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A PRE-DREDGING SAND MOBILITY STUDY USING A RADIOISOTOPE TRACER

机译:使用放射性同位素示踪剂预挖砂土流动性的研究

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The wave-driven movement of sand across the alignment of a proposed navigation channel was investigated using radioactive chromium-51 labelled tracer sand. The mean particle velocity and thickness of the mobile layer were determined over a two-month period, and an annual infill rate estimated. Wave height and period were measured concurrently. Despite two storms, during which near-bed oscillating velocities of 1.5 m s-1 were calculated the sand transport at 10 m (BMWL) appears to occur within the wave boundary layer. Onshore transport in the direction of wave propagation, due to mass transport velocity and wave asymmetry effects, was easily identified. Tidal currents up to 1.2 m s-1 (at 3 m above bed) had less than the expected effect on the tracer dispersion pattern.
机译:使用放射性铬51标记的示踪剂砂研究了砂波在拟议导航通道上的波动运动。在两个月的时间内确定了可移动层的平均粒子速度和厚度,并估算了年度填充率。同时测量波高和周期。尽管有两次暴风雨,在此期间计算出了1.5 m s-1的近地层振荡速度,但在波边界层内似乎仍发生了10 m的砂运(BMWL)。由于质量传输速度和波不对称效应,很容易确定沿波传播方向的陆上传输。高达1.2 m s-1(在床上方3 m处)的潮流对示踪剂扩散模式的影响小于预期。

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