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一种用于监测合流污水溢流频率和持续时间的稳健且准确的替代方法。

A robust and accurate surrogate method for monitoring the frequency and duration of combined sewer overflows.

机构信息

Institute of Urban Water Management and Landscape Water Engineering, Graz University of Technology, Stremayrgasse 10/I, 8010, Graz, Austria.

Catalan Institute for Water Research, Scientific and Technological Park of the University of Girona, H2O Building, Emili Grahit 101, 17003, Girona, Spain.

出版信息

Environ Monit Assess. 2018 Mar 11;190(4):209. doi: 10.1007/s10661-018-6589-3.

Abstract

Discharges of untreated wastewater from combined sewer overflows (CSOs) can affect hydraulic stress and have significant environmental impacts on receiving water bodies. Common flow rate and water level sensors for monitoring of CSO events are expensive in terms of investment costs, installation, operation and maintenance. This paper presents a novel surrogate method to detect CSO events by using two low-cost temperature sensors. The novelty is the experimental setup for installation of temperature sensors in CSO structures and an algorithm developed to automatically calculate the duration of CSO events considering the response time of the system. The occurrence and duration of CSO events is computed based on the convergence of the two temperature signals. The method was tested under field conditions in a CSO structure, and the results were compared to the information gathered from a parallel installed flow sensor. The application of two temperature sensors installed inside a CSO structure was proven to be robust and accurate for the automatic detection of the occurrence and duration of CSO events. Within the 7-month test phase, 100% of the 20 CSO events could be detected without false detections. The accuracy of detecting the start and end of the CSO events was 2 min in comparison to the flow sensor.

摘要

未经处理的污水从合流制污水溢流(CSO)排放会对水力压力产生影响,并对受纳水体造成重大的环境影响。用于监测 CSO 事件的常见流量和水位传感器在投资成本、安装、运行和维护方面都很昂贵。本文提出了一种新颖的替代方法,通过使用两个低成本的温度传感器来检测 CSO 事件。新颖之处在于在 CSO 结构中安装温度传感器的实验设置,以及开发的算法,用于自动计算 CSO 事件的持续时间,同时考虑到系统的响应时间。CSO 事件的发生和持续时间是基于两个温度信号的收敛来计算的。该方法在 CSO 结构中进行了现场测试,并将结果与从并行安装的流量传感器收集的信息进行了比较。事实证明,在 CSO 结构内安装两个温度传感器的应用对于自动检测 CSO 事件的发生和持续时间是稳健和准确的。在 7 个月的测试阶段,20 次 CSO 事件中的 100%都可以被检测到,而没有误报。与流量传感器相比,检测 CSO 事件开始和结束的精度为 2 分钟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6340/5846818/c4234cfdb7c2/10661_2018_6589_Fig1_HTML.jpg

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