Page 325 - Origin and Prediction of Abnormal Formation Pressures
P. 325

294                                  H.H. RIEKE, G.V. CHILINGAR AND J.O. ROBERTSON JR.

              permeability  in  accretionary prisms.  In:  J.  Parnell  (Ed.),  Geofluids:  Origin,  Migration  and Evolution  of
              Fluids in Sedimentary Basins. The Geological Society, London, pp.  113-125.
            Stoessell,  R.K.  and  Moore,  C.H.,  1983.  Chemical  constraints  and  origins  of  four  groups  of  Gulf  Coast
              reservoir fluids.  Bull. Am. Assoc.  Pet. Geol., 67:  896-906.
            Sulin,  V.A.,  1946.  Waters  of  Petroleum  Formations  in  the  System  of  Nature  Waters.  Gostoptekhizdat,
              Moscow, 96 pp.  (in Russian).
            Timm, B.C.  and Maricelli, J.J.,  1953.  Formation waters in southwest Louisiana. Bull. Am. Assoc.  Pet. Geol.,
              37:  394-409.
            Van  Olphen,  H.,  1963. Compaction  of clay  sediments  in  the  range  of molecular  particle  distances.  Clays
              Clay Miner.,  13:  178-187.
            Verwey,  E.J.W.  and  Overbeek,  J.Th.G.,  1948.  Theory  of  the  Stability  of  Lyophobic  Colloids   The
              Interaction of Soil Particles Having a Double Layer.  Elsevier, Amsterdam,  199 pp.
            Von Engelhardt, W. and Gaida,  K.H.,  1963. Concentration changes of pore solutions during the compaction
              of clay sediments. J.  Sediment.  Petrol.,  33: 919-930.
            Vorabutr,  EA.,  Almubarak, N., Razavi, J., Mohseni,  A.A.,  Chilingarian, G.V. and Yen, T.E,  1986. Prediction
              of  abnormal  formation  pressures  from  salinity  of  solutions  obtained  on  leaching  shale  cuttings.  Energy
              Sources,  8(2/3): 289-290.
            Warner,  D.L.,  1964. An Analysis  of the Influence of Physical-Chemical  Factors  Upon  the  Consolidation  of
              Fine-Grained Clastic Sediments.  Ph.D.  Dissertation, University of California, Berkeley, CA,  136 pp.
            Washburne, C.W.,  1914. Chlorides in oil-field waters. Am.  Inst.  Min.  Eng.  Trans., 48: 687-693.
            White, D.E.,  1957. Magmatic, connate, and metamorphic waters.  Geol.  Soc. Am.  Bull., 68:  1659-1682.
            Wijeyesekera,  D.C.  and  de  Freitas,  M.H.,  1976. High-pressure  consolidation  of  kaolinitic  clay.  Bull.  Am.
              Assoc.  Pet. Geol., 60(2):  293-298.
            Williams,  L.B.,  Hervig,  R.L.,  Holloway, J.R.  and  Hutcheon,  I.,  2001.  Boron  isotope  geochemistry during
              diagenesis.  Part  1.  Experimental  determination  of  fractionation  during  illitization of  smectite.  Geochim.
              Cosmochim.  Acta, 65:  1769-1782.
            Wolf, K.H.  and Chilingarian, G.V., 1992. Diagenesis,  III. Elsevier, Amsterdam,  674 pp.
            Yeh,  H.-W.,  1980. D/H  ratios  and  late-stage  dehydration  of  shales  during  burial.  Geochim.  Cosmochim.
              Acta, 44:  341-352.
            Yeh,  H.-W.  and  Savin,  S.M.,  1977.  Mechanism  of  burial  metamorphism  of  argillaceous  sediments:  3.
              O-isotope evidence.  Geol.  Soc. Am.  Bull.,  88(9):  1321-1330.
            You, C.E,  Spivack, A.J.,  Gieskes,  J.M.,  Martin, J.B.  and Davisson,  M.L.,  1996. Boron contents and isotopic
              compositions  in pore waters:  A  new approach to determine temperature  induced artifacts --  geochemical
              implications. Mar. Geol.,  129: 351-361.
   320   321   322   323   324   325   326   327   328   329   330