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Evaluation of overland flow model for a hillslope using laboratory flume data

机译:利用实验室水槽数据评估坡面陆坡流模型

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Comprehensive modelling of overland flow requires models for both rill and interrill area overland flow. Evaluation of a physically based mathematical model for simulating overland flow generated on rill and interrill areas of hillslope was done using a data set gathered from a laboratory experimental setup. A rainfall simulator has been constructed together with a 6.50 m× 1.36 m erosion flume that can be given adjustable slopes in both longitudinal and lateral directions. The model was calibrated and validated using the experimental results from the setup of the flume having 5% lateral and 10% longitudinal slopes where rainfall intensities of 105 and 45 mm/hr were induced with the use of nozzles. Results show that for the given slope combination, the model was capable of simulating the flow coming from the rill and interrill areas for the two different rainfall intensities. It was found that significantly more of the flow occurred in the form of the rill flow. The model studied here can be used for the better prediction of overland flow and can also be used as a building block for an associated erosion and sediment transport model.
机译:陆上水流的全面建模需要针对钻探区域和跨岩间区域的陆上水流进行建模。使用从实验室实验装置中收集的数据集,对基于物理的数学模型进行了评估,以模拟在山坡的小溪和小溪间地区产生的陆上水流。建造了一个降雨模拟器以及一个6.50 m×1.36 m的侵蚀槽,可以在纵向和横向两个方向上设置可调的坡度。使用具有5%的横向坡度和10%的纵向坡度的水槽设置的实验结果对模型进行了校准和验证,其中使用喷嘴诱导了105和45 mm / hr的降雨强度。结果表明,对于给定的坡度组合,该模型能够模拟两种不同降雨强度下来自小溪和小溪间的水流。已经发现,明显有更多的流动以小溪流的形式发生。此处研究的模型可以用于更好地预测陆流,也可以用作相关侵蚀和泥沙输送模型的基础。

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