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Seepage analysis of earth dams considering spatial variability of hydraulic parameters

机译:考虑水力参数空间变异的地球坝渗流分析

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AbstractTo investigate the influence of spatial variability of hydraulic parameters on the flow in earth dams, saturated-unsaturated seepage is numerically simulated combining Monte Carlo simulation and random field theory. The van Genuchten model is adopted to represent soil-water characteristic curve (SWCC). The SWCC fitting parameters (a,n) and the saturated hydraulic conductivity parameter (ks) are considered as lognormal random fields. An approach of logarithmic translation is used for generating lognormal variables with lower limits greater than zero. The influence of the coefficient of variation (COV) and autocorrelation distance of hydraulic parameters on the flow rate is studied and compared. Sensitivity analysis indicates that the COVs of SWCC parameternand saturated hydraulic conductivitykshave a larger effect on the flow rate than that of SWCC parametera. A larger horizontal autocorrelation distance corresponds to a larger mean and COV of the flow rate. Neglecting the spatial variability of hydraulic parameters leads to overestimation of the mean and COV of the flow rate in earth dams, which could lead to conservative design of dams.Highlights?A thorough analysis of earth dam considering spatial variability of hydraulic parameters?Lognormal random fields of hydraulic parameters were found appropriate for this analysis.?The flow rate and its variation were affected by autocorrelation distance.?Neglecting spatial variability may lead to overestimation of the variation of flow rate.]]>
机译:<![cdata [ 抽象 调查液压参数空间变异性对地球坝流量的影响,饱和不饱和渗流在数值上模拟结合蒙特卡罗模拟与随机场理论。采用Van Genuchten模型代表土壤 - 水特征曲线(SWCC)。 SWCC拟合参数( a n )和饱和液压导电性参数( k s )被视为逻辑正式随机字段。对数转换的方法用于生成具有较低限制的逻辑正式变量大于零。研究了液压参数系数(COV)和自相关距离对流速的影响。敏感性分析表明SWCC参数的COV n 和饱和液压导率 k s 对流速的效果大于SWCC参数 A 。较大的水平自相关距离对应于流速的较大平均值和COV。忽略液压参数的空间可变性导致地球坝中流速的平均值和COV的高估,这可能导致水坝的保守设计。 亮点 考虑液压参数空间可变性的地球大坝彻底分析 找到液压参数的lognormal随机字段适合此分析。 流量和其变化受到自相关距离的影响。 < CE:标签>? 忽略空间可变性可能导致过度估计流速的变化。 ]]>

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