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Frost heave modelling using porosity rate function

机译:使用孔隙率函数的冻胀模型

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摘要

Frost-susceptible soils are characterized by their sensitivity to freezing that is manifested in heaving of the ground surface. While significant contributions to explaining the nature of frost heave in soils were published in late 1920s, modelling efforts did not start until decades later. Several models describing the heaving process have been developed in the past, but none of them has been generally accepted as a tool in engineering applications. The approach explored in this paper is based on the concept of the porosity rate function dependent on two primary material parameters: the maximum rate, and the temperature at which the maximum rate occurs. The porosity rate is indicative of ice growth, and this growth is also dependent on the temperature gradient and the stress state in the freezing soil. The advantage of this approach over earlier models stems from a formulation consistent with continuum mechanics that makes it possible to generalize the model to arbitrary three-dimensional processes, and use the standard numerical techniques in solving boundary value problems. The physical premise for the model is discussed first, and the development of the constitutive model is outlined. The model is implemented in a 2-D finite element code, and the porosity rate function is calibrated and validated. Effectiveness of the model is then illustrated in an example of freezing of a vertical cut in frost-susceptible soil. Copyright © 2006 John Wiley & Sons, Ltd.
机译:冰霜敏感的土壤的特征在于它们对冻结的敏感性表现在地面表面的悬浮体中。虽然在20世纪20年代后期发表了解释土壤中霜冻冰雹性质的重大贡献,但在稍后的数十年中,建模努力不会开始。描述了一些模型,描述了剩余过程的过去已经开发出来,但是它们都没有被接受作为工程应用中的工具。本文探索的方法基于孔隙率函数的概念,依赖于两个主要材料参数:最大速率,以及最大速率发生的温度。孔隙率表示冰增长,并且这种生长也取决于冷冻土中的温度梯度和应力状态。这种方法在更早的模型上的优点是与连续力学一致的配方,这使得可以将模型概括为任意的三维过程,并使用标准数值技术来解决边界值问题。首先讨论该模型的物理前提,概述了本构模型的发展。该模型以二维有限元码实现,孔隙率函数被校准并验证。然后在冻结冰霜易感土壤中冻结垂直切割的示例中示出了模型的有效性。版权所有©2006 John Wiley&Sons,Ltd。

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