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1.
供水管网的漏损控制管理是城市水资源管理以及节水管理中的重要环节,东京作为国际上管网漏损控制最优秀的城市之一,漏损率从1955年战后恢复时期的20%控制到2007年的3.3%。多年来,东京在漏损控制技术和管理方面积累了丰富的优秀经验,并且建立了完善的供水管网漏损预防管理体系,指出为了保证有效的漏损控制和预防,必须做到以下四个方面,即准确掌握管网属性信息、重视管网的维护和更新、不断发展漏损控制与预防技术及重视人力资源管理及人才培养。东京成功的漏损控制经验可以从管理体制、管理手段、技术研发、人才培养等方面对中国的供水管网漏损管理及节水管理提供有益的借鉴经验。  相似文献   

2.
城市供水管网漏损控制潜力研究   总被引:3,自引:0,他引:3  
在我国备城市普遍缺水的同时,城市供水管网的漏损状况却相当的严重,科学衡量漏损控制的潜力,对于控制漏损和科学地进行城市水资源规划和需求管理非常重要.从技术潜力、经济潜力、社会潜力三方面将城市供水管网漏损控制的潜力进行了分析.提出了以社会最优值作为漏损控制的目标,以社会潜力作为需求管理的依据,同时综合考虑技术潜力和经济潜力.社会最优控制水平和企业的经济漏损控制水平之间有时会存在很大差异.科学的划分政府和企业在控制漏损的义务是非常必要的,如果需要企业的漏损控制水平小于经济漏损水平时政府应该给予一定的补偿,这样才能增加企业控制管网漏损的积极性.  相似文献   

3.
李志土  赵禹  李茵 《环境工程》2023,(11):46-53+77
粤港澳大湾区的新城区及城镇居住人口密集,供水企业规模各异,管理情况参差不齐。其中,管道漏损控制领域普遍存在营运和管理方面的困难。在国家碳达峰、碳中和的大背景下,供水企业需要采取更积极的手段措施来实现碳达标和碳中和的行业目标,而漏损控制是其中的一个关键控制点。目前,大部分供水企业采取传统的管理措施和管道探漏方法。文章以澳门供水漏损管理的实际经验为基础总结出漏损管理5大具体措施,强调将漏损管理与数字化、智能化管理模式相结合,列举了互联网感知技术在测漏、管网瞬时压力管理等领域应用案列来介绍新型漏损管理方法和效果。  相似文献   

4.
薛磊  常杪 《环境科学与管理》2006,31(5):79-81,86
在我国各城市普遍缺水的同时,城市供水管网的漏损状况却相当的严重,科学衡量漏损控制的潜力,对于控制漏损和科学地进行城市水资源规划和需求管理非常重要。从技术潜力、经济潜力、社会潜力三方面将城市供水管网漏损控制的潜力进行了分析。提出了以社会最优值作为漏损控制的目标,以社会潜力作为需求管理的依据,同时综合考虑技术潜力和经济潜力。社会最优控制水平和企业的经济漏损控制水平之间有时会存在很大差异。科学的划分政府和企业在控制漏损的义务是非常必要的,如果需要企业的漏损控制水平小于经济漏损水平时政府应该给予一定的补偿,这样才能增加企业控制管网漏损的积极性。  相似文献   

5.
针对供水管网的漏损识别问题,提出了一种基于虚拟压力分区的漏损区域识别方法。通过虚拟压力分区降低漏损识别问题的维度,利用遗传算法优化真实漏损流量在管网空间中的分布,建立了各区域的漏损水量与漏损率的识别方法。该方法分为虚拟压力分区与漏损区域识别2个步骤:前者基于改进的K均值聚类算法,将管网节点划分为空间位置邻近、平均自由水头相似、拓扑结构连通的不同区域;后者以区域比例系数为决策变量,以最小化测压点处压力的模拟值与实测值差异为优化目标,实现各区域真实漏损情况识别。基于Z市L镇供水管网8号分区设计小型算例,验证了该方法对不同漏损工况识别的准确性。随后利用Z市L镇供水管网进行实际工程应用,结果表明,该方法对管网节点划分合理,管网中漏损严重区域的识别结果与实际情况相吻合,可以辅助大型供水管网的漏损检测工作。  相似文献   

6.
近些年,无负压供水设备作为新型供水模式,在城市二次供水管网中广泛使用.本研究针对无负压供水对整个管网的影响并不明确的现状,分析了无负压供水模式对管网供水安全的影响,利用管网水力学模型,提出了一种无负压供水状态下的管网水力学模拟方法,应用该方法建立了一种用以确定管网可承受安装无负压供水设备的最大节点数的方法,将此方法应用于两个算例管网,其结果表明算例管网中分别有67%、89%的节点不适合安装无负压供水设备.该方法简单实用,推荐在管网设计与规划中使用,以提高管网供水安全性.  相似文献   

