Arid
DOI10.1007/s11269-015-1023-x
An Optimization-Simulation Approach for Groundwater Abstraction under Recharge Uncertainty
Zekri, Slim1; Triki, Chefi2,3; Al-Maktoumi, Ali4; Bazargan-Lari, Mohammad Reza2,5
通讯作者Triki, Chefi
来源期刊WATER RESOURCES MANAGEMENT
ISSN0920-4741
EISSN1573-1650
出版年2015
卷号29期号:10页码:3681-3695
英文摘要

Droughts and climate variability cause uncertainties on water supply especially in arid regions and coastal aquifers’ over-exploitation causes seawater intrusion. Since the rate and extent of aquifer recharge is often very uncertain, determining the optimal groundwater abstraction is a challenging task. In this paper a framework is proposed for estimating the optimal abstraction of groundwater for urban supply under uncertainty and under complex conditions of water table fluctuations and seawater intrusion. It is based on a combination of several models: (i) a Monte-Carlo Simulation (MCS) to incorporate the uncertainties in groundwater recharge, (ii) a numerical groundwater flow model, MODFLOW to simulate the effects of abstractions on the water table fluctuations and seawater intrusion and (iii) a multi-objective optimization model to generate the set of Pareto optimal solutions for each recharging scenario. Maximizing the benefit to the water utility, minimizing the average groundwater table level fluctuations and minimizing the seawater intrusion are the objectives of the model. A fast multi-objective evolutionary algorithm is used to obtain the Pareto efficient solutions for each recharging scenario. Compromise programming (CP) is then used to select the closest solutions to the ideal. Finally, the amount of optimal reliable groundwater abstraction is estimated using a cumulative distribution function. The proposed methodology is applied to a coastal aquifer in the western part of Muscat metropolitan area, Oman. The results have shown that annual groundwater abstraction volume may range from 12.7 to 18.8 Mm(3) compared to 6.8 Mm(3) currently pumped. This would result in an economic benefit of $10.5 million to $15.4 million/year. On the other hand the aquifer’s maximum annual mean drawdown would range from 0.7 to 0.9 m.


英文关键词Managed aquifer recharge Uncertainty Seawater intrusion Groundwater simulation Dynamic optimization Multi-objective programming
类型Article
语种英语
国家Oman ; Italy ; Iran
收录类别SCI-E
WOS记录号WOS:000357345300014
WOS关键词ENVIRONMENTAL-IMPACT ; SEAWATER INTRUSION ; SALTWATER INTRUSION ; CONJUNCTIVE USE ; ARID AREAS ; WATER ; DESALINATION ; MANAGEMENT ; OPERATION ; SYSTEMS
WOS类目Engineering, Civil ; Water Resources
WOS研究方向Engineering ; Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/190769
作者单位1.Sultan Qaboos Univ, Dept Nat Resource Econ, Al Khoud 123, Oman;
2.Sultan Qaboos Univ, Dept Mech & Ind Engn, Al Khoud 123, Oman;
3.Univ Salento, Dept Engn Innovat, I-73100 Lecce, Italy;
4.Sultan Qaboos Univ, Dept Soil & Water & Agr Engn, Al Khoud 123, Oman;
5.Islamic Azad Univ, Dept Civil Engn, Tehran, Iran
推荐引用方式
GB/T 7714
Zekri, Slim,Triki, Chefi,Al-Maktoumi, Ali,et al. An Optimization-Simulation Approach for Groundwater Abstraction under Recharge Uncertainty[J],2015,29(10):3681-3695.
APA Zekri, Slim,Triki, Chefi,Al-Maktoumi, Ali,&Bazargan-Lari, Mohammad Reza.(2015).An Optimization-Simulation Approach for Groundwater Abstraction under Recharge Uncertainty.WATER RESOURCES MANAGEMENT,29(10),3681-3695.
MLA Zekri, Slim,et al."An Optimization-Simulation Approach for Groundwater Abstraction under Recharge Uncertainty".WATER RESOURCES MANAGEMENT 29.10(2015):3681-3695.
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