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Experimental validation of a 2D–3D conversion method for estimation of multiple 3D characteristics of discrete elements

机译:二维转换方法的实验验证,用于估计离散元件的多个3D特征

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摘要

Accurate assessment of three-dimensional (3D) characteristics, such as the shape and size distribution, of discrete elements (e.g. particles, granules, grains, voids, crystals, cells and fibers) is required in various fields. But generally, in practice, two-dimensional (2D) instead of 3D assessment is conducted due to limitations in time, cost or measurement technology (as in microscopic observation of discrete elements). In this study, experimental validation was conducted for a 2D–3D conversion method, developed in 2018, which estimates multiple 3D parameters based on 2D counterparts, using an x-ray computed tomography analysis of silica sand. Six 3D parameters (volume, surface area, long-axis length, sphericity and long/middle and long/short axis ratios) were successfully estimated based on five measured 2D parameters (sectional area, perimeter, long-axis length, circularity and long/short axis ratio). An experimental validation was conducted for a 2D–3D conversion method, which estimates multiple 3D parameters based on 2D counterparts, using X-ray computed tomography analysis of silica sand. Six 3D parameters (volume, surface area, long-axis length, sphericity, long/middle and long/short axis ratio) were successfully estimated based on measured 2D parameters.
机译:在各种领域中需要精确评估三维(3D)特性,例如离散元件的形状和尺寸分布,例如颗粒,颗粒,颗粒,空隙,晶体,细胞和纤维)。但通常,在实践中,由于时间,成本或测量技术的限制(如离散元件的显微镜观察),二维(2D)代替3D评估。在这项研究中,对2018年开发的2D-3D转换方法进行了实验验证,该方法估计了基于2D对应的多个3D参数,使用硅砂的X射线计算机断层扫描分析。根据五个测量的2D参数(截面,周长,长轴长度,圆形和长/长/长/长/长/长/长/长/长/)成功估计了六个3D参数(体积,表面积,长轴长度,球形和长/中和长/短轴比率)成功估算短轴比率)。对2D-3D转换方法进行了实验验证,其估计了基于2D对应的多个3D参数,使用硅砂的X射线计算断层扫描分析。基于测量的2D参数,成功估计了六个3D参数(体积,表面积,长轴长度,球形,长/中和长/短轴比)。

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