确定影响地基摇晃效果的关键参数,并最终确定整个结构的整体抗震性能。本研究的主要重点是评估土壤类型和地基嵌入深度等关键参数,以及不同的地基摇晃效果对钢筋混凝土(RC)建筑的地震力和位移需求的影响。分析研究考虑了一栋简化的普通高层 RC 建筑及其地基,其设计和细节均符合相关的印度标准。为了突出摇动地基的有利影响,通过进行非线性动态时间历程分析,将不同地基摇动效率的 RC 建筑的地震响应与传统地基设计理念进行了比较。从地震反应中可以看出,由于地震作用,柱到地基的力矩和地基剪力随着摇晃地基底部沉降的增加而减小。从地震反应中还可以观察到,摇晃地基通过利用地震时的非线性土壤反应,有效地消除了屋顶加速度峰值。因此,可以看出地基摇晃通过降低地震力要求来提高建筑物的整体稳定性,而地震位移要求则略有增加。调查还表明,摇晃地基的功效对地基嵌入深度并不敏感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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