首页> 外文期刊>Soil Dynamics and Earthquake Engineering >A Case Study Of Damages Of The Kandla Port And Customs Office Tower Supported On A Mat- Pile Foundation In Liquefied Soils Under The 2001 Bhuj Earthquake
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A Case Study Of Damages Of The Kandla Port And Customs Office Tower Supported On A Mat- Pile Foundation In Liquefied Soils Under The 2001 Bhuj Earthquake

机译:2001年布吉地震下液化土中桩桩基础支撑的坎德拉港口和海关大楼损坏的案例研究。

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A case study is presented of the interaction between the bending due to laterally spreading forces and axial-load induced settlement on the piled foundations of the Kandla Port and Customs Tower located in Kandla Port, India, during the 2001 Bhuj earthquake. The 22 m tall tower had an eccentric mass at the roof and was supported on a piled-raft foundation that considerably tilted away as was observed in the aftermath of the earthquake. The soil at the site consists of 10 m of clay overlaid by a 12 m deep sandy soil layer. Post-earthquake investigation revealed the following: (a) liquefaction of the deep sandy soil strata below the clay layer; (b) settlement of the ground in the vicinity of the building; (c) lateral spreading of the nearby ground towards the sea front. The foundation of the tower consists of 0.5 m thick concrete mat and 32 piles. The piles are 18 m long and therefore passes through 10m of clayey soil and rested on liquefiable soils. Conventional analysis of a single pile or a pile group, without considering the raft foundation would predict a severe tilting and/or settlement of the tower eventually leading to a complete collapse. It has been concluded that the foundation mat over the non-liquefied crust shared a considerable amount of load of the superstructure and resisted the complete collapse of the building.
机译:案例研究表明,在2001年普杰地震期间,横向扩展力引起的弯曲与轴向载荷引起的沉降在印度坎德拉港口的坎德拉港口和海关塔的桩基上相互作用。这座高22 m的塔在屋顶处有一个偏心块,并被支撑在一个桩筏基础上,该桩筏在地震后被观察到倾斜了很多。该地点的土壤由10 m的粘土组成,上面覆盖着12 m深的沙质土壤层。地震后的调查显示:(a)黏土层以下的深层砂土层液化; (b)在建筑物附近沉降地面; (c)附近地面向海边横向扩展。塔的基础包括0.5 m厚的混凝土垫层和32个桩。桩长18 m,因此穿过10 m的黏土并搁在可液化土壤上。在不考虑筏板基础的情况下,单个桩或桩组的常规分析将预测塔的严重倾斜和/或沉降,最终导致完全倒塌。可以得出的结论是,未液化外壳上的地基垫层承担了上部结构的相当大的载荷,并抵抗了建筑物的完全倒塌。

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