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首页> 外文期刊>Earth-Science Reviews: The International Geological Journal Bridging the Gap between Research Articles and Textbooks >High-resolution X-ray computed tomography in geosciences: A review of the current technology and applications
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High-resolution X-ray computed tomography in geosciences: A review of the current technology and applications

机译:地质科学中的高分辨率X射线计算机断层扫描:对当前技术和应用的回顾

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摘要

High-resolution X-ray Computed Tomography (HRXCT) or micro-CT (μCT) is a frequently used non-destructive 3D imaging and analysis technique for the investigation of internal structures of a large variety of objects, including geomaterials. Although the possibilities of X-ray micro-CT are becoming better appreciated in earth science research, the demands on this technique are also approaching certain physical limitations. As such, there remains a lot of research to be done in order to solve all the technical problems that occur when higher demands are put on the technique. In this paper, a review of the principle, the advantages and limitations of X-ray CT itself are presented, together with an overview of some current applications of micro-CT in geosciences. One of the main advantages of this technique is the fact that it is a non-destructive characterization technique which allows 4D monitoring of internal structural changes at resolutions down to a few hundred nanometres. Limitations of this technique are the operator dependency for the 3D image analysis from the reconstructed data, the discretization effects and possible imaging artefacts. Driven by the technological and computational progress, the technique is continuously growing as an analysis tool in geosciences and is becoming one of the standard techniques, as is shown by the large and still increasing number of publications in this research area. It is foreseen that this number will continue to rise, and micro-CT will become an indispensable technique in the field of geosciences.
机译:高分辨率X射线计算机断层扫描(HRXCT)或微型CT(μCT)是一种用于研究多种物体(包括土工材料)内部结构的无损3D成像和分析技术。尽管X射线微型CT的可能性在地球科学研究中得到了越来越多的重视,但是对此技术的要求也正在接近某些物理限制。因此,为了解决对技术提出更高要求时出现的所有技术问题,还有许多工作要做。本文介绍了X射线CT本身的原理,优点和局限性,并概述了微CT在地球科学中的一些当前应用。该技术的主要优点之一是它是一种非破坏性的表征技术,它允许以低至数百纳米的分辨率对内部结构变化进行4D监控。该技术的局限性在于,根据重构数据进行3D图像分析的操作者依赖性,离散化效果和可能的成像伪像。在技​​术和计算进步的推动下,该技术作为地球科学中的一种分析工具正在不断发展,并已成为标准技术之一,这一领域的出版物数量仍在不断增加。可以预见的是,这个数字将继续增加,微型CT将成为地球科学领域必不可少的技术。

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