幼发拉底河上两个拦河坝之间的河流形态行为:案例研究

Z. Abbass, J. Maatooq, Mustafa M. Al-Mukhtar
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引用次数: 0

摘要

Abbassia-Shammia 河是幼发拉底河下游纳杰夫省的一条蜿蜒河流。在全球范围内,尤其是在欠发达国家,很少能观察到大河的地貌特征和基于过程的评估。由于气候变化、水利工程建设以及可能发生的极端干旱和洪水,因此需要进行此类评估。由于连续安装拦河坝和气候变化,阿巴西亚-沙米亚河段的水力和形态特性发生了显著变化。本文旨在通过河床变化调查过程(即河流沉积和侵蚀),评估幼发拉底河下游靠近 Abbassia-Shammia 河段 32 公里处的河流形态行为。利用水文工程中心河流分析系统程序开发的工具 HEC RAS2D,模拟了幼发拉底河两个系列拦河坝(即阿巴西亚和沙米亚)之间河段的形态表现。研究结果显示,河床变化程度从 5.87 米的沉积到 5.720 米的侵蚀不等。此外,研究结果还展示了 HEC RAS2D 模型如何有效地准确捕捉两个拦河坝之间幼发拉底河河段的特征。研究结果为未来的河道行为提供了启示。这些结果有助于解决沉积和侵蚀等主流河道过程造成的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
River morphological behavior between two barrages on the Euphrates: A case study
The Abbassia-Shammia stream is a meandering reach in Najaf Province downstream of the Euphrates. The geomorphological traits and process-based assessment of large rivers are rarely observed globally, particularly in less developed nations. The need for such evaluation arose due to climate change, hydraulic structure construction, and the possibility of extreme droughts and floods. The hydraulic and morphological properties of the Abbassia-Shammia reach were significantly altered owing to the installation of successive barrages and climatic change. This paper aims to assess the river morphological behavior downstream of the Euphrates near the Abbassia-Shammia reach for 32 km length through the bed change investigation process, i.e. river sedimentation and erosion. The morphological performance of the Euphrates reaches between two series of barrages, namely Abbassia and Shammia, was simulated using HEC RAS2D, a tool developed by the River Analysis System program of the Hydrologic Engineering Center. The research revealed that bed change levels ranged from 5.87 meters of sedimentation to 5.720 meters of erosion. Furthermore, the results showcased how effectively the HEC RAS2D model accurately captured the features of a Euphrates section between two barrages. The results of the study provide insights into the future behavior of channels. They can help to address the issues caused by the prevailing fluvial processes such as sedimentation and erosion.
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