MODELING OF TURBIDITY DISTRIBUTION IN WATER NETWORKS USING PMS MODEL - AL-SARAY SECTOR IN KUFA CITY AS A CASE STUDY

Zahraa H. Abed, Kifah Khudair
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Abstract

The Water industry faces a significant problem in reducing water turbidity. The introduction and enhancement of proactive operation and maintenance techniques to reduce turbidity can be facilitated by the capacity to predict the geographical probability and severity of turbidity in distribution systems. In this study, the Particle Sediment Model (PSM) is used to simulate turbidity in a water distribution system. This study sought to ascertain how water treatment facilities impact the turbidity of tap Water. The Al-Saray water distribution network in Kufa city /Najaf Governorate is covered by the work The impact of water turbidity on the network revealed that the source of the particles entering the network is the treatment facility. The highest turbidity values in the system were recorded at 9.67, 16.68, 13.38, 11.30, 9.82, and 5.27 NTU when the source sediment quality (effluent turbidity from WTP) met the standard specifications of (5) NTU, while the highest values were noted when the source sediment quality (26.6) NTU was at 51.35, 101.02, 77.64, 62.94, 52.46, and 20.22 NTU. Failure to carry out continuous cleaning of the network and poor water treatment from drinking water treatment plants are among the most important reasons for the rise in turbidity in drinking water.
基于PMS模型的水网浊度分布建模——以库法市al-saray区为例
水工业面临着降低水浊度的重大问题。通过预测配电系统中浑浊的地理概率和严重程度的能力,可以促进引入和加强主动操作和维护技术以减少浑浊。本文采用颗粒泥沙模型(PSM)对配水系统浊度进行模拟。本研究旨在确定水处理设施如何影响自来水的浑浊度。库法市/纳杰夫省的Al-Saray配水网络被工作覆盖。水浑浊度对网络的影响揭示了进入网络的颗粒的来源是处理设施。当源底质(WTP出水浊度)满足(5)NTU标准值时,系统浊度值最高为9.67、16.68、13.38、11.30、9.82和5.27 NTU,当源底质(26.6)NTU为51.35、101.02、77.64、62.94、52.46和20.22 NTU时,系统浊度值最高。未能对管网进行连续清洗以及饮用水处理厂的水处理不良是导致饮用水浑浊度上升的最重要原因之一。
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