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Assessment of the groundwater salinity monitoring network of the Tehran region: application of the discrete entropy theory

机译:德黑兰地区地下水盐度监测网络的评估:离散熵理论的应用

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摘要

In this paper, a new entropy-based approach is developed for assessing the location of salinity monitoring stations in the Tehran Aquifer, Tehran, Iran. To find the optimal distance among stations, the measure of Transinformation in the Entropy Theory is used. Then a Transinformation-Distance (T-D) curve is developed and used in a multi-objective GA-based optimization model, which provides the best locations for monitoring stations. Because of the large area of the Tehran aquifer and significant spatial variations of the Electrical Conductivity (EC) of the groundwater in the study area, the C-means clustering method is used to classify the study area to some homogenous zones. The optimization model is applied to each zone to find the optimal location of monitoring stations. The results show the applicability and the efficiency of the model in assessing the groundwater monitoring systems.
机译:在本文中,开发了一种新的基于熵的方法来评估伊朗德黑兰德黑兰含水层中盐度监测站的位置。为了找到站点之间的最佳距离,使用了熵理论中的转换信息量度。然后,开发了跨信息距离(T-D)曲线,并将其用于基于多目标GA的优化模型中,该模型为监视站提供了最佳位置。由于德黑兰含水层的面积很大,并且研究区域的地下水的电导率(EC)的空间变化很大,因此使用C均值聚类方法将研究区域划分为一些同质区域。将优化模型应用于每个区域,以找到监视站的最佳位置。结果表明该模型在评估地下水监测系统中的适用性和有效性。

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