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Spatial assessment and redesign of a groundwater quality monitoring network using entropy theory, Gaza Strip, Palestine

机译:基于熵理论的地下水质量监测网络的空间评估和重新设计,加沙地带,巴勒斯坦

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摘要

Abstract Using entropy theory, a methodology was developed for the evaluation and redesign of groundwater quality monitoring wells in the Gaza Strip in Palestine. Essential to the methodology is the development of a Transinformation Model (TM) which yields the amount of information transfer and the dependency between the wells as a function of distance. The TM parameters, such as the minimum transinformation and the range, were employed for evaluating the network which revealed that most of the distances between wells were less than the range. It also indicated that a high percentage of redundant information existed in the network. Therefore, the network was reduced by superimposing a square pattern over the monitored area and selecting one well per square block in a stratified pattern. The methodology was tested using the chloride data collected from 1972–2000 from 417 groundwater quality monitoring wells in the Gaza Strip. The number of the groundwater quality monitoring wells in the Gaza Strip was reduced by 53%, while there was 26% redundant information based on the minimum existing distance between wells. This methodology is meant to help monitor the groundwater quality (salinity) in the Gaza Strip.
机译:摘要利用熵理论,开发了一种评估和重新设计巴勒斯坦加沙地带地下水质量监测井的方法。该方法学的关键是开发信息模型(TM),该模型可产生信息传输量以及井之间的距离依赖性。 TM参数(例如最小转信息和范围)用于评估网络,该网络揭示了孔之间的大多数距离都小于该范围。它还表明网络中存在大量冗余信息。因此,通过在监视区域上叠加正方形图案并以分层图案在每个正方形块中选择一口井来减少网络。使用从1972年至2000年从加沙地带的417个地下水质量监测井收集的氯化物数据对方法进行了测试。加沙地带的地下水水质监测井数量减少了53%,而基于井间最小距离的冗余信息则有26%。这种方法学旨在帮助监测加沙地带的地下水质量(盐度)。

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