000 01752nab a2200193 4500
005 20260520001747.0
008 260224s2009 xxu
100 1 _aJaeger, P.
_941076
100 1 _aPietsch, A.
_941077
245 0 0 _aCharacterization of reservoir systems at elevated pressure
260 _cfeb. 2009
270 _a06/05/2009 ; 06/05/2009
300 _a4 p. ; 20-24
520 _aTranscripción del resúmen publicado por el autor: The efficiency in enhanced oil recovery strongly depends on interphase behaviour of the participating fluids and solids. Analysis is carried out using experimental techniques for recording contact angles and interfacial tension at elevated pressure and relating these data by use of known approaches from literature. Even in fairly incompressible liquid-liquid-solid systems the solid-liquid interfacial energies are shown to change at rising pressure. Combination of measured contact angles of a ternary water-n-alkane-dolomite system with those of the respective binary systems enables estimation of surface and interfacial energies of rock surfaces. In the presence of gases, especially methane, the water-n-alkane interfacial tension as well as the contact angle of a (non-wetting) water drop on dolomite in n-alkane is decreased which is only possible if the interfacial energy of n-alkane-dolomite rises based on Young's law. In a water-wet system, wetting by water was also observed to improve under pressure which is attributed to a decreasing water-rock interfacial energy since the water-oil interfacial tension is increased at the same time.
581 _a1-4
773 0 _tJournal of Petroleum Science & Engineering
_g64
942 _cARTICULO
999 _c169684
_d169684