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Uncertainties associated with laser profiling of concrete sewer pipes for the quantification of the interior geometry

机译:与混凝土下水道激光轮廓分析有关的内部几何结构的不确定性

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Structural strength and hydraulic capacity are two essential parameters in the assessment of the need for sewer rehabilitation. Especially concrete pipes suffer from loss of wall thickness due to biochemical corrosion and, consequently, a decreasing structural strength along with an increase of hydraulic roughness. Unfortunately, routinely used visual inspection methods do not allow a quantification of the internal pipe geometry which would enable not only detecting but also quantifying the progress of biochemical corrosion. Advances in laser technology and digital cameras theoretically allow a cost-effective application of laser profilers to measure the interior geometry of sewer pipes. An analysis of associated uncertainties revealed that the position and alignment of the laser are the main source of measurement errors. A full-scale laboratory set-up demonstrated, based on tests on a new and an 89 years old corroded sewer pipe, that laser scanning is indeed capable of measuring the interior geometry accurately enough to determine wall thickness losses for corroded pipes, provided that the position and alignment of the laser and camera are accounted for. The obtained accuracy, however, was not enough to quantify the hydraulic roughness.
机译:结构强度和水力容量是评估下水道修复需求的两个基本参数。尤其是混凝土管由于生化腐蚀而壁厚损失,结果结构强度降低,水硬性增加。不幸的是,常规使用的视觉检查方法不能量化内部管道的几何形状,这不仅可以检测而且可以量化生化腐蚀的进程。理论上,激光技术和数码相机的进步使得激光轮廓仪能够经济有效地用于测量下水道的内部几何形状。对相关不确定性的分析表明,激光的位置和对准是测量误差的主要来源。全面的实验室设置表明,根据对新的和使用了89年的旧腐蚀下水道的测试,激光扫描确实能够准确测量内部几何形状,以确定腐蚀下的管道的壁厚损失,前提是激光器和摄像机的位置和对准均已考虑在内。然而,所获得的精度不足以量化水力粗糙度。

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