Design and Development of Multi-Sensor ADEP for Bore Wells Integrated with IoT Enabled Monitoring Framework

S. K, L. J., J. M, Balamurugan Easwaran
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引用次数: 1

Abstract

Typically, about 51% of the groundwater satisfies the drinking water worldwide and is regarded as the major source for the purpose of irrigation. Moreover, the monitoring and assessment of groundwater over bore wells is essential to identify the effect of seasonal changes, precipitations, and the extraction of water. Hence, there is a need to design a depth sensor probe for bore wells so as to analyze/monitor the quality of underground water thereby estimating any geophysical variations like landslides/earthquakes. Once the depth sensor probe is designed, the data is collected over wireless sensor network (WSN) medium and is stored in cloud for further monitoring and analyzing purposes. WSN is the major promising technologies that offer the real-time monitoring opportunities for geographical areas. The wireless medium in turn senses and gathers data like rainfall, movement, vibration, moisture, hydrological and geological aspects of soil that helps in better understanding of landslide or earthquake disasters. In this paper, the design and development of geophysical sensor probe for the deep bore well so as to monitor and collect the data like geological and hydrological conditions. The data collected is then transmitted by wireless network to analyze the geological changes which can cause natural disaster and water quality assessment.
集成物联网监测框架的井筒多传感器ADEP设计与开发
一般来说,全世界约有51%的地下水可以满足饮用水需求,被认为是灌溉用水的主要来源。此外,对钻孔地下水的监测和评价对于确定季节变化、降水和取水的影响至关重要。因此,有必要为钻孔设计一个深度传感器探头,以便分析/监测地下水的质量,从而估计任何地球物理变化,如滑坡/地震。一旦深度传感器探头设计好,数据就会通过无线传感器网络(WSN)介质收集,并存储在云中,以便进一步监测和分析。无线传感器网络是为地理区域提供实时监测机会的主要有前途的技术。无线媒介反过来感知和收集数据,如降雨、运动、振动、湿度、水文和土壤的地质方面,有助于更好地了解滑坡或地震灾害。本文设计并研制了用于深井的地球物理传感器探头,以监测和采集地质、水文条件等数据。收集到的数据通过无线网络传输,用于地质变化的自然灾害分析和水质评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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