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Three-Dimensional Seepage Characteristics of Reservoir Embankment Considering Interval of Horizontal Filter

机译:考虑水平过滤间隔的水库路堤三维渗流特征

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Recently, the deterioration of reservoir embankments has progressed severely; thus, a more efficient design and construction method for deteriorated reservoir structures is required. For a fill-type reservoir embankment, a method that employs intervals between the horizontal filter and the embankment has been used and shown to achieve an efficient design. Since the horizontal filter is an important structure that provides stable drainage during an earthquake or concentrated leak, it is necessary to examine any change in the seepage characteristics depending on the filter intervals. In this study, the seepage characteristics of a reservoir embankment were examined according to the filter interval range via 3-D finite element analysis; additionally, potential risks such as those from piping were reviewed relative to the design interval of structurally stable filters. Consequently, results showed that the maximum filter intervals to yield efficient seepage characteristics were within 0-20.5 m for the pore water pressure of the core and the height of the seepage line. The piping evaluation results, as based on the range of the critical hydraulic gradient (I-cr : 0.8-1.4), demonstrated that the piping maintained stability within the filter interval range of 0-20.5 m; applying this range, stability was maintained when filters were installed throughout the embankment. However, when the filter interval exceeded 20.5 m, the piping was observed to fluctuate between stable and unstable conditions according to the range of the critical hydraulic gradient. Thus, to ensure structural stability, this study has proposed a decision method for the interval of horizontal filters based on the results of 3-D seepage analysis and the theoretical range of critical hydraulic gradient.
机译:最近,水库路堤的恶化已经严重恶化。因此,需要一种用于变质的储层结构的更有效的设计和建造方法。对于填充型储层路堤,已经使用了一种在水平过滤器和路堤之间采用间隔的方法,该方法已显示出实现高效设计的方法。由于水平过滤器是在地震或集中泄漏期间提供稳定排水的重要结构,因此有必要根据过滤器间隔检查渗透特性的任何变化。在这项研究中,通过3-D有限元分析,根据过滤间隔范围检查了储层路堤的渗流特性。此外,相对于结构稳定的过滤器的设计间隔,对诸如管道等潜在风险进行了审查。因此,结果表明,对于岩心的孔隙水压力和渗漏线的高度,产生有效渗流特性的最大过滤间隔在0-20.5 m内。基于临界水力梯度的范围(I-cr:0.8-1.4)的管道评估结果表明,管道在0-20.5 m的过滤间隔范围内保持了稳定性;在此范围内,在整个路堤上安装过滤器时,可以保持稳定性。但是,当过滤间隔超过20.5 m时,根据临界水力梯度的范围,观察到管道在稳定和不稳定条件之间波动。因此,为确保结构的稳定性,本研究基于3-D渗流分析的结果和临界水力梯度的理论范围,提出了一种确定水平过滤器间距的方法。

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