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Field Test Research on Red Clay Slope under Atmospheric Action

机译:大气行动下红泥坡面现场试验研究

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By embedding water content sensors and pore water pressure sensors inside the red clay slope on-site in Guiyang, Guizhou, shear tests were performed on soil samples at different depths of the slope under different weather. The changes of water content, pore water pressure, and shear strength index of the slope inside the slope under the influence of the atmosphere were tracked and tested, and the failure characteristics and evolution of the red clay slope were analyzed. It is believed that the depth of influence of the atmosphere on red clay slopes is about 0.7?m, rainfall is the most direct climatic factor leading to the instability of red clay slopes, and the evaporation effect is an important prerequisite for the catastrophe of red clay slopes. The cohesion and internal friction angle of the slope soil have a good binary quadratic function relationship with the water content and density. The water content and density can be used to calculate the cohesion and internal friction angle. Failure characteristics of red clay slopes: the overall instability failure is less, mainly surface failure represented by gullies and weathering and spalling, and then gradually evolved into shallow instability failure represented by collapse and slump. The damage evolution law is as follows: splash corrosion and surface corrosion stage? fracture development stage? gully formation stage? gully development through stage? local collapse stage? slope foot collapse stage.
机译:通过在贵州贵阳贵阳的红粘土坡内嵌入水含量传感器和孔隙水压传感器,在不同天气下对坡度的不同深度的土壤样品进行剪切试验。的水含量,孔隙水压力,气氛的影响下的斜率内的斜率的剪切强度指数变化的跟踪和测试,故障特性和红粘土斜率的演变进行分析。据信,红色粘土斜坡对大气影响的深度约为0.7μm,降雨是导致红粘土斜坡不稳定性的最直接气候因素,蒸发效果是红色灾难的重要前提条件粘土坡。斜坡土的内聚力和内部摩擦角与水含量和密度具有良好的二元二次功能关系。水含量和密度可用于计算内聚力和内部摩擦角。红色粘土斜坡的失效特性:整体不稳定失败较少,主要是沟渠和风化和剥落所代表的表面故障,然后逐渐发展成坍塌和坍落度所代表的浅不稳定失败。损害进化法如下:飞溅腐蚀和表面腐蚀阶段?骨折发展阶段?沟壑形成阶段?沟壑通过舞台发展?地方崩溃阶段?斜坡脚崩溃阶段。

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