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Numerical Simulation of the Sedimentation Process in a Trailing Suction Hopper Dredge

机译:尾随料斗中泥沙淤积过程的数值模拟

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In the last decades large areas of land were reclaimed using trailing suction hopper dredgers, and large reclamation projects will be executed in the near future, especially in the Far East. During the overflow phase of the loading stage of the dredging cycle a part of the dredged volume of sand will not settle in the hopper but is transported with the overflow discharge overboard. For production, sand quality and environmental reasons it is important to predict the amount of this so-called overflow loss. Both the total volume of losses as the influence on the loaded (and lost) particle size distribution (PSD) is important. In 1997 a research program was started to get more under-standing of the sedimentation process onboard a hopper dredge. The goal of the programme was to develop a numerical model that can be used to predict the influence of the relevant parameters as hopper geometry, sand, discharge and concentration on the overflow losses (and which fractions of the PSD will be lost) . The research programme consists of three parts: laboratory experiments, development of numerical models and full-scale validation of the models. In the paper the results of the laboratory tests and the developed 1DV numerical model will be presented. The 1DV-model is one-dimensional, but in contrary to most existing models in the vertical direction: The influence of the PSD distribution is modelled using a coupled system of transport equations (convection-diffusion) for the different grain sizes. The numerical results will be compared with the experiments. Good agreement is achieved in prediction of the overflow losses as function of the loading time with constant and varying inflowing sandflux.
机译:在过去的几十年中,使用拖斗式吸泥机对大片土地进行了开垦,不久的将来将进行大规模的填海工程,特别是在远东地区。在疏cycle周期的装载阶段的溢流阶段,一部分挖出的沙子不会沉降到料斗中,而是与溢流排出一起运送到船外。对于生产,沙子质量和环境原因,重要的是预测这种所谓的溢流损失量。损失的总体积对负载(和损失的)粒度分布(PSD)的影响都是重要的。 1997年,开始了一项研究计划,以使人们对加料斗挖泥船上的沉淀过程有更多的了解。该程序的目标是开发一个数值模型,该模型可以用来预测相关参数(如漏斗的几何形状,沙粒,排放量和浓度)对溢流损失的影响(以及PSD的哪一部分会损失)。该研究计划包括三个部分:实验室实验,数值模型的开发和模型的全面验证。在本文中,将介绍实验室测试的结果和已开发的1DV数值模型​​。 1DV模型是一维模型,但与垂直方向上的大多数现有模型相反:PSD分布的影响是使用耦合的运输方程组(对流扩散)对不同晶粒尺寸进行建模的。数值结果将与实验进行比较。在恒定和变化的入流情况下,预测溢流损失与加载时间之间的函数,可以达到很好的一致性。

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