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Bench-Scale Study of Desiccation Crack Development in Clayey Soil

机译:粘土土壤干燥裂纹发育的长凳规模研究

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Desiccation cracks play a crucial role in the stability of slopes by impacting mechanical and hydraulic soil properties in upper layers of the slope. Research involving a bench scale device for studying desiccation crack development is presented in this paper. The bench scale device contained a compacted clay soil bed approximately 0.9 m deep and instrumented with five soil moisture sensors at different depths. In plan, the soil bed was 0.6 m long and 0.1 m wide, and constrained at the ends so that transverse desiccation cracks would form. The sides were constructed of clear acrylic so that crack depths could be monitored. A soil water characteristic curve was determined so that total suction variations in the soil bed could be estimated using moisture contents. After 1.5 months the soil moisture loss became gradual and exhibited a similar steady rate at all depths. Measured crack depths at the end of 5 months compared favorably with those predicted using a simple analytical model.
机译:干燥裂缝在斜坡上层中的机械和液压土坯中的稳定性中起着至关重要的作用。本文介绍了涉及用于研究干燥裂纹开发的板凳规模装置的研究。板凳刻度装置含有一层大约0.9米的压实粘土土壤,并用不同深度的土壤湿度传感器仪表。在计划中,土壤床长0.6米,宽0.1米,并在末端约束,使得横向干燥裂缝将形成。侧面由透明丙烯酸制成,从而可以监测裂纹深度。确定土壤水特征曲线,使得可以使用水分含量估计土壤床中的总吸气变化。 1.5个月后,土壤水分损失变得逐渐变得逐步,并且在各种深度上表现出类似的稳定速率。在5个月结束时测量的裂纹深度有利地与使用简单分析模型预测的那些。

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