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Modelling desiccation cracking in a homogenous soil clay layer: comparison between different hypotheses on constitutive behaviour

机译:均质土壤黏土层中的干燥裂纹建模:本构行为的不同假设之间的比较

摘要

Desiccation cracks are usually thought to start from the surface of an evaporating soil layer, and the available simplified models for crack initiation and propagation are based on this hypothesis. On the contrary, experimental results on a Dutch river clay showed that cracks in an evaporating soil layer may start and propagate below the surface, confirming earlier findings by other researchers. A simple one-dimensional model was set up to analyse the consequences of different hypotheses about the material behaviour on the crack onset in a homogenous soil layer undergoing surface drying. The results of the model show that dependence of the material behaviour on the rate of water content change is a necessary requirement for cracks to initiate below the surface. The conclusion suggests that, to properly understand cracking in an evaporating soil layer, an intrinsic time scale for the mechanical response must be accounted for, among all the other factors which were previously highlighted by other researchers. The key factor to predict crack onset below the surface is the dependence of the drying branch of the water retention curve of the compressible soil on the rate of drying, which would be justified by a rate dependent fabric evolution.
机译:干燥裂纹通常被认为是从蒸发土壤层的表面开始的,可用的简化的裂纹萌生和扩展模型是基于这种假设的。相反,在荷兰河道粘土上进行的实验结果表明,蒸发的土壤层中的裂缝可能开始并在地下传播,这证实了其他研究人员的早期发现。建立了一个简单的一维模型,以分析关于材料特性对表面干燥的均质土壤层中裂纹产生的不同假设的后果。该模型的结果表明,材料行为对含水量变化率的依赖性是裂纹在表面以下萌生的必要条件。结论表明,要正确理解蒸发土壤层中的裂缝,除其他研究人员先前强调的所有其他因素外,还必须考虑机械响应的内在时间尺度。预测表面下裂纹开始的关键因素是可压缩土壤保水曲线的干燥分支对干燥速率的依赖性,这可以通过速率依赖性织物的演变来证明。

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