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Settlement analysis of a cylindrical tank based on CPTU and SDMT results

机译:基于CPTU和SDMT结果的圆柱罐沉降分析

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Within the framework of an investment project a cylindrical tank to store liquid fuels was designed. It was founded under difficult soil and water conditions on alluvial subsoil composed of alternately deposited sands and organic soils. The result of an analysis of settlement of the building structure in the least advantageous situation, i.e. at the filling test, was considered an important criterion of correctness of the design. A MES 3D analysis of these settlements was conducted at the assumption of subsoil stratification identified geometrically using CPTU penetration and dilatometer testing (SDMT). Penetration in situ tests comprised also the basis for the evaluation of deformation parameters, quantifying the linear-elastic, isotropic models of layers. The leading parameter for each layer was the maximum (initial) G_0 shear modulus. On the basis of this modulus and the stiffness model of the subsoil a quasi 3D Poisson's ratio was selected so that the condition of incompressibility was met. Correctness of calculation assumptions was verified by comparing theoretically predicted settlements with the results of their monitoring at the filling test stage. The presented paper may be seen as an example of the application of the concept of Experimental Soil Engineering (ESE), introduced extensively to present-day geotechnical design and based on simple, realistic mathematical models with parameters possibly best adapted to the reality, represented by the results of measurements.
机译:在一个投资项目的框架内,设计了一个用于存储液体燃料的圆柱形储罐。它是在困难的土壤和水条件下,在由交替沉积的砂土和有机土壤组成的冲积地下土壤上建立的。在最不利的情况下,即在填充测试中,分析建筑结构沉降的结果被认为是设计正确性的重要标准。在使用CPTU渗透和膨胀计测试(SDMT)进行几何确定的地下土壤分层的假设下,对这些沉降进行了MES 3D分析。渗透原位测试还包括评估变形参数,量化层的线弹性,各向同性模型的基础。每层的主要参数是最大(初始)G_0剪切模量。基于该模量和地基的刚度模型,选择准3D泊松比,从而满足不可压缩性的条件。通过将理论预测的沉降与填充测试阶段的监测结果进行比较,可以验证计算假设的正确性。提出的论文可以看作是应用“试验性土壤工程”(ESE)概念的示例,该概念被广泛引入当今的岩土工程设计中,并基于简单,逼真的数学模型,其参数可能最适合实际情况,表示为测量结果。

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