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Seasonal changes in hydraulic flow conditions in overgrown lowland river

机译:杂草丛生的低地河流水力流动条件的季节性变化

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The paper presents the results of numerical research on the impact of seasonal changes in vegetation on the hydraulic conditions prevailing in the bed of overgrowing lowland river on the example of ?l?za River (Poland). Hydrological characterization of the analyzed section of the river was made on the basis of data from the years 2006–2017 from the ?l?za water gauge. Based on them, the growing season and characteristic flows for modelling were determined. A two-dimensional hydrodynamic model (2HD) was built in two scenarios corresponding to the beginning and the end of the vegetation period for an about 50 m long section of the river. The bathymetric data of the bed and the plant distribution were measured in the field for both scenarios. The models were calibrated using a coefficient of roughness based on the velocities and surface elevations measured directly in the field. Various characteristic flows were then tested on calibrated and verified models for both scenarios. Changes in hydraulic conditions in both scenarios were compared by means of velocities and shear stress occurring in the riverbed. The obtained results indicate a significant impact of plants on the hydraulic conditions in the riverbed. The existence of plants causes the accumulation of backwater and change of local velocity distributions while maintaining medium and maximum velocities in the riverbed.
机译:本文以“ lzaza河(波兰)”为例,介绍了季节性植被变化对过度生长的低地河床中普遍存在的水力条件的影响的数值研究结果。河流分析段的水文特征是基于?za水位计2006-2017年的数据得出的。基于它们,确定了生长季节和用于建模的特征流。在两个场景中建立了二维水动力模型(2HD),分别对应于这条长约50 m的河段的植被期的开始和结束。在这两种情况下,均在现场测量了床的测深数据和植物分布。使用基于现场直接测量的速度和表面高程的粗糙度系数对模型进行校准。然后,针对这两种情况,在经过校准和验证的模型上测试了各种特征流。通过在河床中发生的速度和切应力比较了两种情况下的水力条件变化。获得的结果表明植物对河床水力条件的重大影响。植物的存在导致回水的积累和局部速度分布的变化,同时保持河床中速和最大速度。

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