Diagnose Urban Drainage Network Problem Based on Internet of Things and Big Data

Urban drainage pipe network is an important foundation project in urban construction. It has a vital impact on urban waterlogging prevention and water pollution. However, in the current practice, there are many hidden problems in the pipe network, and it is difficult to check the pipe network proble...

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Main Authors: Miao Xiaobo, Lv Mou, Liang Fengchao, Jiao Chunjiao, Wang Luohua
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201824602024
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spelling doaj-11e51db5c4f04a10a1897373a0fd02b92021-03-02T11:06:56ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012460202410.1051/matecconf/201824602024matecconf_iswso2018_02024Diagnose Urban Drainage Network Problem Based on Internet of Things and Big DataMiao Xiaobo0Lv Mou1Liang Fengchao2Jiao Chunjiao3Wang Luohua4School of Environment and Municipal Engineering, Qingdao University of TechnologySchool of Environment and Municipal Engineering, Qingdao University of TechnologySchool of Environment and Municipal Engineering, Qingdao University of TechnologySchool of Environment and Municipal Engineering, Qingdao University of TechnologySchool of Environment and Municipal Engineering, Qingdao University of TechnologyUrban drainage pipe network is an important foundation project in urban construction. It has a vital impact on urban waterlogging prevention and water pollution. However, in the current practice, there are many hidden problems in the pipe network, and it is difficult to check the pipe network problem, which restricts the understanding of the drainage system problem to a certain extent. In order to solve the two technical problems of drainage network survey and data statistics, the monitoring technology based on Internet of things and big data is adopted in this study. Taking the sponge city pilot area of a coastal city in China as the research area, the monitoring scheme was established and the monitoring data were obtained. Based on more than 6 million monitoring data, the automatic analysis algorithm is applied to analyse the problems of mixed connection of rain and sewage and tidal backwater in the pipeline network. The results show that there are a total of 17 outlets in 160 outlets with problems of rain and sewage mixing. Among them, there are four outlets with regular domestic sewage entering the rainwater pipe network, 7 outlets with irregular sewage entering the rainwater pipe network, and 6 outlets where sewage is smuggled into the rainwater pipe network. In addition, there is a sea tidal backwater phenomenon at one of the coastal rainwater outfalls.https://doi.org/10.1051/matecconf/201824602024
collection DOAJ
language English
format Article
sources DOAJ
author Miao Xiaobo
Lv Mou
Liang Fengchao
Jiao Chunjiao
Wang Luohua
spellingShingle Miao Xiaobo
Lv Mou
Liang Fengchao
Jiao Chunjiao
Wang Luohua
Diagnose Urban Drainage Network Problem Based on Internet of Things and Big Data
MATEC Web of Conferences
author_facet Miao Xiaobo
Lv Mou
Liang Fengchao
Jiao Chunjiao
Wang Luohua
author_sort Miao Xiaobo
title Diagnose Urban Drainage Network Problem Based on Internet of Things and Big Data
title_short Diagnose Urban Drainage Network Problem Based on Internet of Things and Big Data
title_full Diagnose Urban Drainage Network Problem Based on Internet of Things and Big Data
title_fullStr Diagnose Urban Drainage Network Problem Based on Internet of Things and Big Data
title_full_unstemmed Diagnose Urban Drainage Network Problem Based on Internet of Things and Big Data
title_sort diagnose urban drainage network problem based on internet of things and big data
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Urban drainage pipe network is an important foundation project in urban construction. It has a vital impact on urban waterlogging prevention and water pollution. However, in the current practice, there are many hidden problems in the pipe network, and it is difficult to check the pipe network problem, which restricts the understanding of the drainage system problem to a certain extent. In order to solve the two technical problems of drainage network survey and data statistics, the monitoring technology based on Internet of things and big data is adopted in this study. Taking the sponge city pilot area of a coastal city in China as the research area, the monitoring scheme was established and the monitoring data were obtained. Based on more than 6 million monitoring data, the automatic analysis algorithm is applied to analyse the problems of mixed connection of rain and sewage and tidal backwater in the pipeline network. The results show that there are a total of 17 outlets in 160 outlets with problems of rain and sewage mixing. Among them, there are four outlets with regular domestic sewage entering the rainwater pipe network, 7 outlets with irregular sewage entering the rainwater pipe network, and 6 outlets where sewage is smuggled into the rainwater pipe network. In addition, there is a sea tidal backwater phenomenon at one of the coastal rainwater outfalls.
url https://doi.org/10.1051/matecconf/201824602024
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AT liangfengchao diagnoseurbandrainagenetworkproblembasedoninternetofthingsandbigdata
AT jiaochunjiao diagnoseurbandrainagenetworkproblembasedoninternetofthingsandbigdata
AT wangluohua diagnoseurbandrainagenetworkproblembasedoninternetofthingsandbigdata
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