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Application of a 3D layer integrated numerical model of flow and sediment transport processes to a reservoir

机译:水流和泥沙输送过程的3D层综合数值模型在油藏中的应用

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摘要

Details are given in the paper of the refinement of a three-dimensional layer integrated turbulence model and its application to a scaled physical model of a reservoir, named Hamidieh Reservoir, in Iran. The strong turbulent flows generated in this reservoir are due to the high volumes of flow diversion, with low head differences. In this paper, a refined numerical model is applied to a reservoir, associated with a dam, water intakes and sluice gates, with the aim being to investigate the flow patterns and sediment transport processes in the vicinity of such hydraulic structures. The calibration of the model is undertaken using measurements made from a scaled physical model. The numerical model is able to predict the conditions for a range of scenarios that are difficult to test in the physical model. Different scenarios are introduced to investigate the effects of various intake and sluice gate configurations, as well as their operation schemes on the flow and sediment transport processes into Hamidieh Reservoir. The results indicate that the flow velocity field in the vicinity of one of the intakes varies significantly. Moreover, the sluice gates do not appear to have any considerable effect on the suspended sediment concentrations moving through the intakes.
机译:论文详细介绍了三维层综合湍流模型的改进及其在伊朗Hamidieh水库的规模化物理模型中的应用。在该储层中产生的强湍流是由于分流量大,扬程差小所致。在本文中,将改进的数值模型应用于与水坝,取水口和水闸相关的水库,目的是研究此类水工建筑物附近的水流模式和泥沙输送过程。使用从按比例缩放的物理模型进行的测量来进行模型的校准。数值模型能够预测在物理模型中难以测试的一系列场景的条件。引入了不同的场景来研究各种进水闸和闸门配置的影响,以及它们的运行方案对进入Hamidieh水库的水流和泥沙输送过程的影响。结果表明,进气口之一附近的流速场变化很大。此外,水闸似乎对通过进水口的悬浮沉积物浓度没有任何显着影响。

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