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Experimental and Practical Evaluation Method of Threedimensional Frost Heave of Frozen Soil

机译:冻土三维霜冻升降的实验与实践评价方法

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Various models have been proposed for frost heave estimation. However, a practical evaluation method for multi-dimensional deformation has not yet been established. This study aimed to discuss the possibility of expanding an existing evaluation method into three dimensions based on previous experience on simulating interactive behavior between an underground structure and frost heave. Takashi's equation was adopted among several frost heave models considered; this model has been used to estimate one-dimensional frost heave according to the Japanese Geotechnical Standard. However, it is applicable only for one-dimensional frost heave. The authors developed a new apparatus to measure three-dimensional frost heave to apply Takashi's equation to multi-dimensional heave, and a modified equation was proposed based on the experimental results. Considering the effect of anisotropic properties on frost heave, this proposal was adopted for a simulation program by coupling the heat transfer calculation and mechanical equilibrium analysis in a finite element method (FEM) model. The fundamental simulation results are presented in this paper as an example to confirm the proposed model's applicability.
机译:已经提出了各种模型,用于霜冻估计。然而,尚未建立用于多维变形的实际评估方法。本研究旨在讨论将现有评估方法扩展为三维的可能性,基于以前的模拟地下结构和霜冻升降之间的互动行为的经验。考虑过几种霜冻筹码模型中采用了Takashi的等式;该模型已被用于根据日本岩土标准估算一维霜冻升降。但是,它仅适用于一维霜冻升沉。作者开发了一种测量三维霜冻升降的新装置,以将Takashi的方程应用于多维升降,并且基于实验结果提出了改进的方程。考虑到霜冻升降的各向异性特性的影响,通过在有限元方法(FEM)模型中耦合传热计算和机械平衡分析来采用仿真程序来采用该提议。本文提出了基本仿真结果,例如确认拟议模型的适用性的示例。

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