Flow resistance at lowland and mountainous rivers

IF 2.3 4区 环境科学与生态学 Q3 WATER RESOURCES
Saeid Okhravi, Mahdi Alemi, Hossein Afzalimehr, Radoslav Schügerl, Yvetta Velísková
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引用次数: 0

Abstract

Abstract This study initially examines the various sources of flow resistance in sand-bed (lowland) and gravel-bed (mountainous) rivers along with the limitations of traditional estimation methods. The nondimensional hydraulic geometry approach, relating dimensionless flow discharge ( q * ) to the Darcy-Weisbach friction factor ( f ), has demonstrated good performance for both river types, covering shallow to moderately deep flows. However, accuracy in estimating f is affected by simplifications like assuming uniform and deep flow, neglecting bed load transport and vegetation effects, which require further evaluation. To address these issues, the proposed method is evaluated using data from four sand-bed rivers in Slovakia (with vegetation), and three gravel-bed rivers in Iran (dominated by cobbles and boulders). Bedforms prove to be significant resistance sources in all studied rivers. The approach yields separate predictors for each river type, showing a satisfactory agreement between observed and calculated values within a maximum deviation of ±20% error bands. These predictors are further validated using field data and established equations from rivers with similar physiographic characteristics. Results indicate the method performs well in predicting flow resistance in sand-bed rivers, slightly overestimating overall (+40%). It effectively captures riverbed features and vegetation influence under small-scale roughness conditions. However, the predictor’s validity for gravel-bed rivers is somewhat limited due to high variability in water-surface profiles, making it challenging to accurately capture flow dynamics under large-scale roughness conditions. Addressing complex characteristics of gravel-bed riverbeds, including boulders and local energy extraction, is crucial for improving the estimation of water-surface profile variations and flow resistance using the hydraulic geometry approach.
低地和山区河流的水流阻力
本研究初步探讨了沙床(低地)和砾石床(山地)河流的各种流阻来源,以及传统估算方法的局限性。无量纲水力几何方法将无量纲流量(q *)与Darcy-Weisbach摩擦系数(f)联系起来,证明了两种河流类型的良好性能,涵盖了浅至中深的河流。但是,f的估计精度受到假设均匀深流、忽略河床输运和植被效应等简化方法的影响,需要进一步评价。为了解决这些问题,使用斯洛伐克四条沙床河流(有植被)和伊朗三条砾石床河流(以鹅卵石和巨石为主)的数据对所提出的方法进行了评估。在所有研究的河流中,河床被证明是重要的阻力来源。该方法为每种河流类型提供了单独的预测器,在±20%的误差范围内,观测值与计算值之间的一致性令人满意。利用野外数据和具有相似地理特征的河流建立的方程进一步验证了这些预测结果。结果表明,该方法在预测沙河床流阻方面具有较好的效果,总体上略高估(+40%)。它有效地捕捉了河床特征和植被在小尺度粗糙度条件下的影响。然而,由于水面剖面的高度变异性,预测器对砾石河床的有效性受到一定限制,这使得在大规模粗糙条件下准确捕获流动动力学具有挑战性。解决砾石河床的复杂特征,包括巨石和局部能量提取,对于使用水力几何方法改进水面剖面变化和流动阻力的估计至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.20
自引率
5.30%
发文量
30
审稿时长
>12 weeks
期刊介绍: JOURNAL OF HYDROLOGY AND HYDROMECHANICS is an international open access journal for the basic disciplines of water sciences. The scope of hydrology is limited to biohydrology, catchment hydrology and vadose zone hydrology, primarily of temperate zone. The hydromechanics covers theoretical, experimental and computational hydraulics and fluid mechanics in various fields, two- and multiphase flows, including non-Newtonian flow, and new frontiers in hydraulics. The journal is published quarterly in English. The types of contribution include: research and review articles, short communications and technical notes. The articles have been thoroughly peer reviewed by international specialists and promoted to researchers working in the same field.
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