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Theoretical computation background for transformation of foundations using pile drains

机译:使用桩排水管改造基础的理论计算背景

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In the design of foundations for buildings and structures of various purposes, including improved risk, weak water-saturated clay soils with low mechanical characteristics are often found on a construction site. One of the possible ways of using them as a foundation is to seal them in various ways, including using pile drains of sand or rock stone material that are capable of both absorbing the load at the base and accelerating the process of filtration consolidation. This paper describes an analytical solution to the problem of interaction between the pile and the mattress with the surrounding soil of the foundation, taking into account the possibility of expanding the pile shaft. Solutions are obtained for determining the stresses in the shaft of the pile drain and in the soil under the mattress. The solution takes into account the influence of the pre-stressed state of the foundation after compaction on the formation of a stress-strain state during the erection and operation of structures. The solutions are relevant for consolidating pile drains made of rubble or for jet grouting piles, the rigidity of which is comparable to the rigidity of the surrounding soil. The paper describes the technique for determining the characteristics of the strength and deformability of the converted foundation and the results of large-scale tests at the experimental site for the construction of a large energy facility in Russia.
机译:在建筑物和结构的基础上的设计中,包括改善的风险,弱水饱和粘土土壤通常在建筑工地上发现。使用它们作为基础的可能方法之一是以各种方式密封它们,包括使用能够吸收底座上的负荷并加速过滤固结的过程的砂或岩石石材的桩漏。本文介绍了对桩与床垫与基础周围土壤相互作用问题的分析解决方案,考虑到扩展桩轴的可能性。获得解决方案以确定桩排放轴中的应力和床垫下的土壤中。解决方案考虑了在结构的勃起和操作期间形成应力 - 应变状态的形成后基础的预应力状态的影响。该解决方案与瓦砾或喷射灌浆桩制成的桩排水件相关,其刚性与周围土壤的刚性相当。本文介绍了确定转换基础的强度和可变形性的特性及实验部位的大规模试验结果,以建造俄罗斯的大型能源设施。

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