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基于Infoworks WS Pro供水管网水力模型优化研究
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作者 郑诗佳 《价值工程》 2025年第34期4-6,共3页
针对早期供水管网设计标准滞后引发管道破裂事故频发、管材差异与老化问题导致水质隐患、运营费用高、检修维护效率低。为保障供水管网用水安全,文中选取东南沿海某城市供水主干管作为案例,基于InfoWorks WS Pro水力模型,对最高时、消... 针对早期供水管网设计标准滞后引发管道破裂事故频发、管材差异与老化问题导致水质隐患、运营费用高、检修维护效率低。为保障供水管网用水安全,文中选取东南沿海某城市供水主干管作为案例,基于InfoWorks WS Pro水力模型,对最高时、消防及事故三种典型工况进行模拟分析,评估确定出13条需优化的关键管段;通过经济流速管径反算法实施管网优化改造,优化后模拟结果表明,管网在经济性和运行可靠性均获得显著提升。 展开更多
关键词 供水管网 infoworks ws pro 水力模型 优化
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Evaluation of “C” Values to Head Loss and Water Pressure Due to Pipe Aging: Case Study of Uni-Central Sarawak 被引量:1
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作者 King Kuok Kuok Po Chan Chiu Danny Chee Ming Ting 《Journal of Water Resource and Protection》 2020年第12期1077-1088,共12页
Samarahan has transformed from a small village into education hub for the past 2 decades. Rapid development and population growth had led to speedy growth in water demand. The situation is getting worse as the pipes a... Samarahan has transformed from a small village into education hub for the past 2 decades. Rapid development and population growth had led to speedy growth in water demand. The situation is getting worse as the pipes are deteriorating due to pipe aging. Therefore, there is a need to study the adequacy of water supply and relationships among roughness coefficient (C) values in Hazen Williams’ Equation with head loss and water pressure due to pipe aging at Uni-Central, a residential area located at Samarahan Sarawak. Investigations were carried out with Ductile Iron, Abestos Cement and Cast Iron pipes at age categories of 0 - 10 years, 10 - 30 years, 30 - 50 years, 50 - 70 years and >70 years. Six critical nodes named as A, B, C, D, E and F were identified to study the water pressure and head loss. Model was developed with InfoWorks Water Supply (WS) Pro software. The impact of pipe aging and materials to water pressure and head loss was not significant at Nodes A, B, C and F. However, max water pressure at Nodes D and F were only reaching 6.30 m and 7.30 m, respectively for all investigations. Therefore, some improvement works are required. Results also show that Asbestos Cement pipe has the least impact on the head loss and water pressure, followed by Ductile Iron pipe and lastly Cast Iron pipe. Simulation results also revealed that older pipes have higher roughness coefficients, indicated with lower “C” values, thus increase the head loss and reduce the water pressure. In contrast, as “C” values increased, head loss will be reduced and water pressure will be increased. 展开更多
关键词 infoworks Water Supply (ws) pro Pressure Head Hazen-Williams Equation Head Loss
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