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Hydrological responses and stability analysis of shallow slopes with cohesionless soil subjected to continuous rainfall

机译:连续降雨条件下无粘性土浅坡边坡的水文响应及稳定性分析

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Understanding the hydrological and physical responses of shallow slopes subject to rainfall events is vital for the efficiency of a warning system setup. In this research, a series of experiments were undertaken to evaluate the hydrological responses of shallow slopes of varying steepness and when subjected to varying intensities, periods, and inter-storm periods of rainfall. An analysis of infinite slopes was also undertaken to develop a fundamental understanding of rainfall-induced shallow slope failure characteristics. The hydrological and physical responses were characterized in the infiltration and saturation phases. During the infiltration phase, the maximum magnitude of water content was found behind the wetting front, termed as the water content behind the wetting front (theta(wb)). For a certain soil type, the magnitude of theta(wb) was found to be dependent on the magnitude of rainfall intensity, regardless of the slope gradient and initial water content. Based on the relative depth of the failure plane, the failure can be categorized by three prime modes: (i) along the impervious layer mode, (ii) shallow depth mode, and (iii) transitional mode. These modes can be characterized by the magnitude of a stability index termed as tan phi'/tan beta ratio. An infiltration index, termed as i/k(s) ratio, was found to play a role in the depth of the failure plane only for the transitional mode.
机译:了解受降雨事件影响的浅层斜坡的水文和物理响应对于提高预警系统设置的效率至关重要。在这项研究中,进行了一系列实验,以评估不同陡度和降雨强度,周期和暴风雨间变化时浅坡的水文响应。还进行了无限边坡分析,以建立对降雨引起的浅层边坡破坏特征的基本理解。在入渗和饱和阶段表征了水文和物理响应。在渗透阶段,在湿润前沿后面发现了最大的水含量,称为湿润前沿后面的水分(theta(wb))。对于某种土壤类型,无论坡度和初始含水量如何,theta(wb)的大小都取决于降雨强度的大小。基于破坏面的相对深度,可以将破坏分为三种主要模式:(i)沿不渗透层模式,(ii)浅深度模式和(iii)过渡模式。这些模式可以通过称为tan phi'/ tan beta比的稳定性指数的大小来表征。发现渗透指数,称为i / k(s)比,仅对于过渡模式在破坏平面的深度中起作用。

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