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Mechanical Behavior of Dam Foundation with Vertical Sand Drain, Case Study: Sombar Dam

机译:大坝基础与垂直砂流失的力学行为,案例研究:Sombar Dam

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Installing vertical sand drains is a traditional dam foundation consolidation solution that is economical and provides good drainage efficiency. Vertical sand drains can shorten the path of water flow inside the soil and speeds up soil consolidation. This study investigated the effect of sand drains in the foundation of the Sombar Dam in Iran on its mechanical behavior. The Sombar Dam is a project to control flooding and provide agricultural water to Gholaman city in northeastern Iran. The investigation included the mechanical behavior of the dam with vertical sand drains. The studied parameters were drain diameter, depth and spacing in addition to the vertical-to-horizontal permeability ratio (ky/kx) of the foundation soil during the time of construction of the dam using a Mohr-Coulomb (MC) model in the software application GeoStudio. The results revealed that reducing the drain spacing (increasing the number of drains) and increasing the depth and diameter of the drains led to an increase of the settlement rate (up to 90%) and the stability of the dam over a shorter period of time (24 months) compared to no drain condition. With a decrease in the ratio of vertical-to-horizontal permeability (ky/kx?=?0.1) for all drain parameters there was a decrease in the value of the dam settlement rate and the safety factor.
机译:安装垂直砂漏是一种传统的大坝基础整合解决方案,是经济的,提供良好的排水效率。垂直砂漏可以缩短土壤内部水流的路径,并加快土壤整合。本研究调查了沙漏在伊朗的Sombar大坝基础上的机械行为。 Sombar Dam是一种控制洪水的项目,为伊朗东北部提供农业水。调查包括垂直砂排水管的大坝的力学行为。除了在软件中使用Mohr-Coulomb(MC)模型的船舶建设时,除了基础土壤的垂直水平渗透率(KY / KX)之外,研究的参数还具有漏极直径,深度和间隔应用GeoTudio。结果表明,减少漏极间距(增加漏极数量)并增加漏极的深度和直径导致沉降率(高达90%)的增加和大坝在较短的时间段内的稳定性(24个月)与无排水条件相比。对于所有漏极参数的垂直到水平渗透率(KY / KX = 0.1)的比率减小,坝沉降率的值和安全系数减少。

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