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Load bearing and settlement characteristics of Geosynthetic Encased Columns under seismic loads

机译:地震载荷下土工合成柱的承载和沉降特性

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摘要

Ordinary stone columns and Geosynthetic Encased Stone columns are used in remediation of soft soils with low bearing capacities. Primary objective of granular columns is to provide structural support to the overlying foundation layers. Given that the granular columns implemented in soft soil conditions support a large portion of the surcharge pressure, developing an understanding of settlement response and pressure bearing characteristics of granular columns under seismic loading conditions is of paramount importance. This study aims to present experimental findings of granular column load bearing response under simulated seismic loads and the effects of lateral boundary conditions on column behavior. In order to mimic the seismic behavior of columns supporting a sustained surcharge load, two different large-scale experimental assemblies are used in 1-g shaking table tests. The assemblies used were a laminar box and a rigid box which were intended as physical analogies for free-field and rigid boundary conditions. The reinforcement strains, pressure concentration on column heads, and settlement of the unit cells enhanced with granular columns with varying reinforcement stiffnesses are studied. The relationship between unit cell settlement and two important earthquake intensity measures namely, Arias Intensity and Shaking Intensity Rate, are also investigated.
机译:普通石柱和地球合式体包裹的石柱用于修复具有低承载能力的软土。粒状柱的主要目标是为上覆基础层提供结构支撑。鉴于软土条件中实施的粒状柱支持大部分附加压力,在地震负载条件下开发对颗粒柱的沉降响应和压力轴承特性是至关重要的。本研究旨在在模拟地震载荷下呈现粒状柱承载反应的实验结果,以及横向边界条件对柱行为的影响。为了模仿支撑持续附加载荷的柱的地震行为,在1g振动台测试中使用了两种不同的大规模实验组件。所用的组件是层状盒和刚性盒,其旨在用于自由场和刚性边界条件的物理类比。研究了柱头上的加强菌株,压力浓度和用具有不同加强刚度的颗粒柱增强的单元电池的沉降。还研究了单位细胞沉降与两个重要地震强度措施之间的关系,即arias强度和颤抖强度率。

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