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Characterising natural bedform morphology and its influence on flow

机译:表征自然床形及其对流量的影响

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摘要

Bedforms such as dunes and ripples are ubiquitous in rivers and coastal seas, and commonly described as triangular shapes from which height and length are calculated to estimate hydrodynamic and sediment dynamic parameters. Natural bedforms, however, present a far more complicated morphology; the difference between natural bedform shape and the often assumed triangular shape is usually neglected, and how this may affect the flow is unknown. This study investigates the shapes of natural bedforms and how they influence flow and shear stress, based on four datasets extracted from earlier studies on two rivers (the Rio Parana in Argentina, and the Lower Rhine in The Netherlands). The most commonly occurring morphological elements are a sinusoidal stoss side made of one segment and a lee side made of two segments, a gently sloping upper lee side and a relatively steep (6 to 21A degrees) slip face. A non-hydrostatic numerical model, set up using Delft3D, served to simulate the flow over fixed bedforms with various morphologies derived from the identified morphological elements. Both shear stress and turbulence increase with increasing slip face angle and are only marginally affected by the dimensions and positions of the upper and lower lee side. The average slip face angle determined from the bed profiles is 14A degrees, over which there is no permanent flow separation. Shear stress and turbulence above natural bedforms are higher than above a flat bed but much lower than over the often assumed 30A degrees lee side angle.
机译:沙丘和涟漪之类的床形在河流和沿海海域中无处不在,通常被描述为三角形,从中可以计算出其高度和长度以估算水动力和沉积物动力学参数。但是,天然床形的形态要复杂得多。通常忽略了自然床形和通常采用的三角形之间的差异,并且这种差异如何影响流动尚不清楚。这项研究基于对两条河流(阿根廷的里奥帕拉纳河和荷兰的下莱茵河)早期研究的四个数据集,研究了自然床形的形状以及它们如何影响流量和切应力。最常见的形态要素是由一个段构成的正弦形索托面和由两个段构成的背风面,上坡面略微倾斜以及相对较陡(6至21A度)的滑面。使用Delft3D建立的非静液压数值模型,用于模拟固定床基体上的流动,该固定床体具有从所识别的形态学元素衍生而来的各种形态。剪切应力和湍流都随着滑动面角的增加而增加,并且仅受上和下背风侧的尺寸和位置的影响很小。由床的轮廓确定的平均滑移面角度为14A度,在该角度上没有永久的流动分离。天然床身上方的剪应力和湍流高于平床上方,但比通常假定的30A度背风侧角低得多。

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