一个开源的超声波流量计,用于监测污水处理厂的输入/输出流量。

IF 2 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Hélène Guyard , Stéphanie Prost-Boucle , Julien Sudre , Sylvain Moreau , Arnold Imig , Gabrielle Favreau , Valerie Quatela , Remi Clement
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引用次数: 0

摘要

传感器在连续监测和间歇分析中都发挥着重要的作用,对污水处理厂管理的研究和相关研究至关重要。考虑到所涉及的问题对环境的重大影响,准确测量流入和流出处理厂的水量是工厂管理、生态毒理学研究和学术研究计划的关键参数。传统上,流量测量是基于校准堰或文丘里水槽,根据已建立的关系,使用水位测量将其转换为流量。在本文中,作者提出了一种创新的方法来探索开发一种开源的、可修复的、具有成本效益的超声波流量监测数据记录仪的可行性。通过利用Arduino模块和互补的Grove屏蔽,拟议的数据记录器提供无缝集成和可负担性。特别值得一提的是,它配备了机载web服务器,便于数据收集和设备测试,并可通过Wi-Fi连接智能手机或电脑。作者通过将其性能与商业参考流量计的性能进行比较,证明了该流量计的有效性,在水位测量中产生的最大允许测量误差为0.6 mm。此外,通过为期9个月的广泛现场测试,他们证明了开发的数据记录仪的耐用性和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

An open source ultrasonic flowmeter for monitoring the input/output flow rates of wastewater treatment plants

An open source ultrasonic flowmeter for monitoring the input/output flow rates of wastewater treatment plants
Sensors play an important role in both the continuous monitoring and intermittent analyses, which are essential for the study of wastewater treatment plant management and conducting related research. Given the significant environmental impact of the issues involved, accurate measurement of the volume of water flowing into and out of treatment plants is a key parameter for plant management, ecotoxicological studies and academic research programs. Traditionally, flow measurements have been based on calibrated weirs or venturi flumes, using water level measurements for conversion into flow, according to established relationships. In this article, the authors propose an innovative approach to explore the feasibility of developing an open-source, reparable and cost-effective data logger for flow monitoring using ultrasonic technology. By leveraging Arduino modules and a complementary Grove shield, the proposed data logger offers seamless integration and affordability. In particular, it features an on-board web server to facilitate data collection and device testing, offering accessibility through Wi-Fi connectivity with smartphones or computers. The authors demonstrate the effectiveness of their flowmeter by comparing its performance with that of a commercial reference flowmeter, yielding a maximum permissible measurement error of 0.6 mm on the water level measurement. Furthermore, they demonstrate the durability and reliability of the developed data logger through extensive field-testing over a 9-month period.
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来源期刊
HardwareX
HardwareX Engineering-Industrial and Manufacturing Engineering
CiteScore
4.10
自引率
18.20%
发文量
124
审稿时长
24 weeks
期刊介绍: HardwareX is an open access journal established to promote free and open source designing, building and customizing of scientific infrastructure (hardware). HardwareX aims to recognize researchers for the time and effort in developing scientific infrastructure while providing end-users with sufficient information to replicate and validate the advances presented. HardwareX is open to input from all scientific, technological and medical disciplines. Scientific infrastructure will be interpreted in the broadest sense. Including hardware modifications to existing infrastructure, sensors and tools that perform measurements and other functions outside of the traditional lab setting (such as wearables, air/water quality sensors, and low cost alternatives to existing tools), and the creation of wholly new tools for either standard or novel laboratory tasks. Authors are encouraged to submit hardware developments that address all aspects of science, not only the final measurement, for example, enhancements in sample preparation and handling, user safety, and quality control. The use of distributed digital manufacturing strategies (e.g. 3-D printing) is encouraged. All designs must be submitted under an open hardware license.
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