7.
随着城市化建设的不断发展,城市供水范围的不断扩大,城市供水事业也在不断发展。直接反映和衡量供水企业管理水平和管理能力的重要因素之一是供水管网漏失水量,它同时也是评价城市供水行业节约用水工作的重要环节,能直接体现出城市节水工作总体水平的重要方面。合理评价城市供水行业漏失水量,研究和制定经济、合理的对策,把握规律,  相似文献   

8.
随着我国经济的迅猛发展,广大民众和各行各业对于水资源的使用和需求大幅增加,供水管网中主体结构的维护工作是管控城市供水的核心环节,也是减少水资源浪费的中要工作,并将理论结合实际,进一步加强供水管网的质量维护,推动供水行业发展和创新。  相似文献   

9.
南方某城市供水管网红水原因调查与研究   总被引:2,自引:0,他引:2  
赵乐乐  李星  杨艳玲  黄静  陈伟雄 《环境科学》2011,32(11):3235-3239
针对南方某城市供水管网经常出现红水现象,对实际供水管网进行了调查.从某城市供水管网中连续取样检测溶解氧、余氯、铁浓度、锰浓度、铁细菌和亚硝酸菌等重要水质指标,目的是探讨管网出现红水的原因.结果表明,管网出现红水地区的沉淀物主要成分为铁、锰,出厂水存在锰超标现象(Mn最大值达到0.33 mg.L-1),4个水厂出厂水拉森指数均〉1,4个水厂供水量及硫酸盐、电导率等供水水质指标存在较大的差别,管网中铁细菌及亚硝酸菌(100~103MPN.mL-1)存在水平较高.因此,出厂水本身腐蚀性是导致管网出现红水的潜在原因;其次,各水厂供水量和水质差异导致管网水在低溶解氧及低余氯条件下易发生红水现象;再者,管网中硝化作用严重,诱发微生物腐蚀供水管道.为此,针对上述原因提出控制管网红水现象的主要措施.  相似文献   

10.
微/纳米塑料具有分布广泛、粒径小、难降解、可吸附有毒物质等特性,其去除效果及对环境污染的现状尚不明晰,是当前研究热点和难点.本文从供水管网中微/纳米塑料的来源、分布规律及水质安全危害等角度,概述了全球范围内供水管网中微/纳米塑料的研究现状.结果表明,给水处理厂出厂水携带残留的微/纳米塑料颗粒进入供水管网,而塑料材质管道在水力、水质作用下(流速、机械磨损、消毒剂等)同样存在微/纳米塑料释放可能.微/纳米塑料自身的密度、电荷等固有特性影响了它在供水管网中的空间分布规律,且在饮用水输配过程中,微/纳米塑料可同有机物、微生物等物质反应,从而影响供水管网的水质安全.本文旨在提出未来的研究重点和方向,从而为进一步了解微/纳米塑料对饮用水安全的影响及如何控制其污染提供理论基础.  相似文献   

11.
Water supply is the primary element of an urban system. Due to rapid urbanization and water scarcity, maintaining a stable and safe water supply has become a challenge to many cities, whereas a large amount of water is lost from the pipes of distribution systems. Water leakage is not only a waste of water resources, but also incurs great socio-economic costs. This article presents a comprehensive review on the potential water leakage control approaches and specifically discusses the benefits of each to environmental conservation. It is concluded that water leakage could be further reduced by improving leakage detection capability through a combination of predictive modeling and monitoring instruments, optimizing pipe maintenance strategy, and developing an instant pressure regulation system. The environment could benefit from these actions because of water savings and the reduction of energy consumption as well as greenhouse gas emissions.  相似文献   

12.
The qualified finished water from water treatment plants (WTPs) may become discolored and deteriorated during transportation in drinking water distribution systems (DWDSs), which affected tap water quality seriously. This water stability problem often occurs due to pipe corrosion and the destabilization of corrosion scales. This paper provides a comprehensive review of pipe corrosion in DWDSs, including corrosion process, corrosion scale formation, influencing factors and monitoring technologies utilized in DWDSs. In terms of corrosion process, corrosion occurrence, development mechanisms, currently applied assays, and indices used to determine the corrosion possibility are summarized, as well as the chemical and bacterial influences. In terms of scale formation, explanations for the nature of corrosion and scale formation mechanisms are discussed and its typical multilayered structure is illustrated. Furthermore, the influences of water quality and microbial activity on scale transformation are comprehensively discussed. Corrosion-related bacteria at the genus level and their associated corrosion mechanism are also summarized. This review helps deepen the current understanding of pipe corrosion and scale formation in DWDSs, providing guidance for water supply utilities to ensure effective measures to maintain water quality stability and guarantee drinking water safety.  相似文献   

