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Application of Fluvial-12 model for calculation of maximum deformation in cross sections of tidal rivers (the Karun River in Iran)

机译:氟尿-12模型在潮汐河横截面计算中的最大变形模型(伊朗的Karun河)

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In tidal rivers design return period is multiplication of return periods of floods and tidal flows. This research considers the down stream of the Karun River in southwest of Iran as case study. For calibration of Fluvial-12 model, the deformations of river cross sections from 1996 to 2013 were measured by surveying. Using of the Ackers – White (1973) equation eventuates the best fitness between calculated deformations by Fluvial-12 model and observed deformations. This equation is an appropriate sediment transport equation for river beds and banks that their materials are silt or fine sand such as the most of tidal rivers in the world. For design return period N years, the highest erosion occurs at flood return period N years and tidal flow return period 1 year. At cross sections near the mouth of the river the highest sedimentation occurs at flood return period 1 year and tidal flow return period N years but at cross sections far from the mouth of the river the highest sedimentation occurs at flood return period N years and tidal flow return period 1 year. Because sedimentation occurs at flood cycle of tide at near the mouth of the river, tidal flow that its velocity is low causes sedimentation. On the other hand, erosion occurs at ebb cycle of tide and fluvial flow intensifies ebb velocity toward the mouth of the river therefore fluvial flow causes erosion at the whole length of the river.
机译:在潮汐河流设计返回时期是洪水和潮汐流的升值乘法。本研究考虑了伊朗西南部的Karun河下游,为案例研究。对于氟尿-12模型的校准,通过测量测量了1996年至2013年河流横截面的变形。使用Ackers - White(1973)方程令使氟尿-12模型和观察到的变形来实现计算变形之间的最佳健康。该等式是河床和银行的适当沉积物传输方程,它们的材料是淤泥或细砂,如世界上最大的潮汐河流。对于设计返回期N年来,洪水返回期N年和潮流返回期1年的最高侵蚀发生。在河口附近的横截面,洪水返回期最高的沉降时间为1年,潮流返回期N年,但在河口的横截面上,洪水返回期间的最高沉淀时饱和返回期1年。因为沉积在河口靠近河口附近的潮汐循环,因此其速度低导致沉降的潮流。另一方面,在潮汐的潮汐循环中发生侵蚀,河流流程将EBB速度与河口的速度增强,因此河流在河流的整个长度上导致侵蚀。

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