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Spreading and Deposition of Turbidity Currents: Application to Open-Water Sediment Disposal

机译:浊流的扩散和沉积:在开阔水域沉积物中的应用

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摘要

A new two-phase box model is developed in this study for the prediction of a spatially varying turbidity current with sediments on a horizontal bottom. The turbidity current is segmented into small subvolumes to account for the spatial variation with nonuniform spreading, while a two-phase formulation computes the differential settling of the suspended sediments inside the turbidity current, which form deposits onto the seabed. In addition, the new model is capable of simulating the transition from constant flux to fixed volume propagation, which is typical for both natural submarine landslides and engineered barged sediment disposal. The computation is terminated when most of the total sediment volume is deposited, yielding the final deposition pattern. Following the model development, a detailed experimental study was carried out in the laboratory to validate the model predictions by releasing large but finite amounts of sediments through a rectangular opening on the water surface. The agreement between the model predictions and experimental measurements was found to be satisfactory. Finally, this model is integrated into the Barged Sediments Disposal Model (BSDM) software for the assessment of open-water barged sediment disposal. A practical application of the integrated BSDM is demonstrated using a field study reported in the literature.
机译:在本研究中,开发了一种新的两相箱模型,用于预测水平底部沉积物在空间上变化的浊流。浊流被细分为较小的子体积,以解决空间分布不均匀扩散的问题,而两相公式计算了浊流内部悬浮沉积物的差异沉降,这些沉积物在海底形成了沉积物。此外,新模型能够模拟从恒定通量到固定体积传播的过渡,这对于天然海底滑坡和工程裸露的沉积物都是很典型的。当沉积了全部沉积物总量的大部分时,计算终止,产生最终的沉积图案。模型开发之后,在实验室中进行了详细的实验研究,通过通过水表面上的矩形开口释放大量但有限的沉积物来验证模型预测。发现模型预测与实验测量之间的一致性是令人满意的。最后,该模型已集成到“裸露沉积物处置模型”(BSDM)软件中,用于评估开放水域裸露沉积物处置。使用文献中报道的现场研究证明了集成BSDM的实际应用。

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