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Slope stabilisation using EPS block geofoam with internal drainage system

机译:使用带有内部排水系统的EPS块状泡沫塑料进行边坡稳定

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Lightweight expanded polystyrene (EPS) geofoam (geofoam block) is used in slope remediation works as a soil substitute fill to reduce driving forces that can lead to global instability. On the other hand, the presence of seepage flow requires special attention because geofoam block slope systems are vulnerable to seepage-induced lateral forces. In this study, the effect of an internal drainage system on the alleviation of piezometric pressures within the back-slope of a geofoam block slope system was investigated. For this purpose, laboratory experiments were conducted using a small-scale lysimeter with dimensions of 60 cm height, 20 cm width, and 200 cm length. The slope was compacted with sand to obtain an overall dry unit weight of 14 kN/m(3). The constant piezometric head boundary conditions of 25, 38 and 50 cm generated the necessary hydraulic energy gradient for the seepage flow directed from the water reservoir of the lysimeter to the 45 degrees angle slope face. The slopes were remediated by using geofoam blocks assembled in an embankment-type configuration at the toe of the slope. The internal drainage system consisted of grooved geofoam blocks that formed the 10, 15 and 22.5 cm high embankments. Deep-seated failures of the non-remediated slope were prevented except for the experiments with 10 and 15 cm high embankments under 50 cm pressure head boundary conditions. In general, the internal drainage system alleviated the piezometric pressure conditions within the back-slope by lowering the phreatic surface using the active drainage channels observed during laboratory experiments. These drainage channels provided a convenient passageway for seepage flow. The coupled numerical variably saturated flow modelling and slope stability modelling predicted the factor of safety for global stability which confirmed the observed physical conditions in the laboratory. The use of the internal drainage system increased the factor of safety of the geofoam block slope system under seepage conditions.
机译:轻质膨胀聚苯乙烯(EPS)泡沫土(泡沫岩块)用于边坡修复工程中,作为土壤替代物填充物,以减少可能导致全球不稳定的驱动力。另一方面,渗流的存在需要特别注意,因为土工泡沫砌块的边坡系统容易受到渗流引起的侧向力的影响。在这项研究中,研究了内部排水系统对减轻土工泡沫砌块边坡系统后坡内测压压力的影响。为此目的,使用尺寸为60 cm高,20 cm宽和200 cm长的小型测渗仪进行实验室实验。用沙子压实边坡,获得的总干重为14 kN / m(3)。恒定的25、38和50 cm的测压头边界条件为渗水从渗漏仪的储水器引向45度角的斜面产生了必要的水力能量梯度。通过使用在路堤脚趾处以路堤型配置组装的土工泡沫块对路堤进行补救。内部排水系统由开槽的土工泡沫块组成,形成了10、15和22.5 cm高的路堤。除了在50 cm压头边界条件下用10 cm和15 cm高路堤进行的试验外,可以防止未修复斜坡的深层破坏。通常,内部排水系统通过使用实验室实验中观察到的主动排水通道来降低潜水面,从而减轻了后坡内的测压压力条件。这些排水通道为渗流提供了便利的通道。耦合的数值可变的饱和流动模型和边坡稳定性模型预测了整体稳定性的安全因素,从而确认了实验室中观察到的物理条件。内部排水系统的使用增加了在渗流条件下土工泡沫块斜坡系统的安全系数。

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