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Application of mathematical programming and modeling methods for monitoring the technical condition of underwater crossings of main gas pipelines

机译:数学规划和建模方法在监测主气管道水下交叉部技术条件下的应用

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The article deals with the problem of geodetic monitoring of the technical condition of underwater gas pipeline crossings. The theoretical scheme of increasing the accuracy of depth determination is studied in detail. In this paper, the goal is to increase the accuracy of obtaining the depth of the gas pipeline. The accuracy of the planned position for the largest survey scale (1:500) is 0.75 meters and is achieved using satellite equipment, even without the use of a dynamic positioning system, which allows, if necessary, to increase the accuracy of the data obtained by determining the orientation angles of the vessel. Despite the high popularity of this complex, the accuracy of depth measurements does not correspond to regulatory documents, which raises the question of the need to change the method of measurement and data processing, since the performance of work on monitoring the technical condition of gas pipelines is an important and relevant task. In order to control the developed methodology and automate measurement processing, two programs were written in the Python 3.7 programming language in the Spyder environment.
机译:本文涉及水下燃气管道交叉技术条件的大地测量监测问题。研究了提高深度测定精度的理论方案。在本文中,目标是提高获得气体管道深度的准确性。规模较大的测量规模(1:500)的规划位置的准确性为0.75米,也是使用卫星设备实现的,即使在不使用动态定位系统,允许,如果需要,可以提高所获得的数据的准确性通过确定容器的取向角。尽管这种复杂的普及很高,但深度测量的准确性与监管文件不相对应,这提出了改变测量和数据处理方法的问题,因为在监测天然气管道的技术条件的情况下的性能是一个重要和相关的任务。为了控制发达的方法和自动测量处理,在Spyder环境中以Python 3.7编程语言编写了两个程序。

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