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Robust sensing suite for measuring temporal dynamics of surface temperature in sewers

机译:强大的传感套件可测量下水道表面温度的时间动态

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摘要

Sewerage systems are paramount underground infrastructure assets for any nation. In most cities, they are old and have been exposed to significant microbial induced corrosion. It is a serious global problem as they pose threats to public health and economic repercussions to water utilities. For managing sewer assets efficaciously, it is vital to predict the rate of corrosion. Predictive models of sewer corrosion incorporate concrete surface temperature measurements as an observation. However, currently, it has not been fully utilized due to unavailability of a proven sensor. This study reports the feasibility of infrared radiometer for measuring the surface temperature dynamics in the aggressive sewer conditions. The infrared sensor was comprehensively evaluated in the laboratory at different environmental conditions. Then, the sensor suite was deployed in a Sydney based sewer for three months to perform continuous measurements of surface temperature variations. The field study revealed the suitability of the developed sensor suite for non-contact surface temperature measurements in hostile sewer conditions. Further, the accuracy of the sensor measurements was improved by calibrating the sensor with emissivity coefficient of the sewer concrete. Overall, this study will ameliorate the present sewer corrosion monitoring capabilities by providing new data to models predicting sewer corrosion.
机译:对于任何国家而言,污水处理系统都是至关重要的地下基础设施资产。在大多数城市中,它们很老,已经暴露于微生物引起的显着腐蚀之下。这是一个严重的全球性问题,因为它们对公共卫生和水务事业造成了经济影响。为了有效地管理下水道资产,预测腐蚀速率至关重要。下水道腐蚀的预测模型结合了混凝土表面温度的测量结果。但是,由于没有经过验证的传感器,目前尚未充分利用它。这项研究报告了红外辐射计在恶劣的下水道条件下测量表面温度动态的可行性。在实验室中不同环境条件下对红外传感器进行了全面评估。然后,将传感器套件在悉尼的下水道中部署了三个月,以连续测量表面温度变化。现场研究表明,开发的传感器套件适用于敌对下水道条件下的非接触表面温度测量。此外,通过用下水道混凝土的发射系数校准传感器,可以提高传感器测量的准确性。总体而言,这项研究将通过为预测下水道腐蚀的模型提供新数据来改善当前的下水道腐蚀监测能力。

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