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首页> 外文期刊>Canadian Geotechnical Journal >Frost heave and thaw consolidation modelling. Part 1: A water flux function for frost heaving
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Frost heave and thaw consolidation modelling. Part 1: A water flux function for frost heaving

机译:霜冻和解冻合并建模。 第1部分:用于霜冻的水通量函数

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Although much effort has been made to develop various frost heave models in the past decades, a simple yet versatile model is still needed for engineering applications. This paper presents a method to estimate frost heave in frozen soil using a macroscopic water flux function that extends the segregation potential to make it applicable for both steady state and transient freezing and thawing states. The formation of an individual ice lens is modelled by combining previously developed stress and strain criteria. The water flux function, which includes various factors in accordance with the porosity rate function, can describe the growth of both new and old ice lenses. More importantly, every component of the water flux function is physically explained by the theory of pre-melting dynamics, where all the influencing factors are traced back to their impacts on the ice volume distribution. The performance of the model is demonstrated via simulations of one-dimensional freezing and thawing processes after the model is validated by a specific case from previous literature. Although adequate data are not available for a stricter experimental verification of the model, it is observed that the simulations predict the general course of events together with significant specific features that were identified in previous experimental studies.
机译:尽管在过去几十年里,人们已经做出了很多努力来开发各种冻胀模型,但工程应用仍然需要一种简单而通用的模型。本文提出了一种利用宏观水通量函数估算冻土冻胀的方法,该函数扩展了离析势,使其适用于稳态和瞬态冻融状态。通过结合先前发展的应力和应变标准,对单个冰透镜体的形成进行建模。水通量函数包括与孔隙度率函数一致的各种因素,可以描述新旧冰透镜体的生长。更重要的是,水通量函数的每一个组成部分都由预融化动力学理论进行了物理解释,其中所有的影响因素都可以追溯到它们对冰体积分布的影响。通过对一维冻融过程的模拟,验证了该模型的有效性。虽然没有足够的数据对模型进行更严格的实验验证,但可以观察到,模拟预测了事件的一般过程,以及在以前的实验研究中确定的重要特定特征。

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