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Apparent roughness coefficient in overbank flows

机译:过银流动的明显粗糙度系数

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Overbank flows occur in alluvial valleys during flood events when the conveyance of main channel of rivers is exceeded. Once floodplains are inundated and the so-called compound channel flow is observed, the faster flow in the main channel interacts with the slower flow in the floodplain featuring a much more pronounced 3D flow structure compared to single channel flow. These flow mechanisms comprise a shear layer near the interface, lateral momentum transfer and strong secondary currents due to the non-isotropic turbulence. This paper starts by giving an overview of the main flow mechanisms in compound channels pointing out the importance of taking into account the apparent shear stress generated between the main channel and the floodplain flows due to the interaction of these flows. A new simple model was developed to include the apparent shear stress concept as a correction of the Manning roughness coefficient of main channel and floodplains. The proposed method for predicting stage–discharge relationships was calibrated and validated by experimental data from several compound channel facilities. A significant improvement in prediction of the compound channel conveyance in comparison with the traditional methods was achieved.
机译:在洪水事件中超出河流的传送时,在洪水事件中发生过袋流量。一旦洪水平坦被淹没并且所谓的复合通道流程,主通道中的更快流量与泛洪平的流量相互作用,与单通道流相比具有更明显的3D流结构。由于非各向同性湍流,这些流动机构包括接近界面,横向动量传递和强的二次电流附近的剪切层。本文首先概述复合通道中的主流机制概述,指出由于这些流动的相互作用而考虑到主通道和洪泛区之间产生的表观剪切应力。开发了一种新的简单模型,包括表观剪切应力概念,作为主要通道和洪泛平坦的曼宁粗糙度系数的校正。通过来自几种复合信道设施的实验数据校准并验证了预测阶段放电关系的所提出的方法。实现了与传统方法相比,化合物通道传送预测的显着改善。

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