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Analysis of cooling tower's geometry by means of geodetic and thermovision method

机译:通过大地测量和热宽度法分析冷却塔的几何形状

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Safe operation of thin-walled objects requires a regular monitoring of their technical condition. Geodetic measurements performed with a terrestrial laser scanning allow to determine the geometrical shape of the tested object with very high detail. Thermovision, as an auxiliary method, allows identification of places particularly exposed to changes in geometry caused by thermal influences. This paper presents a combination of both methods to analyse the geometry of reinforced cooling tower with a height of about 170 m. Laser scanning was performed from 11 stations arranged around the cooling tower, and the acquired point clouds were combined and unified in terms of density. Comparing the actual shape of the shell with the theoretical model, the values of geometrical imperfections were calculated. Thermograms were made by means of the thermovision camera, with particular emphasis on the lower part of the shell. The analysis of the imperfections' distribution and the location of the largest temperature differences allowed to identify the most threatened places on the cooling tower shell.
机译:薄壁对象的安全操作需要定期监控其技术条件。用陆地激光扫描进行的大地测量测量允许以非常高的细节确定测试物体的几何形状。作为辅助方法的热敏允许识别特别暴露于由热影响引起的几何形状的变化的地方。本文介绍了两种方法的组合,用于分析加强冷却塔的几何形状,高度约为170米。从围绕冷却塔排列的11个站进行激光扫描,并且在密度方面结合并统一所获得的点云。将壳的实际形状与理论模型进行比较,计算了几何缺陷的值。通过热视图制造热图,特别强调壳的下部。分析缺陷的分布和最大温度差异的位置允许识别冷却塔壳壳上最受威胁的位置。

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