采用GSM技术的水环境监测系统的设计与实现

Aparna M. Telgote, V. Narayanan, Navid Ahmed N. Dave
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引用次数: 3

摘要

大坝是拦阻水或地下溪流的屏障。大坝的主要作用是蓄水,而其他结构,如闸门或堤防(也称为堤防)则用于管理或防止水流进入特定的陆地区域。当大坝的水位超过一定水平时,大坝就有倒塌的危险。为了避免这种情况,我们应该不断监测大坝水位,使大坝结构在水的压力下不会坍塌。这可以通过在水位超过一定限度时控制闸门来实现。此外,水是一种稀缺资源,因此有必要保护和保持其质量。为此,应不断检查和评估各种与水有关的参数。需要监测的主要水污染相关参数是温度、浊度和ph。本文阐述了与我们正在做的项目有关的理论方面和大坝闸门自动化演示的细节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and implementation of water environment monitoring system using GSM technology
A dam is a barrier that impounds water or underground streams. Dams generally serve the primary purpose of retaining water, while other structures such as floodgates or levees (also known as dikes) are used to manage or prevent water flow into specific land regions. When the water level in the dam exceeds certain level, the dam is in danger of collapsing. To avoid this, we should constantly monitor dam water level so that dam structure does not give way under the pressure of the water. This can be done by controlling the flood gates if the water level exceeds certain limits. Also water being a scarce resource, it becomes necessary to preserve and maintain its quality. In order to do so, various water related parameters should be under constant check and evaluation. The main water pollution related parameters that need to be monitored are Temperature, Turbidity and pH. This paper explains the theoretical aspects related to the project we are doing and the details regarding the demonstration of the automation of dam gates.
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