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首页> 外文期刊>Journal of geophysics and engineering >Optimising a modified free-space permittivity characterisation method for civil engineering applications
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Optimising a modified free-space permittivity characterisation method for civil engineering applications

机译:针对土木工程应用优化改进的自由空间介电常数表征方法

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Measuring the electrical permittivity of civil engineering materials is important for a range of ground penetrating radar (GPR) and pavement moisture measurement applications. Compacted unbound granular (UBG) pavement materials present a number of preparation and measurement challenges using conventional characterisation techniques. As an alternative to these methods, a modified free-space (MFS) characterisation approach has previously been investigated. This paper describes recent work to optimise and validate the MFS technique. The research included finite difference time domain (FDTD) modelling to better understand the nature of wave propagation within material samples and the test apparatus. This research led to improvements in the test approach and optimisation of sample sizes. The influence of antenna spacing and sample thickness on the permittivity results was investigated by a series of experiments separating antennas and measuring samples of nylon and water. Permittivity measurements of samples of nylon and water approximately 100 mm and 170 mm thick were also compared, showing consistent results. These measurements also agreed well with surface probe measurements of the nylon sample and literature values for water. The results indicate permittivity estimates of acceptable accuracy can be obtained using the proposed approach, apparatus and sample sizes.
机译:测量土木工程材料的介电常数对于一系列探地雷达(GPR)和路面湿度测量应用非常重要。使用传统的表征技术,压实的未粘结颗粒(UBG)路面材料提出了许多制备和测量难题。作为这些方法的替代方法,以前已经研究了一种改进的自由空间(MFS)表征方法。本文介绍了优化和验证MFS技术的最新工作。该研究包括有限差分时域(FDTD)建模,以更好地了解材料样本和测试仪器中波传播的本质。这项研究导致测试方法的改进和样本量的优化。通过一系列分离天线并测量尼龙和水样品的实验,研究了天线间距和样品厚度对介电常数结果的影响。还比较了大约100毫米和170毫米厚的尼龙和水样品的介电常数测量结果,显示出一致的结果。这些测量值也与尼龙样品的表面探针测量值和水的文献值非常吻合。结果表明,可以使用建议的方法,设备和样本量来获得可接受精度的介电常数估计。

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