Ausgewählte Veröffentlichungen zur Petrophysik
- Archie, G. E. (1942), The electrical resistivity log as an aid in determining some reservoir characteristics, Trans. AIMe 146(99), 54–62.
- Cole, K. S. & Cole, R. H. (1941), Dispersion and absorption in dielectrics I. Alternating current characteristics, The Journal of Chemical Physics 9, 341.
- Hupfer, S. (2014), Systematische Untersuchungen zum komplexen elektrischen Widerstand an mineral-Quarzsand-Gemischen, MSc. Thesis, University Potsdam.
- Hupfer, S., Martin, T., Weller, A., Günther, T., Kuhn, K., Ngninjio, V.D.N., Noell, U. (2015), Polarization effects of unconsolidated sulphide-sand-mixtures. Journal of Applied Geophysics, doi: 10.1016/j.jappgeo.2015.12.003.
- Keating, K., Knight, R., Tufano, K. J. (2008), Nuclear magnetic resonance relaxation measurements as a means of monitoring iron mineralization processes, Geophysical Research Letters 35, L19405, doi: 10.1029/2008GL035225.
- Kenyon, W. E. (1997), Petrophysical principles of applications of NMR logging, The Log Analyst, 38 (2), 21–43.
- Knight, R., Walsh, D.O., Bulter Jr., J. J., Grunewald, E., Liu, G., Parsekian, A. D., Reboulet, E. C., Knobble, S., Barrows, M. (2015), NMR Logging to Estimate Hydraulic Conductivity in Unconsolidated Aquifers, Groundwater, 54(1):104-14, doi: 10.1111/gwat.12324.
- Mohnke, O. & Yaramanci, U. (2008), Pore size distributions and hydraulic conductivities of rocks derived from magnetic resonance sounding relaxation data using multi-exponential decay time inversion Journal of Applied Geophysics 66:73–81.
- Pelton, W., Ward, S., Hallof, P., Sill, W. & Nelson, P. H. (1978), Mineral discrimination and removal of inductive coupling with multifrequency IP, Geophysics 43(3), 588–609.
- Schön, J. (1996), Physical properties of rocks: fundamentals and principles of petrophysics, Oxford, UK: Pergamon.
- Seevers, D. (1966), A nuclear magnetic method for determining the permeability of sandstones, Society of Professional Well Log Analysts Transactions, Paper L, 14 pp.
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