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Stochastic Simulation and Management of an Over-Exploited Aquifer Using an Integrated Modeling System

机译:集成模型系统对超采含水层的随机模拟和管理

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摘要

A modeling system for the stochastic simulation and management of the overexploited groundwater resources of Lake Karla Basin in Central Greece is presented. The uncertainty of the hydrogeological environment which arises from the lack of the hydraulic conductivity data and aquifer's heterogeneity necessitates the stochastic simulation of the underlying aquifer. For the conditional stochastic simulation of hydraulic conductivity, the geostatistical approach was used generating Monte-Carlo realizations. The impact of Lake Karla (or reservoir) restoration and the accompanying projects on the aquifer, is examined through various management scenarios taking into consideration this parameter uncertainty. The target of the restoration plan is to rehabilitate aquifer's water table. This will be achieved through shutting down a great number of irrigation wells, as the irrigation needs of cultivations will be covered by the reservoir. The project with the highest environmental impact on the aquifer is the construction of 50 water supply wells at the lakeside zone of Lake Karla. Nowadays, due to the intense agricultural cultivation, the study area faces a serious water deficit problem, which has led to the over-exploitation of non-renewable groundwater and to a dramatic drawdown of aquifer's water table. The results of the stochastic simulation and management indicates that the operation of the new water supply wells will lead, despite the operation of the new reservoir, to a further drawdown of aquifer's water table, and will increase the effect of parameter uncertainty on hydraulic heads estimation by groundwater model.
机译:提出了希腊中部卡拉湖盆地过度开采的地下水资源随机模拟和管理的建模系统。由于缺乏水力传导率数据和含水层的非均质性而引起的水文地质环境的不确定性,需要对地下含水层进行随机模拟。对于水力传导率的条件随机模拟,使用地统计方法生成了蒙特卡洛实现。通过考虑该参数不确定性的各种管理方案,研究了卡拉湖(或水库)修复及相关项目对含水层的影响。恢复计划的目标是恢复含水层的地下水位。这将通过关闭大量灌溉井来实现,因为水库将满足耕种的灌溉需求。对含水层环境影响最大的项目是在卡拉湖的湖边地区建造50口供水井。如今,由于农业的密集耕作,研究区域面临着严重的缺水问题,这导致了不可再生地下水的过度开发以及含水层地下水位的急剧下降。随机模拟和管理的结果表明,尽管有新的水库,但新的供水井的运行仍将导致含水层水位的进一步下降,并会增加参数不确定性对水头的估计的影响。通过地下水模型。

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