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Deformation Monitoring By Gps At Embankment Dams And Deformation Analysis

机译:Gps堤坝变形监测与变形分析。

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Deformation measurements are very important for inspecting huge engineering structures in order to prevent disasters caused by deformation and thus protect national investment. These measurements require the use of very accurate surveying equipment. In particular, the structure of a dam and the physical effects it has on its surroundings need continuous monitoring in order to see if unexpected changes have occurred. If any change is found, remedial work can be performed to protect the structure. The Global positioning System (GPS) meets all of the requirements stated above and therefore, GPS receivers were used in this research. The main aims of this work were the examination of deformation at the crest of the dam caused by water load at different water levels and the weight of the dam. Additionally, the study was undertaken to determine whether GPS measurements could reach the accuracy requirements for dam deformation measurements. In order to monitor and examine the deformation, a monitoring network consisting of 6 reference points and 11 object points was established. Measurements were made four times over 2 years using dual frequency GPS receivers with static methods. The measurements were processed and point coordinates were determined. Then differences were calculated between periods and the differences were analyzed by iterative weighted transformation and Fredericton methods to determine the stability of the points. Finally, the results from the two methods were compared and discussed.
机译:变形测量对于检查大型工程结构非常重要,以防止变形引起的灾难,从而保护国家投资。这些测量需要使用非常精确的测量设备。特别是,需要对大坝的结构及其对周围环境的物理影响进行连续监控,以查看是否发生了意外变化。如果发现任何变化,可以执行补救措施以保护结构。全球定位系统(GPS)满足上述所有要求,因此,本研究中使用了GPS接收器。这项工作的主要目的是检查在不同水位和水坝重量下水负荷引起的水坝坝顶变形。此外,还进行了研究以确定GPS测量是否可以达到大坝变形测量的精度要求。为了监测和检查变形,建立了由6个参考点和11个对象点组成的监测网络。使用静态方法使用双频GPS接收机在2年中进行了四次测量。处理测量并确定点坐标。然后计算期间之间的差异,并通过迭代加权变换和Fredericton方法分析差异,以确定点的稳定性。最后,对两种方法的结果进行了比较和讨论。

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