Joint Operation of Surface Water and Groundwater Reservoirs to Address Water Conflicts in Arid Regions: An Integrated Modeling Study

At the basin scale, the operation of surface water reservoirs rarely takes groundwater aquifers into consideration, which can also be regarded as reservoirs underground. This study investigates the impact of reservoir operation on the water cycle and evaluates the effect of the joint operation of su...

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Main Authors: Yong Tian, Jianzhi Xiong, Xin He, Xuehui Pi, Shijie Jiang, Feng Han, Yi Zheng
Format: Article
Language:English
Published: MDPI AG 2018-08-01
Series:Water
Subjects:
Online Access:http://www.mdpi.com/2073-4441/10/8/1105
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spelling doaj-d6a8bef96fef4d62bbc0a2b0f38b4f542020-11-24T22:18:43ZengMDPI AGWater2073-44412018-08-01108110510.3390/w10081105w10081105Joint Operation of Surface Water and Groundwater Reservoirs to Address Water Conflicts in Arid Regions: An Integrated Modeling StudyYong Tian0Jianzhi Xiong1Xin He2Xuehui Pi3Shijie Jiang4Feng Han5Yi Zheng6School of Environmental Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, ChinaSchool of Environmental Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, ChinaSchool of Environmental Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, ChinaSchool of Environmental Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, ChinaSchool of Environmental Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, ChinaSchool of Environmental Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, ChinaSchool of Environmental Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, ChinaAt the basin scale, the operation of surface water reservoirs rarely takes groundwater aquifers into consideration, which can also be regarded as reservoirs underground. This study investigates the impact of reservoir operation on the water cycle and evaluates the effect of the joint operation of surface water and groundwater reservoirs on the water conflict in arid regions through an integrated modeling approach. The Heihe River Basin (HRB) in northwestern China is selected as the study area. Our results show that the ecological operational strategies of a reservoir under construction in the upper HRB have a direct impact on the agricultural water uses and consequently affect other hydrological processes. The ecological operation strategy with a smaller water release and a longer duration is beneficial to securing the environmental flow towards the downstream area and to replenishing aquifers. With the joint operation of surface water and groundwater reservoirs, a balance among the agriculture water need, the groundwater sustainability in the Middle HRB and the ecological water need in the Lower HRB can be flexibly achieved. However, the joint operation can hardly improve the three aspects simultaneously. To resolve the water conflict in HRB, additional engineering and/or policy measures are desired.http://www.mdpi.com/2073-4441/10/8/1105reservoir operationintegrated surface water-groundwater modelHeihe River Basinenvironmental flowirrigation
collection DOAJ
language English
format Article
sources DOAJ
author Yong Tian
Jianzhi Xiong
Xin He
Xuehui Pi
Shijie Jiang
Feng Han
Yi Zheng
spellingShingle Yong Tian
Jianzhi Xiong
Xin He
Xuehui Pi
Shijie Jiang
Feng Han
Yi Zheng
Joint Operation of Surface Water and Groundwater Reservoirs to Address Water Conflicts in Arid Regions: An Integrated Modeling Study
Water
reservoir operation
integrated surface water-groundwater model
Heihe River Basin
environmental flow
irrigation
author_facet Yong Tian
Jianzhi Xiong
Xin He
Xuehui Pi
Shijie Jiang
Feng Han
Yi Zheng
author_sort Yong Tian
title Joint Operation of Surface Water and Groundwater Reservoirs to Address Water Conflicts in Arid Regions: An Integrated Modeling Study
title_short Joint Operation of Surface Water and Groundwater Reservoirs to Address Water Conflicts in Arid Regions: An Integrated Modeling Study
title_full Joint Operation of Surface Water and Groundwater Reservoirs to Address Water Conflicts in Arid Regions: An Integrated Modeling Study
title_fullStr Joint Operation of Surface Water and Groundwater Reservoirs to Address Water Conflicts in Arid Regions: An Integrated Modeling Study
title_full_unstemmed Joint Operation of Surface Water and Groundwater Reservoirs to Address Water Conflicts in Arid Regions: An Integrated Modeling Study
title_sort joint operation of surface water and groundwater reservoirs to address water conflicts in arid regions: an integrated modeling study
publisher MDPI AG
series Water
issn 2073-4441
publishDate 2018-08-01
description At the basin scale, the operation of surface water reservoirs rarely takes groundwater aquifers into consideration, which can also be regarded as reservoirs underground. This study investigates the impact of reservoir operation on the water cycle and evaluates the effect of the joint operation of surface water and groundwater reservoirs on the water conflict in arid regions through an integrated modeling approach. The Heihe River Basin (HRB) in northwestern China is selected as the study area. Our results show that the ecological operational strategies of a reservoir under construction in the upper HRB have a direct impact on the agricultural water uses and consequently affect other hydrological processes. The ecological operation strategy with a smaller water release and a longer duration is beneficial to securing the environmental flow towards the downstream area and to replenishing aquifers. With the joint operation of surface water and groundwater reservoirs, a balance among the agriculture water need, the groundwater sustainability in the Middle HRB and the ecological water need in the Lower HRB can be flexibly achieved. However, the joint operation can hardly improve the three aspects simultaneously. To resolve the water conflict in HRB, additional engineering and/or policy measures are desired.
topic reservoir operation
integrated surface water-groundwater model
Heihe River Basin
environmental flow
irrigation
url http://www.mdpi.com/2073-4441/10/8/1105
work_keys_str_mv AT yongtian jointoperationofsurfacewaterandgroundwaterreservoirstoaddresswaterconflictsinaridregionsanintegratedmodelingstudy
AT jianzhixiong jointoperationofsurfacewaterandgroundwaterreservoirstoaddresswaterconflictsinaridregionsanintegratedmodelingstudy
AT xinhe jointoperationofsurfacewaterandgroundwaterreservoirstoaddresswaterconflictsinaridregionsanintegratedmodelingstudy
AT xuehuipi jointoperationofsurfacewaterandgroundwaterreservoirstoaddresswaterconflictsinaridregionsanintegratedmodelingstudy
AT shijiejiang jointoperationofsurfacewaterandgroundwaterreservoirstoaddresswaterconflictsinaridregionsanintegratedmodelingstudy
AT fenghan jointoperationofsurfacewaterandgroundwaterreservoirstoaddresswaterconflictsinaridregionsanintegratedmodelingstudy
AT yizheng jointoperationofsurfacewaterandgroundwaterreservoirstoaddresswaterconflictsinaridregionsanintegratedmodelingstudy
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