Experiment and simulation of ferrous ions diffusion at the dead-end branch pipes of water distribution system

Jinliang Gao, Shiyuan Hu*, Wenyan Wu, Yuanzhe Li, Cai Jian, Jiaxu Li, Jianwei Ding, Ming Cui, Shuhe Zou

*Corresponding author for this work

    Research output: Contribution to conferencePaperpeer-review

    Original languageEnglish
    Publication statusPublished (VoR) - 2018
    Event1st International Joint Conference in Water Distribution Systems Analysis and Computing and Control in the Water Industry, WDSA/CCWI 2018 - Kingston, Canada
    Duration: 23 Jul 201825 Jul 2018

    Conference

    Conference1st International Joint Conference in Water Distribution Systems Analysis and Computing and Control in the Water Industry, WDSA/CCWI 2018
    Country/TerritoryCanada
    CityKingston
    Period23/07/1825/07/18

    Funding

    The authors gratefully acknowledge the research funding provided by:(1)he National Key Research and Development Program of China: “Prevention and control of public safety risk and emergency technical equipment 2016YFC0802402”, (2) Research and development program of application technology of Harbin: “Research and application of leakage detection and control technology for urban water supply network 2016RAYGJ002”, (3) University and Research Institute of Harbin credit guarantee recommendation project: “Research and application of smart water platform for urban water supply network 2017FF1XJ001”, (4) National Natural Science Foundation of China: “Research on drop-restore pressure leakage mechanism and discretional leakage control of water distribution network. 51778178”, (5) H2020 new project IOT4Win (internet of thing for Water Innovate Network), (6) FP7-ICT-2011-8, WatERP (EC318603) Water Enhanced Resource Planning “Where water supply meets demand, (7) The authors acknowledge the support of the EU Horizon 2020 Research and Innovation program under MSCA-ITN-IoT4Win (765921) Internet of Things for Smart Water Innovative Networks.

    Keywords

    • Dead-end branch pipes pollution
    • Ferrous ions diffusion
    • Water quality model

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