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Monte Carlo modeling of a cosmic ray imaging system for non-destructive evaluation of a reinforced concrete column

机译:用于钢筋混凝土柱无损评估的宇宙射线成像系统的蒙特卡洛建模

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摘要

A detailed knowledge of the condition of reinforced concrete columns is essential for the planning of maintenance of a large building. We performed a Monte Carlo simulation to examine how well cosmic-ray muon radiography technique works on non-destructive testing of reinforcing concrete and we found that this technique can be an efficient tool for obtaining information such as the size and depth of reinforcing bars beneath concrete. We examined a concrete column with a cross-sectional size of 559 × 559 mm~2, reinforced with steel bars of 52 mm diameter, in order to estimate the positioning accuracy. Using simulations of 6 million muons/sr, we found that the precision for bar size measurement is 4.1 mm and that for bar location is 2.5 mm. We describe a possible inexpensive imaging system capable of determining the size and depth of an object and discuss the technique and the benefits of cosmic-ray radiography.
机译:对钢筋混凝土柱状况的详细了解对于规划大型建筑物的维护至关重要。我们进行了蒙特卡洛模拟,以检验宇宙射线μ子射线照相技术在钢筋混凝土的无损检测中的工作情况,发现该技术可以作为一种有效的工具,用于获取诸如钢筋下方钢筋的尺寸和深度之类的信息。 。为了评估定位精度,我们检查了截面尺寸为559×559 mm〜2的混凝土柱,并用直径52 mm的钢筋加固。通过对600万μs/ sr的模拟,我们发现条尺寸测量的精度为4.1 mm,条位置的精度为2.5 mm。我们描述了一种可能的廉价成像系统,该系统能够确定物体的大小和深度,并讨论了宇宙射线照相的技术和好处。

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