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Pile Spacing Optimization of Short Piled Raft Foundation System for Obtaining Minimum Settlement on Peat

机译:桩桩桩间距优化,以获得泥炭的最小沉降

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Short Piled Raft is a modified piled raft foundation system, which represents combination between raft foundation and pile foundation, but the length of pile is relatively shorter. The basic concept of the Short Piled Raft foundation system considers the passive soil pressure creating a stiff condition of slab-pile system. This means that the thin concrete slab floats on the supporting soil, while the piles serve as stiffeners concrete slab and also to reduce settlement of the foundation. Slab to pile ratio of such system has been mentioned by several researchers, however the optimum pile spacing of stability performance for obtaining minimum settlement on peat haven't been clearly discussed. In this study, finite element method to simulate the stability performance related to settlement of Short Piled Raft foundation system was used. Short Piled Raft foundation system with concrete slab of 7.0 m x 7.0 m square was assumed to be built on peat with the thickness of 3.5 m. The material properties of pile and raft were constant. The outer diameter of galvanized steel pipe as pile was 0.30 m; raft thickness was considered to be constant of 0.15 m and the length of pile was 3.00 m, while the pile spacing varied from 0.50 to 3.00 m. Point load varied from 0 to 100 kN with increment Of 20 kN was also considered as a static load, acted on the centre of the concrete slab. Optimization was done by comparing each numerical result of simulations, thus conclusion can easily be drawn. The optimum pile spacing was 1.00 m which produced minimum settlement of 30.11 mm under the load of 100 kN.
机译:短堆筏是一种改进的堆叠筏基础系统,代表筏基础和桩基之间的组合,但桩的长度相对较短。短桩筏基础系统的基本概念考虑了无源土压力,从而产生了平板桩系统僵硬条件。这意味着薄的混凝土板坯漂浮在支撑土上,而桩也用作加强筋混凝土板,也可以减少基础的沉降。几个研究人员提到了这种系统的平板桩比,然而,最佳的稳定性性能的最佳桩间距,可以清楚地讨论泥炭上的最小沉降。在该研究中,使用了模拟与沉降筏基础系统沉降相关的稳定性性能的有限元方法。采用厚度为3.5米,假设具有7.0米×7.0米平方的混凝土板的坯料筏基础系统。桩和筏的材料特性是恒定的。作为桩的镀锌钢管的外径为0.30米;筏厚度被认为是0.15米的恒定,桩的长度为3.00米,而桩间距变化0.50至3.00米。点负载从0到100kn变化,增加20kn也被认为是静电负载,作用在混凝土板的中心。通过比较仿真的每个数值结果来完成优化,因此可以容易地绘制结论。最佳桩间距为1.00米,在100kn的负载下产生30.11mm的最小沉降。

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