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Consecutive short-scan CT for geological structure analog models with large size on in-situ stage

  • Min Yang
  • , Wen Zhang
  • , Xiaojun Wu
  • , Dongtao Wei
  • , Yixin Zhao
  • , Gang Zhao
  • , Xu Han
  • , Shunli Zhang
  • Beihang University
  • Nanjing University
  • China National Petroleum Corporation
  • China University of Mining & Technology, Beijing
  • Northwest University China

科研成果: 期刊稿件文章同行评审

摘要

For the analysis of interior geometry and property changes of a large-sized analog model during a loading or other medium (water or oil) injection process with a non-destructive way, a consecutive X-ray computed tomography (XCT) short-scan method is developed to realize an in-situ tomography imaging. With this method, the X-ray tube and detector rotate 270° around the center of the guide rail synchronously by switching positive and negative directions alternately on the way of translation until all the needed cross-sectional slices are obtained. Compared with traditional industrial XCTs, this method well solves the winding problems of high voltage cables and oil cooling service pipes during the course of rotation, also promotes the convenience of the installation of high voltage generator and cooling system. Furthermore, hardware costs are also significantly decreased. This kind of scanner has higher spatial resolution and penetrating ability than medical XCTs. To obtain an effective sinogram which matches rotation angles accurately, a structural similarity based method is applied to elimination of invalid projection data which do not contribute to the image reconstruction. Finally, on the basis of geometrical symmetry property of fan-beam CT scanning, a whole sinogram filling a full 360° range is produced and a standard filtered back-projection (FBP) algorithm is performed to reconstruct artifacts-free images.

源语言英语
文章编号e0161358
期刊PLOS ONE
11
8
DOI
出版状态已出版 - 8月 2016

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