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Estimation of freeboard requirements against overtopping of surface impoundments under seismic action

机译:估算抗震作用下干舷的超高干舷要求

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The excitation of structural components and liquid contents of surface impoundments by seismic waves can generate turbu-lence that is large enough to overtop the bounding berms. In cases in which the liquids are wastes from industrial/municipal operations, their release from impoundments can pose significant risks to the environment. In this analysis, the freeboard magnitudes that can accommodate liquid head levels in impoundments are determined through linkage of configuration of waves in the liquid surface to incident seismic wave characteristics, liquid characteristics and impoundment design. For an impoundment site in a region of ground acceleration levels ranging from 0.2 to 1.0 g and impacted by seismic shear wave velocity of 180 m/s, freeboard requirements are in the range of 0.004-2.0 m on soft soil; 0.008-0.7 m on medium-dense soil; and 0.002-0.1 m for dense soil. For the same impoundment design, ground acceleration and incident wave characteristics, freeboard requirements are directly proportional to the depth of the soil mantle over bedrock. The impoundment slope, which is a key parameter with regards to liquid holding volumetric capacity of the impoundment, is a less significant parameter than depth to bedrock with regard to the size of the required freeboard. This implies that siting of an impoundment should be considered to be critical to impoundment performance in seismic zones.
机译:地震波激发结构构件和地表蓄水的液体含量会产生湍流,湍流的大小足以超出边界护堤的顶部。如果液体是工业/市政操作产生的废物,则从水库中释放出来会对环境造成重大风险。在此分析中,可通过将液面中波的配置与入射地震波特征,液体特征和蓄水池设计联系起来,确定可容纳蓄水池中液位高度的干舷幅度。对于地面加速度水平在0.2至1.0 g范围内并受180 m / s地震剪切波速度影响的蓄水场,软土上的干舷要求在0.004-2.0 m范围内;在中等密度的土壤上为0.008-0.7 m;对于稠密土壤为0.002-0.1 m。对于相同的蓄水设计,地面加速度和入射波特性,干舷要求与基岩上的地幔深度成正比。蓄积坡度是关于蓄积水的液体保持容量的关键参数,就所需干舷的尺寸而言,它比基岩的深度要小得多。这意味着应将水库的选址对地震带中水库的性能至关重要。

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