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Fluid flow through rough fractures in rocks I: high resolution aperture determinations

机译:流体流经岩石中的粗糙裂缝I:高分辨率孔径确定

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Full characterisation of rough fracture surfaces and the resulting variable apertures is an important step in the drive towards an improved understanding of the factors which control fluid flow through rocks. A number of surface profiling techniques exist, such as needle or laser profiling. However, these techniques are difficult and time consuming to apply to the total area of a fracture because they involve measuring a large number of parallel profiles, which are then difficult to align accurately. Hence, although a single profile may have high resolution in the z-direction and the direction of the profile, the fracture surface has a much lower resolution due to alignment errors. We have developed and improved considerably a previously existing optical concept for obtaining the topography of a fracture surface where the information about surface heights is measured simultaneously. The method relies on the construction of high fidelity transparent models of the fracture surface, which are imaged while covered with dyed and undyed water. The resulting images are converted to topography by a simple calibration procedure that makes use of the Lambert-Beer law. This method utilises in-house OptiProf software, which provides considerably more control over the imaging process than previous attempts at optical profiling. We have applied the technique to a range of rock fractures and test pieces, and have found the technique to work reliably, with lateral resolutions of 15 μm, and a vertical resolution of 15 μm, although all these could be improved by increasing the pixel count and the bit-depth of the camera, respectively.
机译:全面表征粗糙的裂缝表面和由此产生的可变孔径是推动人们更好地了解控制流体流经岩石的因素的重要一步。存在许多表面轮廓技术,例如针或激光轮廓。然而,由于这些技术涉及测量大量平行轮廓,因此难以精确对准,因此将这些技术应用于骨折的总面积是困难且耗时的。因此,尽管单个轮廓可以在z方向和轮廓方向上具有高分辨率,但是由于对齐误差,断裂面的分辨率要低得多。我们已经开发并改进了先前存在的光学概念,用于获得断裂表面的形貌,其中同时测量了有关表面高度的信息。该方法依赖于裂缝表面的高保真透明模型的构建,该模型在被染色和未染色的水覆盖时成像。通过使用兰伯特-比尔定律的简单校准程序,将所得图像转换为形貌。这种方法利用内部的OptiProf软件,该软件比以前的光学配置技术尝试提供了对成像过程的更多控制。我们已经将该技术应用于一系列岩石破裂和试件,并且发现该技术可以可靠地工作,横向分辨率为15μm,垂直分辨率为15μm,尽管可以通过增加像素数来改善所有这些技术和相机的位深度。

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