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首页> 外文期刊>Hydrology and Earth System Sciences >Determinants of modelling choices for 1-D free-surface flow and morphodynamics in hydrology and hydraulics: a review
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Determinants of modelling choices for 1-D free-surface flow and morphodynamics in hydrology and hydraulics: a review

机译:水文和水力学中一维自由表面流动和形态动力学建模选择的决定因素:综述

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This review paper investigates the determinants of modelling choices, for numerous applications of 1-D free-surface flow and morphodynamic equations in hydrology and hydraulics, across multiple spatiotemporal scales. We aim to characterize each case study by its signature composed of model refinement (Navier-Stokes: NS; Reynolds-averaged Navier-Stokes: RANS; Saint-Venant: SV; or approximations to Saint-Venant: ASV), spatiotemporal scales and subscales (domain length: L from 1 cm to 1000 km; temporal scale: T from 1 s to 1 year; flow depth: H from 1 mm to 10 m; spatial step for modelling: delta L; temporal step: delta T), flow typology (Overland: O; High gradient: Hg; Bedforms: B; Fluvial: F), and dimensionless numbers (dimensionless time period T*, Reynolds number Re, Froude number Fr, slope S, inundation ratio Lambda(z), Shields number theta). The determinants of modelling choices are therefore sought in the interplay between flow characteristics and cross-scale and scale-independent views. The influence of spatiotemporal scales on modelling choices is first quantified through the expected correlation between increasing scales and decreasing model refinements (though modelling objectives also show through the chosen spatial and temporal subscales). Then flow typology appears a secondary but important determinant in the choice of model refinement. This finding is confirmed by the discriminating values of several dimensionless numbers, which prove preferential associations between model refinements and flow typologies. This review is intended to help modellers in positioning their choices with respect to the most frequent practices, within a generic, normative procedure possibly enriched by the community for a larger, comprehensive and updated image of modelling strategies.
机译:这篇综述文章探讨了在多个时空尺度上一维自由面水流和形态动力学方程在水文学和水力学中的众多应用中建模选择的决定因素。我们的目标是通过模型细化(Navier-Stokes:NS; Reynolds平均Navier-Stokes:RANS; Saint-Venant:SV;或Saint-Venant的近似值:ASV),时空尺度和子尺度来表征每个案例研究(域长度:从1 cm到1000 km的L;时间尺度:从1 s到1年的T;流动深度:从1 mm到10 m的H;建模的空间步长:ΔL;时间步长:ΔT),流类型(陆上:O;高梯度:Hg;床形:B;河流:F)和无量纲数(无量纲时间段T *,雷诺数Re,弗洛德数Fr,斜率S,淹没率Lambda(z),Shields数theta)。因此,在流动特性与跨尺度和尺度无关视图之间的相互作用中寻找建模选择的决定因素。时空尺度对建模选择的影响首先通过尺度增大和模型精化减小之间的预期相关性来量化(尽管建模目标也通过所选的空间和时间子尺度显示出来)。然后,流量类型学在模型优化的选择中似乎是次要但重要的决定因素。几个无量纲数的区分值证实了这一发现,这证明了模型细化和流程类型之间的优先关联。这篇综述旨在帮助建模人员在通用的规范性程序中,针对最常见的实践来选择自己的选择,而该规范性程序可能会被社区丰富,以获取更大,更全面和更新的建模策略形象。

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