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Abstract

Summary

This research includes an investigation of sand production behaviour among different experimental conditions in the macro-scale sample. Experiments were carried out in the specifically designed HPCS and further analysed with a Computer Tomograph. CT scan results for the intact and multi-phase flow experiment specimens are included. During the experimental process, channelling was observed, which requires further investigation. The observed channelling collocates with the numerical model results obtained in the research group.

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/content/papers/10.3997/2214-4609.202472064
2024-05-13
2025-12-12
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References

  1. [1]Mahbub, A. A., & Haque, A. (2016). X-ray computed tomography imaging of the microstructure of sand particles subjected to high pressure one-dimensional compression.Materials, 9(11), 1–17. [890]. https://doi.org/10.3390/ma9110890
    [Google Scholar]
  2. [2]Santos, J.B., Barroso, E.V., Vargas, E.A., Castro, J.T., Gonçalves, C., and E.Campos. “Studies of Mechanisms Associated With Sand Production Using X Ray CT Scan In Real Time.” Paper presented at the 11th ISRM Congress, Lisbon, Portugal, July 2007.
    [Google Scholar]
  3. [3]Santos, J., Vargas, E., Barroso, E., Castro, J., Gonçalves, C., and Campos, E.: Studies of mechanisms associated with sand production using X-ray CT scan, in: Advances in X-ray Tomography for Geomaterials, edited by: Desrues, J., Viggiani, G., and Besuelle, P., ISTE Ltd., London, UK, 199–205, 2010.
    [Google Scholar]
  4. [4]Tremblay, Bernard, Sedgwick, George, and DonVu. “CT Imaging of Wormhole Growth Under Solution-Gas Drive.” SPE Res Eval & Eng2 (1999): 37–45. doi:https://doi.org/10.2118/54658-PA
    [Google Scholar]
  5. [5]https://radio-med.ru/makers/kt/64-sreznyie-kt/kompyuternyy-tomograf-siemens-definition-as-64/
  6. [6]KozhagulovaA et al., ShabdirovaA., MinhN.H., ZhaoY.An integrated laboratory experiment of realistic diagenesis, perforation and sand production using a large artificial sandstone specimen, Journal of Rock Mechanics and Geotechnical Engineering, https://doi.org/10.1016/j.jrmge.2020.09.004
    [Google Scholar]
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