首页> 外文期刊>Journal of Water Resources and Ocean Science >Water Velocity, Vorticity and Bed Deviation Modeling for a Reach from Damietta Branch Using K-ε Turbulence Model Solved by Cubic Interpolated Pseudo (CIP) Method
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Water Velocity, Vorticity and Bed Deviation Modeling for a Reach from Damietta Branch Using K-ε Turbulence Model Solved by Cubic Interpolated Pseudo (CIP) Method

机译:三次插值伪(CIP)方法求解的K-ε湍流模型为达米埃塔支流的水流,涡度和床层偏差建模

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A multi-meander reach with length of 20 km located between km 130.0 and km 150.0 downstream of Delta barrages - Damietta branch was selected and numerically studied. This study aimed to simulate and study numerically the water velocity, vorticity and bed deviation of the curved zones for the reach under study and illustrating the relationship between them. Consequently, the vulnerable zones subjected to maximum velocities were accurately determined. Field data were collected and analyzed for the modeling process. A 3-D model called iRIC (International River Interface Corporative) based on an explicit finite difference method (Abbott-Ionescu scheme) was applied. Therefore, in order to fulfill such objective, standard K-ε turbulence model was employed using Cubic Interpolated Pseudo (CIP) method for solving the advection terms. For illustrating obviously the variation of water velocity with vorticity and deviation of bed elevation, two important zones consisted of several meanders were selected, the first zone located from km: 132.00 to km: 137.33 while the second located between km: 137.33 and km: 142.67. Through the modeling process, it was assumed that the sediment particles move in the bed layer zone only. From this study, it was found that for both selected zones, the velocity value was ranged between 0.13 m/sec and 0.24 m/sec, and it could be considered as a small range to make scouring process. It was observed also, that there was a noticeable relationship between water velocity, vorticity and deviation of bed elevation.
机译:选择了三角洲拦河坝下游Damietta分支下游130.0公里和150.0公里之间,长度为20 km的多弯道河段并进行了数值研究。这项研究旨在模拟和数字化研究所研究范围的弯曲区域的水流速度,涡度和河床偏差,并说明它们之间的关系。因此,可以准确确定承受最大速度的脆弱区域。收集现场数据并进行建模过程分析。应用了基于显式有限差分法(Abbott-Ionescu方案)的称为iRIC(国际河流接口公司)的3-D模型。因此,为了实现该目的,采用三次插值伪(CIP)方法使用标准的K-ε湍流模型求解平流项。为了清楚地说明水流随涡度和床高偏差的变化,选择了两个由几个曲折组成的重要区域,第一个区域位于km:132.00至km:137.33之间,第二个区域位于km:137.33和km:142.67之间。通过建模过程,假设沉积物颗粒仅在床层区域中移动。从这项研究中发现,对于两个选定的区域,速度值的范围都在0.13 m / sec和0.24 m / sec之间,可以将其视为进行精练过程的较小范围。还观察到,水速,涡度和河床高度偏差之间存在明显的关系。

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