Wotzka Daria, Zmarzły Dariusz
Faculty of Electrical Engineering, Automatic Control and Informatics, Opole University of Technology, 45-758 Opole, Poland.
Sensors (Basel). 2024 Oct 14;24(20):6607. doi: 10.3390/s24206607.
This research paper describes the development of a low-cost device for measuring wastewater flow rates in open channels, a significant advancement enabled by the evolution of microcomputers and processing techniques. A laboratory setup was constructed to validate the device's accuracy against a standard flow measurement method, optimizing key parameters to achieve a linear relationship between detected and set flow rates, while considering hardware limitations and energy efficiency. The central focus of the research was developing a method to measure the velocity of contaminated fluid using ultrasonic signals, employing the cross-correlation method for signal delay analysis in a stochastic environment. This was complemented by a procedure to measure fluid levels, also based on ultrasonic signals. The device's reliability was assessed through repeatability and uncertainty measurements, confirming its accuracy with an extended uncertainty not exceeding an average of 3.47% for flows above 40 L/min. The device has potential to provide valuable data on the operational dynamics of sanitary networks, crucial for developing and calibrating simulation models.
本研究论文描述了一种用于测量明渠废水流速的低成本设备的开发,这是由微型计算机和处理技术的发展所实现的一项重大进展。构建了一个实验室装置,以根据标准流量测量方法验证该设备的准确性,优化关键参数以实现检测到的流速与设定流速之间的线性关系,同时考虑硬件限制和能源效率。该研究的核心重点是开发一种利用超声波信号测量污染流体流速的方法,采用互相关方法在随机环境中进行信号延迟分析。这辅以一种同样基于超声波信号的测量液位的程序。通过重复性和不确定性测量评估了该设备的可靠性,对于流量高于40升/分钟的情况,确认其扩展不确定性不超过平均3.47%,从而证实了其准确性。该设备有潜力提供有关卫生网络运行动态的有价值数据,这对于开发和校准模拟模型至关重要。