Time evolution of the scour induced by a ski jump jet

IF 1.4 Q4 WATER RESOURCES
R. Santos, E. Carvalho, M. M. C. L. Lima, R. Aleixo
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引用次数: 1

Abstract

Scour studies are often made at the equilibrium stage when the scour hole is stabilized and no more changes in the scour geometry occur. However, studying the scour time evolution is critical to better understand the erosion process and the main factors that control it in the short and long terms. Scour is a destructive process, therefore, in the absence of non-intrusive and real-time measurement techniques, an experimental analysis of time evolution of scour can be a time-consuming process as, for each considered instant, detailed measurements of the bed geometry must be taken. In this paper, two different strategies are applied to analyse the scour time evolution. Their results are compared and discussed. From the obtained experimental results, empirical relations between different variables were proposed. Further analysis provided scale relationships to adimensionalize the time evolution profiles. To measure the scour geometry, a structure from motion technique is employed.
滑跃射流冲刷的时间演化
冲刷研究通常在平衡阶段进行,此时冲刷孔稳定,冲刷几何不再发生变化。然而,研究冲刷时间的演变对于更好地了解侵蚀过程及其短期和长期的主要控制因素至关重要。冲刷是一个破坏性的过程,因此,在没有非侵入式和实时测量技术的情况下,对冲刷的时间演变进行实验分析可能是一个耗时的过程,因为必须对每个考虑的瞬间进行床层几何形状的详细测量。本文采用了两种不同的策略来分析冲刷时间的演化。并对其结果进行了比较和讨论。根据得到的实验结果,提出了不同变量之间的经验关系。进一步的分析提供了尺度关系来对时间演化剖面进行量纲化。为了测量冲刷的几何形状,采用了运动结构测量技术。
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来源期刊
CiteScore
2.90
自引率
16.70%
发文量
31
期刊介绍: JAWER’s paradigm-changing (online only) articles provide directly applicable solutions to water engineering problems within the whole hydrosphere (rivers, lakes groundwater, estuaries, coastal and marine waters) covering areas such as: integrated water resources management and catchment hydraulics hydraulic machinery and structures hydraulics applied to water supply, treatment and drainage systems (including outfalls) water quality, security and governance in an engineering context environmental monitoring maritime hydraulics ecohydraulics flood risk modelling and management water related hazards desalination and re-use.
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