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Experiences and recommendations in deploying a real-time, water quality monitoring system

机译:部署实时水质监测系统的经验和建议

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Monitoring of water quality at a river basin level to meet the requirements of the Water Framework Directive (WFD) using conventional sampling and laboratory-based techniques poses a significant financial burden. Wireless sensing systems offer the potential to reduce these costs considerably, as well as provide more useful, continuous monitoring capabilities by giving an accurate idea of the changing environmental and water quality in real time. It is unlikely that the traditional spot/grab sampling will provide a reasonable estimate of the true maximum and/or mean concentration for a particular physicochemical variable in a water body with marked temporal variability. When persistent fluctuations occur, it is likely only to be detected through continuous measurements, which have the capability of detecting sporadic peaks of concentration. Thus, in situ sensors capable of continuous sampling of parameters required under the WFD would therefore provide more up-to-date information, cut monitoring costs and provide better coverage representing long-term trends in fluctuations of pollutant concentrations. DEPLOY is a technology demonstration project, which began planning and station selection and design in August 2008 aiming to show how state-of-the-art technology could be implemented for cost-effective, continuous and real-time monitoring of a river catchment. The DEPLOY project is seen as an important building block in the realization of a wide area autonomous network of sensors capable of monitoring the spatial and temporal distribution of important water quality and environmental target parameters. The demonstration sites chosen are based in the River Lee, which flows through Ireland's second largest city, Cork, and were designed to include monitoring stations in five zones considered typical of significant river systems--these monitor water quality parameters such as pH, temperature, depth, conductivity, turbidity and dissolved oxygen. Over one million data points have been collected since the multi-sensor system was deployed in May 2009. Extreme meteorological events have occurred during the period of deployment and the collection of real-time water quality data as well as the knowledge, experience and recommendations for future deployments are discussed.
机译:使用常规采样和基于实验室的技术对流域水质进行监测以满足水框架指令(WFD)的要求,这将带来巨大的财务负担。无线传感系统具有潜力,可以实时降低环境成本和水质,提供准确的想法,从而可以大幅降低这些成本,并提供更有用的连续监控功能。传统的斑点/抓取采样不太可能提供具有明显时间变化性的水体中特定理化变量的真实最大和/或平均浓度的合理估计。当发生持续性波动时,很可能只能通过连续测量来检测,连续测量具有检测零星的浓度峰的能力。因此,能够连续采样WFD要求的参数的原位传感器将因此提供更多的最新信息,削减监测成本并提供更好的覆盖范围,代表污染物浓度波动的长期趋势。 DEPLOY是一项技术示范项目,于2008年8月开始规划,选址和设计,目的是展示如何实施最先进的技术,以经济高效,连续和实时地监测河流集水区。 DEPLOY项目被视为实现能够监视重要水质和环境目标参数的时空分布的传感器的广域自治网络的重要组成部分。选择的示范点位于利河(River Lee),该河流经爱尔兰第二大城市科克(Cork),并设计为包括五个区域的监测站,这些区域被认为是重要河流系统的典型特征,这些监测站的水质参数包括pH值,温度,深度,电导率,浊度和溶解氧。自2009年5月部署多传感器系统以来,已经收集了超过一百万个数据点。在部署期间,发生了极端气象事件,收集了实时水质数据以及有关的知识,经验和建议。讨论了将来的部署。

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