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Measurement of Rock Joint Surfaces by Using Smartphone Structure from Motion (SfM) Photogrammetry

机译:通过使用智能手机结构从运动(SFM)摄影测量中的智能手机结构测量

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摘要

The measurement of rock joint surfaces is essential for the estimation of the shear strength of the rock discontinuities in rock engineering. Commonly used techniques for the acquisition of the morphology of the surfaces, such as profilometers and laser scanners, either have low accuracy or high cost. Therefore, a high-speed, low-cost, and high-accuracy method for obtaining the topography of the joint surfaces is necessary. In this paper, a smartphone structure from motion (SfM) photogrammetric solution for measuring rock joint surfaces is presented and evaluated. Image datasets of two rock joint specimens were taken under two different modes by using an iPhone 6s, a Pixel 2, and a T329t and subsequently processed through SfM-based software to obtain 3D models. The technique for measuring rock joint surfaces was evaluated using the root mean square error (RMSE) of the cloud-to-cloud distance and the mean error of the joint roughness coefficient (JRC). The results show that the RMSEs by using the iPhone 6s and Pixel 2 are both less than 0.08 mm. The mean errors of the JRC are −7.54 and −5.27% with point intervals of 0.25 and 1.0 mm, respectively. The smartphone SfM photogrammetric method has comparable accuracy to a 3D laser scanner approach for reconstructing laboratory-sized rock joint surfaces, and it has the potential to become a popular method for measuring rock joint surfaces.
机译:岩石接合表面的测量对于岩石的不连续性在岩石工程的剪切强度估计是必不可少的。常用技术用于采集表面,例如轮廓曲线仪和激光扫描仪的形态的,或者具有低准确度或成本较高。因此,一种高速,低成本,以及用于获得所述接合面的形貌高精度的方法是必要的。在本文中,用于测量岩石接合面从运动智能电话结构(SFM)的摄影溶液被呈现并进行评价。的两个岩关节标本图像数据组通过使用iPhone 6S,一个像素2下的两个不同模式下拍摄的,并且一个T329t并且随后通过基于SFM-软件处理以获得3D模型。使用云到云距离的均方根误差(RMSE)和接头粗糙度系数(JRC)的平均误差进行评价用于测量岩石接合表面的技术。结果表明,通过使用iPhone 6S和像素2的RMSEs均小于0.08毫米。的JRC的平均误差是-7.54,并用分别为0.25和1.0mm时,点间隔-5.27%。智能电话SFM摄影方法具有可比的精度用于重建实验室尺寸的岩石接合面一个三维激光扫描仪的方法,并且它有可能成为用于测量岩石接合面一种流行的方法的潜力。

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