13.
以滇西北高原湖泊剑湖为研究区,1974—2015年间8期遥感影像为数据源,运用遥感和地理信息系统技术,研究剑湖湖泊近40年间的时空演变过程,探析剑湖湖泊的入湖污染物及其生态环境效应变化。结果表明:近40年来剑湖湖泊面积呈现先明显减少再增加后缓慢减少的变化规律,由1974年的504.47 hm~2减至2015年的451.72 hm~2;目前剑湖水体中COD含量较低,符合地表水环境质量Ⅱ类标准;TP含量满足Ⅲ类标准;TN含量仅可满足IV类标准;剑湖入湖的主要污染源是农村生活污染和农业面源污染;随着时间的演变剑湖湖泊TN、TP污染物浓度呈上升趋势,剑湖湖泊生态系统受到极大干扰。  相似文献   

14.
Asbestos cement (AC) pipes were commonly installed in the drinking water distribution systems from the mid 1920s to the late 1980s. In recent years, an increase in the number of water main breaks has occurred in the AC portions of some pipe networks, which can be partially attributed to the corrosion of the aged pipes. This study evaluated the potential role that microorganisms may have played in the degeneration and failure of AC pipes. In this study, a fresh AC pipe section was collected from the distribution network of the City of Regina, Canada and examined for microbiological activities and growth on inside surfaces of pipe sample. Black slime bacterial growths were found to be attached to inner pipe surfaces and a distinctively fibrous internal coating (patina) with iron oxides was formed over the time. The microbial populations inside the patina and the black slime were tested with BART(tm) testers. Heterotrophic aerobic bacteria (HAB) and slime forming bacteria (SLYM) dominated in both the black growths and inside the patina. Iron related bacteria, denitrification bacteria and sulfate reducing bacteria were also commonly present. Microbial challenge assays were conducted by submerging the cut segments of the AC pipe into selected bacterial cultures for a period of 10 days under both aerobic and anaerobic environments. Weight changes were determined and the surface morphology was examined for each of the assayed pipe segments. Results indicated that acid producing bacteria, SLYM and HAB could facilitate the pipe weight loss under anaerobic environments.  相似文献   

15.
The continuously deteriorating quality of source water is threatening the safety of drinking water in China. Various efforts have been made to update water treatment processes to decrease the pollution problems of drinking water, such as protection of drinking water sources, enhancement of conventional treatment processes, and development of new or advanced treatment technologies. This paper reviews a variety of protection and remediation methods for drinking water sources, development and application of drinking water treatment technologies, new technologies for special pollutants removal from groundwater, and the latest research progress on water distribution systems in China.  相似文献   

16.
1 IntroductionIndustrializationandurbanizationaretwomainaspectsofeconomicdevelopment.Chinahasbeenundergoingthesecourses.IntheprocessofChineseurbanization,theproportionofurbanpopulationintotalpopulationincreasesfrom25-81%in1988to29-92%in1997(SSB,1990;…  相似文献   

17.
供水系统水质生物稳定性与细菌生长相关分析   总被引:1,自引:0,他引:1  
以上海市某水厂实际供水系统为研究对象,从水源、水厂净水工艺到输配水管网对城市供水水质生物稳定性与微生物生长相关性进行了系统分析.结果表明,由于水源污染和常规净水工艺局限性,水厂出水水质不能保障生物稳定性,在输配管网中,BDOC、浊度、余氯、异养菌数量存在明显的相关性.控制出厂水有机物含量,保持管网免受二次污染和强化消毒可有效减少管网中微生物繁殖生长.  相似文献   

18.
Modeling of residual chlorine in water distribution system   总被引:2,自引:0,他引:2  
Water quality within water distribution system may vary with both location and time.Water quality models are used to predict the spatial and temporal variation of water quality throughout water system.A model of residual chlorine decay in water pipe has been developed, given the consumption of chlorine in reactions with chemicals in bulk water,bio-films on pipe wall, in corrosion process, and the mass transport of chlorine from bulk water to pipe wall.Analytical methods of the flow path from water sources to the observed point and the water age of every observed node were proposed .Model is used to predict the decay of residual chlorine in an actual distribution system.Good agreement between calculated and measured values was obtained.  相似文献   

19.
针对游离态蓝藻胞外聚合物(EPS)在常规水处理工艺中不易去除、残留蓝藻EPS极易进入供水管网的特性,研究了蓝藻EPS对供水管网水质变化及生物稳定性的影响.针对管道使用时限分析了不同管道内部产生附膜条件下,蓝藻EPS对供水管网中余氯、浑浊度、生物稳定性、有机组分等主要水质指标变化规律的影响.结果表明,蓝藻EPS加快了管网余氯衰减速度,导致管网水质浑浊度在12~24h后即超出生活饮用水卫生标准上限,并使管网水质生物稳定性降低,BDOC在72h内增加37.2~39.5%,AOC增加365~393%,总活菌数升高18~20倍.阐明了蓝藻水华爆发时期净水厂出厂水残留蓝藻EPS在管网余氯存在前提下,仍然能够作为微生物营养基质和代谢能量,而促进管道内细菌生长繁殖,增加微生物代谢活性,刺激微生物胞外有机组分分泌释放,导致管网水质二次污染.  相似文献   

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