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Remote Moisture Quantification of Concrete using SAR Images and the K-R-I Transform

机译:使用SAR图像和K-R-I变换的混凝土远程水分量化

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Moisture content in Portland cement concrete structures is commonly associated with many durability problems (e.g., steel corrosion) and can be used in structural health monitoring and nondestructive evaluation/testing (NDE/T) of concrete structures. While several intrusive techniques are available for quantifying moisture content inside concrete structures, it is a challenging task to estimate the moisture content of concrete in the field without using embedded moisture sensors. In this paper, synthetic aperture radar (SAR) imaging as a nonintrusive technique and the K-R-I (curvature-area-amplitude) transform arc applied to concrete panel specimens made of two water-to-cement (w/c) ratios (w/c = 0.4 and 0.5) for moisture determination. Concrete panel specimens with dimensions of 0.3 m-by-0.3 m-by-0.05 m were manufactured and conditioned in a laboratory environment by air-drying for three months. Its time-dependent moisture variation was simultaneously monitored by a 10.5-GHz center frequency SAR imaging sensor inside an anechoic chamber. Quantitative analysis of SAR images was carried out by using the K-R-I transform to understand the simultaneous change of SAR amplitude and distribution (contour shape) at different moisture contents. It was found that SAR amplitude and its distribution increase with the increase of moisture content inside concrete panel specimens. Spatial distribution of SAR amplitudes can be used to indicate subsurface moisture distribution inside concrete. The area-amplitude (R-I) curve of SAR images can be used to quantify the relationship between moisture content and its distribution.
机译:波特兰水泥混凝土结构中的水分含量通常与许多耐用性问题(例如,钢腐蚀)有关,可用于混凝土结构的结构健康监测和无损评估/测试(NDE / T)。虽然有几种侵入式技术可用于量化混凝土结构内的水分含量,但是在不使用嵌入式水分传感器的情况下估计该领域中混凝土的水分含量是一个具有挑战性的任务。在本文中,合成孔径雷达(SAR)成像作为非流体技术和KRI(曲率区幅度)变换弧施加到由两种水 - 水泥(W / C)比率(W / C)制成的混凝土板样本= 0.4和0.5)用于水分测定。尺寸为0.3 m-0.3 m-0.05米的混凝土板标本通过空气干燥,在实验室环境中制造和调节三个月。其在一个AneChice室内的10.5GHz中心频率SAR成像传感器同时监测其时间依赖性湿度变化。通过使用K-R-I变换来了解SAR图像的定量分析,以了解不同水分含量的SAR幅度和分布(轮廓形状)的同时变化。发现SAR振幅及其分布随着混凝土板样本内的水分含量的增加而增加。 SAR幅度的空间分布可用于表示混凝土内的地下水分分布。 SAR图像的区域幅度(R-I)曲线可用于量化水分含量与其分布之间的关系。

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