Research on Reservoir Emergency Dispatching under Sudden Water Pollution Incident——A Case Study of Hongshui River in the Upper Reaches of the Pearl River

The Pearl River is an important water source for Yunnan, Guizhou, Guangxi, Guangdong ,etc. It is extremely important to study the movement and diffusion process of water pollutants andthe countermeasures for sudden water pollution incident in this basin for water supply security.Assuming that an eme...

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Main Authors: BIAN Kaixuan, HUANG Qiang, YANG Yuanyuan, LIU Dengfeng, LIU Dong, HAN Zhiming, WAN Xin
Format: Article
Language:zho
Published: Editorial Office of Pearl River 2020-01-01
Series:Renmin Zhujiang
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Online Access:http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2020.05.009
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author BIAN Kaixuan
HUANG Qiang
YANG Yuanyuan
LIU Dengfeng
LIU Dong
HAN Zhiming
WAN Xin
author_facet BIAN Kaixuan
HUANG Qiang
YANG Yuanyuan
LIU Dengfeng
LIU Dong
HAN Zhiming
WAN Xin
author_sort BIAN Kaixuan
collection DOAJ
description The Pearl River is an important water source for Yunnan, Guizhou, Guangxi, Guangdong ,etc. It is extremely important to study the movement and diffusion process of water pollutants andthe countermeasures for sudden water pollution incident in this basin for water supply security.Assuming that an emergency event of substandard sewage discharging occurs approximately 12 kmdownstream of Longtan Reservoir (in Tian'e County, Guangxi) during the dry season, this paperformulates a reservoir emergency dispatching plan set, and simulates the movement process ofpollutants by the water quality model in the EIAW11 software package, and the concentration changeprocess of pollutants with different concentrations (taking BOD as an example)under differentdownstream sections and different river flows. The results show that the model can reasonablysimulate the movement process and impact range of pollutants, and the discharged flow of theLongtan reservoir that is required to achieve the up-to-standard pollutant concentration isobtained after analysis. The accurate dispatching for sudden water pollution incidents can berealized according to different up-to-standard positions, to minimize the consumption of waterresources and give full play to the role of Longtan reservoir. The simulation results couldprovide some scientific basis for the formulation of emergency plans for sudden water pollutionincidents in the Pearl River Basin.
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id doaj-art-3ce8791f6d9b45f0a36a2bac44202a62
institution Kabale University
issn 1001-9235
language zho
publishDate 2020-01-01
publisher Editorial Office of Pearl River
record_format Article
series Renmin Zhujiang
spelling doaj-art-3ce8791f6d9b45f0a36a2bac44202a622025-01-15T02:31:27ZzhoEditorial Office of Pearl RiverRenmin Zhujiang1001-92352020-01-014147652032Research on Reservoir Emergency Dispatching under Sudden Water Pollution Incident——A Case Study of Hongshui River in the Upper Reaches of the Pearl RiverBIAN KaixuanHUANG QiangYANG YuanyuanLIU DengfengLIU DongHAN ZhimingWAN XinThe Pearl River is an important water source for Yunnan, Guizhou, Guangxi, Guangdong ,etc. It is extremely important to study the movement and diffusion process of water pollutants andthe countermeasures for sudden water pollution incident in this basin for water supply security.Assuming that an emergency event of substandard sewage discharging occurs approximately 12 kmdownstream of Longtan Reservoir (in Tian'e County, Guangxi) during the dry season, this paperformulates a reservoir emergency dispatching plan set, and simulates the movement process ofpollutants by the water quality model in the EIAW11 software package, and the concentration changeprocess of pollutants with different concentrations (taking BOD as an example)under differentdownstream sections and different river flows. The results show that the model can reasonablysimulate the movement process and impact range of pollutants, and the discharged flow of theLongtan reservoir that is required to achieve the up-to-standard pollutant concentration isobtained after analysis. The accurate dispatching for sudden water pollution incidents can berealized according to different up-to-standard positions, to minimize the consumption of waterresources and give full play to the role of Longtan reservoir. The simulation results couldprovide some scientific basis for the formulation of emergency plans for sudden water pollutionincidents in the Pearl River Basin.http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2020.05.009EIAW11 modelsudden water pollution incidentreservoir dispatchingLongtan reservoirPearl River Basin
spellingShingle BIAN Kaixuan
HUANG Qiang
YANG Yuanyuan
LIU Dengfeng
LIU Dong
HAN Zhiming
WAN Xin
Research on Reservoir Emergency Dispatching under Sudden Water Pollution Incident——A Case Study of Hongshui River in the Upper Reaches of the Pearl River
Renmin Zhujiang
EIAW11 model
sudden water pollution incident
reservoir dispatching
Longtan reservoir
Pearl River Basin
title Research on Reservoir Emergency Dispatching under Sudden Water Pollution Incident——A Case Study of Hongshui River in the Upper Reaches of the Pearl River
title_full Research on Reservoir Emergency Dispatching under Sudden Water Pollution Incident——A Case Study of Hongshui River in the Upper Reaches of the Pearl River
title_fullStr Research on Reservoir Emergency Dispatching under Sudden Water Pollution Incident——A Case Study of Hongshui River in the Upper Reaches of the Pearl River
title_full_unstemmed Research on Reservoir Emergency Dispatching under Sudden Water Pollution Incident——A Case Study of Hongshui River in the Upper Reaches of the Pearl River
title_short Research on Reservoir Emergency Dispatching under Sudden Water Pollution Incident——A Case Study of Hongshui River in the Upper Reaches of the Pearl River
title_sort research on reservoir emergency dispatching under sudden water pollution incident a case study of hongshui river in the upper reaches of the pearl river
topic EIAW11 model
sudden water pollution incident
reservoir dispatching
Longtan reservoir
Pearl River Basin
url http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2020.05.009
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