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Subaqueous cohesive sediment gravity flows from open water pipeline dredge disposal: laboratory experiments and mathematical modeling

机译:露天管道疏edge处置产生的水下粘性沉积物重力:实验室实验和数学模型

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Subaqueous sediment gravity flows generated in open water pipeline dredge disposal operations were investigated through laboratory experiments and mathematical modeling. Three laboratory experiments that simulate typical open water pipeline dredge disposal operations in the coastal environment were conducted by discharging mud slurries with three different initial concentrations in a large pool. The discharged mud slurries descended as vertical buoyant jets through the water column. After impinging the bottom, they formed a short-lived momentum-driven axisymmetric horizontal flow that transformed into an axisymmetric gravity flow soon after. The analysis of the radial spreading of those fluid mud gravity flows showed that their flow dynamics were governed by a balance between the driving buoyancy force and the resisting inertia force. A simple mathematical model (compositional box model) that does not consider the presence of suspended sediment was used to predict the experimental observations. The predictions of the box model solution were observed to be notably in good agreement with experimental observations, despite the box model exhibiting several simplifying assumptions. It is concluded that the radial propagation of fluid mud gravity flows in the inertia-buoyancy propagation phase can be modeled by a compositional box model solution. This study is motivated by the need for deterministic predictive modeling capabilities for coastal dredging operations.
机译:通过实验室实验和数学建模研究了在开放水管道疏edge处置操作中产生的水下沉积物重力流。通过在大型水池中排放三种不同初始浓度的泥浆,进行了三个模拟沿海环境中典型的开放水管道疏edge处置操作的实验室实验。排出的泥浆通过水柱下降为垂直浮力射流。撞击底部后,它们形成了短暂的动量驱动的轴对称水平流,并在不久后转变为轴对称重力流。对这些流体泥浆重力流的径向扩展的分析表明,它们的流动动力学受驱动浮力和阻力惯性力之间的平衡支配。一个不考虑悬浮沉积物存在的简单数学模型(组成盒模型)被用来预测实验结果。尽管盒模型表现出几个简化的假设,但观察到盒模型解决方案的预测与实验观察结果非常吻合。结论是,可以通过组合箱模型解决方案来模拟在惯性-浮力传播阶段的流体泥浆重力流的径向传播。这项研究的动机是对沿海疏operations作业需要确定性的预测建模能力。

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