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Numerical analyses of laboratory-modelled reinforced stone column

机译:实验室模拟钢筋石柱的数值分析

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A stone column develops its vertical load carrying capacity by the lateral pressure provided by the surrounding soil. In very soft clay (C-u = 15 kPa), the stone column may not derive its load carrying capacity. Sometimes the formation of stone column is doubtful. In such cases, the stone column may be wrapped with geosynthetic peripherally (circumferentially). Normally, reinforced stone columns are used for widely spread areas like air tank foundation and embankment in which they confined by surrounding the columns. The performance of a small group of reinforced stone columns is complex. This communication focuses on the numerical modelling of a small group of laboratory-modelled reinforced stone columns. The study is carried out considering parameters like area replacement ratio (ARR), stiffness of reinforcement material and reinforcement length. The performance of reinforced stone column group is discussed in terms of bearing ratio, (q/Cu)-settlement ratio, stress concentration factor and lateral deformation. The results of numerical analyses indicate that ARR and stiffness of geosynthetic are the governing parameters for enhancing the performance of reinforced stone column. The performance of partial reinforced stone column is close to that of a fully reinforced stone column.
机译:石柱通过周围土壤提供的侧向压力来提高其垂直承载能力。在非常软的粘土(C-u <= 15 kPa)中,石柱可能无法获得其承载能力。有时石柱的形成令人怀疑。在这种情况下,石柱可能在周围(周向)用土工合成材料包裹。通常,钢筋石柱用于广泛分布的区域,如气罐基础和路堤,它们通过围绕柱而受到限制。一小组钢筋石柱的性能很复杂。此次交流的重点是一小组实验室建模的钢筋石柱的数值建模。该研究是在考虑诸如面积置换率(ARR),增强材料的刚度和增强长度等参数的情况下进行的。从承载比,(q / Cu)沉降比,应力集中系数和侧向变形等方面讨论了钢筋混凝土柱群的性能。数值分析结果表明,土工合成材料的ARR和刚度是增强石柱性能的主要参数。部分钢筋石柱的性能接近完全钢筋石柱的性能。

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