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X-ray fast tomography and its applications in dynamical phenomena studies in geosciences at Advanced Photon Source

机译:X射线快速断层扫描及其在高级光子源地质动态现象研究中的动态现象研究

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State-of-art synchrotron radiation based micro-computed tomography provides high spatial and temporal resolution. This matches the needs of many research problems in geosciences. In this letter we report the current capabilities in microtomography at sector 2BM at the Advanced Photon Source (APS) of Argonne National Laboratory. The beamline is well suited to routinely acquire three-dimensional data of excellent quality with sub-micron resolution. Fast cameras in combination with a polychromatic beam allow time-lapse experiments with temporal resolutions of down to 200 ms. Data processing utilizes quantitative phase retrieval to optimize contrast in phase contrast tomographic data. The combination of these capabilities with purpose-designed experimental cells allows for a wide range of dynamic studies on geoscientific topics, two of which are summarized here. In the near future, new experimental cells capable of simulating conditions in most geological reservoirs will be available for general use. Ultimately, these advances will be matched by a new wide-field imaging beam line, which will be constructed as part of the APS upgrade. It is expected that even faster tomography with larger field of view can be conducted at this beam line, creating new opportunities for geoscientific studies.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:状态的最先进的同步加速器辐射基于微计算机断层摄影提供高空间和时间分辨率。这符合在地球科学许多研究问题的需要。在这封信中,我们报告的微断层的部门2BM在阿贡国家实验室的先进光子源(APS)的现有能力。束线非常适合于常规获得的优良的品质具有亚微米分辨率的三维数据。快速照相机中带多色光束组合允许与下降到200毫秒的时间分辨率的时间推移的实验。数据处理利用定量的相位恢复到在相衬断层数据优化对比度。这些功能与目的设计的实验细胞相结合,可广泛地学上的动态专题研究,其中两个是这里总结的。在不久的将来,能够在大多数地质储层模拟条件下的新的实验细胞将用于一般用途。最终,这些进步将被新的宽视场成像束线,这将被构造为APS升级的一部分相匹配。预计更快较大的视场断层可以在这个束线进行,创造了地学研究的新机遇。©图片,光学仪器工程师(2012)著作权协会(SPIE)。仅供个人使用的摘要下载。

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