埃塞俄比亚阿克苏姆镇配水系统的水力建模

Tesfay Bahre, Sisay Demeku
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引用次数: 1

摘要

水的间歇性分配是包括埃塞俄比亚在内的许多发展中国家水务部门面临的关键问题。因此,本研究旨在对位于埃塞俄比亚提格雷中部地区的阿克苏姆镇配水系统进行水力建模。本研究的目的是通过评估现有供水分配系统的状况来评估供水分配系统的水力性能。利用Water GEMS V8i软件对配水系统进行建模。该模型可用于识别连接处的高压和低压,并以通过管道的速度大小作为评价水力性能的依据。模拟结果表明,最大、最小压力和低速要求被破坏。必须确定在低需求和高峰需求期间系统中出现的高压。现有系统的仿真结果表明,在用电高峰时段,约38.6%的结点不满足许用压力,约34.9%的结点速度超限。根据决定系数对模型的性能指标进行检验。总的来说,阿克苏姆镇现有的配水网络系统在水力性能较好的情况下,不能满足该镇的各种需求类别。在改造后的系统中,通过在系统中增加减压阀,从根本上改善了管网运行水力参数,减少了高压对配水系统的影响。仿真结果表明,水力仿真的管径约占配水系统总管径的43.4%,需要进行升级。
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Hydraulic Modelling of Water Distribution System of Aksum Town, Ethiopia
Intermittent water distribution is the key problem of many water authorities in developing countries including Ethiopia. Hence, this research was conducted to carry out the hydraulic modeling of the Aksum town water distribution system which is located in the Central Tigray region of Ethiopia. The objectives of this research were to evaluate the hydraulic performance of the water supply distribution system by assessing the situation of the existing water supply distribution system. Water GEMS V8i software was used as a tool to model the water distribution system. The model can be used to identify the high pressure and low pressure in the junctions and the magnitude of velocity through pipes was used as a base to evaluate the hydraulic performance. Modeling results showed a violation of maximum and minimum pressure and low-velocity requirements. High pressures in the system occurred both during low demand and peak demand have to be identified. The simulation result of the existing system about 38.6% of the junctions was failed to satisfy the allowable pressure and the velocity of about 34.9% was failed out of range during the peak consumption hour. The model performance measures were checked based on the coefficient of determination. In general, it was concluded that the existing water distribution network systems of Aksum town categorized under satisfactory hydraulic performance situation and were not supply adequate water to various demand categories of the town. In the modified system, the network runs hydraulic parameters are radically improved using the Pressure Reducer Valve added in the system to reduce high-pressure impacts on water distribution system. The results of the simulation show that the hydraulic simulation about 43.4% of pipes of diameter from the total water distribution system pipe diameters needed to be upgraded.
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استخراج منحنیهای شدت-مدت-فراوانی به کمک نظریه فرکتال و ارزیابی اثر تغییر اقلیم بر آن (مطالعه موردی: بوشهر) Investigation of the effect of gabion-shaped obstacles on sedimentation Probabilistic zoning of hydraulic performance of water distribution network by applying key parameter uncertainty Evaluation of doubler plates effects on shear bearing behavior of RCS connections مقایسه عملکرد ترافیکی، مصرف سوخت، و آلایندگی تقاطع دارای چراغ و دوربرگردان در بزرگراههای شش-خطه
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