X-ray Computed Tomography for Studying Solute Transport in Soils
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Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-12176-0_7
Reference66 articles.
1. Anderson, S., Heinze, D., & Peyton, R. (2014). Computed tomography-estimated transport velocity and chemical dispersivity in undisturbed geomedia. Procedia Computer Science, 36, 643–648.
2. Anderson, S., Heinze, D., & Peyton, R. (2015a). Assessment of selected methods for estimating chemical transport parameters from computed tomographic imaging. Procedia Computer Science, 61, 460–465.
3. Anderson, S., Holmes, J., & Peyton, R. J. P. C. S. (2015b). Tomography-measured spatial distributions of non-aqueous phase liquids in porous. Procedia Computer Science, 61, 466–471.
4. Anderson, S., Peyton, R., Wigger, J., & Gantzer, C. J. J. G. (1992). Influence of aggregate size on solute transport as measured using computed tomography. Geoderma, 53(3-4), 387–398.
5. Anderson, S., Wang, H., Peyton, R., & Gantzer, C. J. G. S. (2003). Estimation of porosity and hydraulic conductivity from X-ray CT-measured solute breakthrough. Geological Society, 215(1), 135–149.
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