用于精确监测城市水位和流量的多参数灵活智能水表

Eng Pub Date : 2024-01-19 DOI:10.3390/eng5010011
Selamu Wolde Sebicho, Baodong Lou, Bethel Selamu Anito
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引用次数: 0

摘要

城市排水和防涝是城市水管理系统的重要组成部分,因为它们有助于降低城市内涝和水害的风险。准确收集这些系统末端的液位和流量数据对于有效监测和管理这些系统至关重要。然而,现有的用于此目的的水设备存在一些缺陷,包括精度有限、不灵活以及在特定工作条件下难以操作。为解决这些问题,我们开发了一种新型多参数柔性智能水尺。该技术采用水下模拟机器人技术,旨在克服现有水上设备的不足。水尺的灵活性使其能够适应不同的工作条件,即使在充满挑战的环境中也能确保准确的数据采集。通过一系列实验对新型水位计的准确性进行了测试,结果表明它在测量液位和流量方面都非常准确。这项新技术有可能成为智能水利的关键工具,能够更高效、更准确地监测水位和流量。通过为城市排水和防涝终端设备的收集问题提供新的解决方案,这项技术有助于提高城市水管理系统的复原力和可持续性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Multi-Parameter Flexible Smart Water Gauge for the Accurate Monitoring of Urban Water Levels and Flow Rates
Urban drainage and waterlogging prevention are critical components of urban water management systems, as they help to mitigate the risks of flooding and water damage in cities. The accurate collection of liquid level and flow rate data at the end of these systems is crucial for their effective monitoring and management. However, existing water equipment for this purpose has several shortcomings, including limited accuracy, inflexibility, and difficulty in operation under specific working conditions. A new type of multi-parameter flexible smart water gauge was developed to address these issues. This technology uses underwater simulation robot technology and is designed to overcome the deficiencies of existing water equipment. The flexibility of the gauge allows it to be adapted to different working conditions, ensuring accurate data collection even in challenging environments. The accuracy of the new water gauge was tested through a series of experiments, and the results showed that it was highly accurate in measuring both liquid level and flow rate. This new technology has the potential to be a key tool in smart water conservancy, enabling the more efficient and accurate monitoring of water levels and flow rates. By providing a new solution to the problem of collecting terminal equipment for urban drainage and waterlogging prevention, this technology can help to improve the resilience and sustainability of urban water management systems.
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Eng
Eng
CiteScore
2.10
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