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Evaluation of a Simple Hydraulic Resistance Model Using Flow Measurements Collected in Vegetated Waterways

机译:利用植被水道中收集的流量测量值评估简单的水力阻力模型

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A simple idealized model to describe the hydraulic resistance caused by vegetation is compared to results from flow experiments conducted in natural waterways. Two field case studies are considered: fixed-point flow measurements in a Green River (case 1) and vessel-borne flow measurements along a cross-section with floodplains in the river Rhine (case 2). Analysis of the two cases shows that the simple flow model is consistent with measured flow velocities and the present vegetation characteristics, and may be used to predict a realistic Manning resistance coefficient. From flow measurements in the river floodplain (case 2) an estimate was made of the equivalent height of the drag dominated vegetation layer, as based on measured flow characteristics. The resulting height corresponds well with the observed height of vegetation in the floodplain. The expected depth-dependency of the associated Manning resistance coefficient for could not be detected due to lack of data for relatively shallow flows. Furthermore, it was shown that topographical variations in the floodplain may have an important impact on the flow field, which should not be mistaken as roughness effects.
机译:将描述植被引起的水力阻力的简单理想模型与在自然水道中进行的流量实验的结果进行了比较。考虑了两个现场案例研究:绿河中的定点流量测量(案例1)和莱茵河中的洪泛区断面的船载流量测量(案例2)。对这两种情况的分析表明,简单的水流模型与测得的水流速度和当前的植被特征一致,可用于预测现实的曼宁阻力系数。根据河流漫滩中的流量测量(案例2),基于测得的流量特性,对以阻力为主的植被层的等效高度进行了估算。所得的高度与洪泛区中观测到的植被高度高度一致。由于缺少相对较浅流的数据,因此无法检测到与之相关的曼宁阻力系数的预期深度依赖性。此外,研究表明,洪泛区的地形变化可能对流场产生重要影响,不应将其视为粗糙度影响。

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