Department of Irrigation and Hydraulics, Faculty of Engineering, Alexandria University, Alexandria, Egypt.
Sci Rep. 2024 Jun 26;14(1):14760. doi: 10.1038/s41598-024-63995-9.
The Egyptian Ministry of Water Resources and Irrigation launched in 2020 the national project to rehabilitate the canals network to rationalize the use of water resources to face the scarcity problems. The aim of study is to evaluate the impact of canal rehabilitation on the performance of irrigation water delivered laterally to Mesqa's and longitudinally to the end of canal. Qaraqoul Canal et al.-Mallah Area, Alexandria, Egypt, was modeled using Hydrologic Engineering Center's-River Analysis System (HEC-RAS) to simulate water levels in the canal before and after rehabilitation using four discharge scenarios: 1.82, 3.7, 2.2, 7.87 m/s. The calibration before rehabilitation shows that HEC-RAS simulated water levels corresponding to a discharge of 2.2 m/s were in a good agreement with the actual field measured water levels. HEC-RAS results demonstrated that rehabilitation hydraulically improved the efficiency and performance of water conveyed by the canal. On the other hand, second scenario can be considered as suitable to keep water to reach the canal downstream with minimum suitable discharge, providing the need of two emergency pumps at last two branch canals called Mesqa's. An ideal cross-section is also simulated using HEC-RAS which produced an efficient alternative with 40% less cost than the constructed alternative.
埃及水资源和灌溉部于 2020 年启动了国家项目,修复运河网络,以合理利用水资源,应对水资源短缺问题。本研究旨在评估运河修复对灌溉水横向输送到 Mesqa 和纵向输送到运河末端的性能的影响。该项目使用 Hydrologic Engineering Center 的河流分析系统(HEC-RAS)对埃及亚历山大的 Qaraqoul 运河等-Mallah 地区进行建模,使用四种流量情景(1.82、3.7、2.2 和 7.87 m/s)模拟修复前后的运河水位。修复前的校准表明,与实际现场测量的水位相比,HEC-RAS 模拟的对应 2.2 m/s 流量的水位具有良好的一致性。HEC-RAS 的结果表明,修复工程在水力方面提高了运河输送水的效率和性能。另一方面,第二种情景可以被认为是保持水到达运河下游的合适情景,需要在最后两条支流 Mesqa 的紧急泵。还使用 HEC-RAS 模拟了理想的横截面,该横截面产生了一种高效的替代方案,成本比已建替代方案低 40%。