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Evaluation and optimal redesigning of river water-quality monitoring networks (RWQMN) using geostatistics approach (case study: Karun, Iran)

机译:利用地统计学方法评估和最优重新设计河水水质监测网络(RWQMN)(案例研究:Karun,Iran)

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摘要

Water-quality monitoring networks (WQMNs) are principal to planning and management of water resources. However, constructing and maintaining monitoring stations as well as analyzing the acquired data are costly processes. A well-designed network is one that provides the greatest possible amount of data from the fewest number of stations, so that the overall cost of monitoring is reduced. In this study, WQMN sampling locations of the Karun River, in south-western Iran were evaluated by simultaneously applying two geostatistical methods: ordinary kriging (OK) and sequential Gaussian simulation (SGS). In the evaluation, kriging estimations, and their variances and realizations of the concentrations of two main water-quality variables [electrical conductivity (EC) and dissolved oxygen (DO)] were considered. The results showed that the system of sampling locations should be modified to reach an optimized network. It is necessary to set up stations or increase sampling frequency in some existing stations when adjacent ones are far away or when some polluters exist nearby. The combining of the two techniques (OK and SGS) applied simultaneously was evaluated in this study to evaluate the existing WQMN. The results showed that this process applies to evaluating and optimizing other WQMNs as well.
机译:水质监测网络(WQMNS)是规划和管理水资源的委托人。然而,构建和维护监视站以及分析所获取的数据是昂贵的过程。精心设计的网络是一种从最少的车站提供最大可能的数据量,因此减少了整体监测成本。在这项研究中,通过同时应用两个地质统计方法来评估伊朗西南伊朗的WQMN河流的采样位置:普通克里格(OK)和顺序高斯模拟(SGS)。在评估,克里格估计和它们的差异和两个主要水质变量的常量和实现中的差异[导电性(EC)和溶解氧(DO)]。结果表明,应修改采样位置系统以达到优化的网络。当邻近的距离或附近有些污染物存在时,有必要在某些现有站中建立站点或增加采样频率。在本研究中评估了同时应用的两种技术(OK和SGS)的组合,以评估现有的WQMN。结果表明,此过程适用于评估和优化其他WQMN。

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