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Sediment Transport Dynamic in a Meandering Fluvial System: Case Study of Chini River

机译:曲折河流系统中的沉积物传输动态:栗河河案例研究

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Sedimentation in river reduces the flood carrying capacity which lead to the increasing of inundation area in the river basin. Basic sediment transport can predict the fluvial processes in natural rivers and stream through modeling approaches. However, the sediment transport dynamic in a small meandering and low-lying fluvial system is considered scarce in Malaysia. The aim of this study was to analyze the current riverbed erosion and sedimentation scenarios along the Chini River, Pekan, Pahang. The present study revealed that silt and clay has potentially been eroded several parts of the river. Sinuosity index (1.98) indicates that Chini River is very unstable and continuous erosion process in waterways has increase the riverbank instability due to the meandering factors. The riverbed erosional and depositional process in the Chini River is a sluggish process since the lake reduces the flow velocity and causes the deposited particles into the silt and clay soil at the bed of the lake. Besides, the bed layer of the lake comprised of cohesive silt and clayey composition that tend to attach the larger grain size of sediment. The present study estimated the total sediment accumulated along the Chini River is 1.72 ton. The HEC-RAS was employed in the simulations and in general the model performed well, once all parameters were set within their effective ranges.
机译:河流中的沉降减少了洪水承载力,导致河流流域淹没区域的增加。基本沉积物运输可以通过建模方法预测天然河流和流中的河流过程。然而,在小蜿蜒和低洼河流系统中的沉积物传输动态被认为是马来西亚的稀缺。本研究的目的是分析沿着彭亨北部北部河畔河畔河床侵蚀和沉降情景。本研究表明,淤泥和粘土可能被侵蚀了几个河流。陷阱指数(1.98)表明,由于蜿蜒的因素,水道在水道中的持续侵蚀过程是非常不稳定的,连续的侵蚀过程增加了河岸不稳定。河床侵蚀性和沉积的过程在钦奇河中是一种缓慢的过程,因为湖泊减少了流速,并使沉积的颗粒在湖泊床上的淤泥和粘土土壤中。此外,湖泊的床层包括粘性淤泥和粘土组合物,倾向于附着沉积物的较大粒度。本研究估计沿着沿着河流累积的总沉积物为1.72吨。 HEC-RA在模拟中使用,并且一般模型良好,一旦所有参数都设定在其有效范围内。

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