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首页> 外文期刊>Journal of hydro-environment research >Analytical modelling of sidewall turbulence effect on streamwise velocity profile using 2D approach: A comparison of rectangular and trapezoidal open channel flows
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Analytical modelling of sidewall turbulence effect on streamwise velocity profile using 2D approach: A comparison of rectangular and trapezoidal open channel flows

机译:使用2D方法对侧壁湍流效应对流速度曲线的分析模型:矩形和梯形开放通道流的比较

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摘要

Natural earth-bounded channel flows usually subject to various sidewall turbulences, i.e. in the form of secondary currents, due to non-constant channel shapes at different sections. This paper investigates an improved Shiono-Knight model (SKM) by combining it with a Multi-Zonal (MZ) method (proposed by Pu, 2019) to represent lateral flow turbulence and secondary currents in different shapes of open channel, i.e. rectangular and trapezoidal. By applying the proposed analytical model to both rectangular and trapezoidal channel flows, we have inspected different streamwise velocity characteristics across transverse direction generated by their sidewalls in order to provide crucial fundamental understanding to real-world natural flow system. The proposed model has also been validated via various experimental data conducted in national UK Flood Channel Facility (UK-FCF). It has been observed that the trapezoidal channel has created a larger sidewall zone where secondary current can affect flow velocity; however, the intensity of the secondary flow in trapezoidal channel has been found lesser than that of the rectangular channel. By improving the modelling of natural flow at sidewall, the studied approach could be adapted into different existing analytical models to improve their accuracy.
机译:由于不同截面的非恒定通道形状,天然地球界沟道流量通常受到各种侧壁湍流,即次电流的形式。本文通过将其与多地区(MZ)方法(PU,2019提出)组合来调查改进的Shiono-Knight模型(SKM),以表示横向流动湍流和开放通道不同形状的次电流,即矩形和梯形。通过将提议的分析模型应用于矩形和梯形通道流动,我们已经检查了由其侧壁产生的横向的不同的流动速度特征,以便为真实世界的自然流动系统提供至关重要的基础知识。拟议的模型也通过国家英国洪水渠道设施(UK-FCF)中的各种实验数据进行了验证。已经观察到梯形通道形成了更大的侧壁区域,其中次级电流会影响流速;然而,梯形通道中的二次流动的强度已经发现比矩形通道的强度小。通过改善侧壁的自然流动建模,研究方法可以调整为不同现有的分析模型,以提高其准确性。

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