Development and Introduction of System for Monitoring, Analyzing and Predicting the State of Soils of a Frozen Dam

D. Kuzin, A. Trapeznikov, A. Bekker
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Abstract

Monitoring and assessing the technical condition of earth dams in the permafrost zone is a complex multicriteria task. Harsh climatic, difficult engineering-geological and hydrogeological conditions, high functional responsibility of hydraulic constructions in the Far North determine special requirements for the location and composition of control and measurement system. For a long period of the year, many locations of the dam are inaccessible, and it is extremely difficult to get to others, because of the snow. Therefore, the monitoring system must constantly collect data from many hard-to-reach nodes and transmit this data over a long distance to the point with special data control and analysis software. The measuring system described in this article has been implemented and it is successfully used to control the temperature regime of the ice-soil core of the dam, water intake and spillway during its operation. The system includes two branches of thermometric points (wells with thermometric cable), connected with communication lines for data transfer between them, software for configuring measurement controllers, and software for collecting, processing and transmitting data to predict the state of the dam. This article describes the process of collecting data from thermometric points, the process of developing software in the LabVIEW environment for processing collected data and describes some elements of the user interface.
冻坝土状态监测、分析与预测系统的研制与介绍
多年冻土区土坝的技术状况监测与评价是一项复杂的多指标工作。远北地区恶劣的气候条件、复杂的工程地质和水文地质条件、高度的功能责任,决定了测控系统的位置和组成有特殊的要求。在一年中的很长一段时间里,大坝的许多地方都无法进入,而且由于下雪,到达其他地方极其困难。因此,监控系统必须不断地从许多难以到达的节点收集数据,并通过特殊的数据控制和分析软件将这些数据长距离传输到点。本文所述的测量系统已经实现,并成功地用于控制大坝运行过程中冰-土芯、进水口和溢洪道的温度变化。该系统包括两个测温点分支(带有测温电缆的井),它们之间通过通信线路进行数据传输,配置测量控制器的软件,以及用于收集、处理和传输数据以预测大坝状态的软件。本文描述了从测温点采集数据的过程,在LabVIEW环境下开发软件处理采集数据的过程,并描述了用户界面的一些元素。
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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