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Strength behavior of slip-zone soils of landslide subject to the change of water content

机译:含水量变化对滑坡滑带土强度的影响

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摘要

Landslides are the major natural hazards in many countries all over the world and are usually caused by heavy rainfall, water level change of reservoir, excavation, earthquake, etc. Whether the landslide occurs or not in rainfall season, the strength variation of slip-zone soils of landslide is regarded as the vital control factor. Thus, strength behavior for slip-zone soils of landslide subject to the change of water content is required to be evaluated in a potential landslide area. In this paper, the shear strength of typical slip-zone soil, six groups of 25 specimens of remolded clay samples from Daxishan reservoir landslide, was systemically investigated using the improved direct shear test apparatus in order to fully understand its physical and mechanical properties, and also the shear and failure behavior. Furthermore, the fitting equations for expressing the relationship between the shear strength (effective cohesion and internal friction angle) and vertical loadings, initial water contents of slip-zone clay were established based on the experimental results. In particular, a series of shear stress-shear strain curves under various vertical loadings and different water contents were observed. The results show that a "softening" stress-strain behavior is achieved for unsaturated slip-zone soil, while a "hardening" curve is found for saturated slip-zone soil.
机译:滑坡是世界上许多国家的主要自然灾害,通常是由强降雨,水库水位变化,开挖,地震等引起的。无论是否在降雨季节发生滑坡,滑带的强度变化滑坡土壤被认为是至关重要的控制因素。因此,需要在潜在的滑坡区域评估含水量变化引起的滑坡滑带土的强度行为。本文使用改进的直接剪切试验仪系统地研究了典型的滑带土的抗剪强度,六组Daxishan水库滑坡的重塑黏土样品的25个标本,以充分了解其物理和机械性能,并还有剪切和破坏行为。此外,根据试验结果,建立了表示抗剪强度(有效内聚力和内摩擦角)与竖向荷载,滑动带黏土初始含水量之间关系的拟合方程。特别是,在各种垂直载荷和不同含水量下,观察到一系列剪切应力-剪切应变曲线。结果表明,对于不饱和滑带土,其“软化”应力-应变行为得以实现,而对于饱和滑带土,则出现了“硬化”曲线。

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