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356    Reservoir Engineering


                   262. Ramsay, H. J.,  Jr.,  and Guerrero, E.  T.,  “The Ability of  Rate-Time Decline
                        Curves to Predict Production Rates,”J. Pet.  Tech. (Feb. 1969), pp.  139-141.
                   263.  Russell, D.  G.,  and  Prats,  M.,  “Performance of  Layered Reservoirs with
                        Crossflow-Single-Compressible-Fluid Case,” Soc.  Pet. Eng. J.  (March  1962),
                        pp. 53-67.
                   264.  Russell, D.  G., and Prats, M.,  “The Practical Aspects of Interlayer Crossflow,”
                       J. Pet  Tech. @ne  1962), pp. 589-594.
                   265. Poston, S.  W.,  and  Blasingame, T.  A.,  ‘Microcomputer  Applications to
                        Decline Curve Analysis,” Geobyte (Summer 1986), pp. 64-73.
                   266. Gentry, R.  W.,  “Decline-Curve Analysis,”J. Pet.  Tech. (Jan. 1972), pp. 3841.
                   267.  Fetkovich, M. J., “Decline Curve Analysis  Using Type Curves” J. Pet.  Tech.
                        (June 1980), pp.  1065-1077.
                   268.  Fetkovich, M. J., et al.,  ‘Decline  Curve Analysis  Using Type Curves: Case
                        Histories,” paper SPE  13169 presented at the SPE  1984 Annual Technical
                        Conf. & Exhib., Houston, Sept. 16-19.

                   Reserve Estimates

                   269. “Society Adopts  Proved  Reserves Definitions,” J.  Pet.  Tech.  (Nov.  1981),
                        pp. 2113-2114.
                   270. “Reserve Definitions Appoved,” J. Pet.  Tech. (May 1987), pp.  576-578.
                   271.  Guidelines for Application of  the  Definitions for  Oil  and  Gas  Reserves,
                        Monograph 1, the Society of Petroleum Evaluation Engineers, Houston (1988).
                   272.  Garb, F.  A.,  “Oil and Gas  Reserves, Classification, Estimation and Evalua-
                        tion,”  J. Pet.  Tech. (March 1985), pp. 373-390.
                   273.  Crichlow, H. B., Mob Reservoir Engineering-A  Simulation Approach, Prentice
                        Hall, Inc., New Jersey (1977).
                   274.  Hudson, E. J., and Neuse, S. H.,  “Cutting Through the Mystery of Reserve
                        Estimates,” Oil €3 GasJ.  (March 25, 1985), pp.  103-106.
                   275.  Hudson, E. J., and Neuse, S. H.,  ‘Depletion Stage Determines Most Effective
                        Methods  for  Reserve-Estimate Integrity,” Oil  & Gas J.  (April  1, 1985),
                        pp.  80-91.
                   Secondary  Recovery

                   Fluid  Movement In Waterflooded Reservoirs
                   276. Langnes, G. L., Robertson, J. O., Jr., and Chilingar, G. V.,  Secondary ficmmy
                        and Carbonate Reservoirs, American Elsevier Publishing Co., New York  (1972).
                   277.  Improved  Oil Recovery, Interstate Oil Compact Commission, Oklahoma City
                        (March 1983).
                   278.  Willhite, G.  P.,  WaterfZooding, SPE, Richardson, TX (1986).
                   279.  Singh, S. P.,  and  Kiel,  0. G.,  “Waterflood Design  (Pattern, Rate, and
                        Timing),” paper SPE 10024 presented at the SPE  1982 Intl. Pet. Exhibition
                        & Tech.  Symposium, Bejing, China, March  18-26.
                   280.  Muskat, M.,  and Wyckoff, R.  D.,  “A Theoretical Analysis of  Waterflooding
                        Networks,” Trans., AIME, Vol.  107 (1934), pp.  62-76.
                   281.  Dyes,  A.  B.,  Caudle, B. H.,  and  Erickson, R.  A.,  ‘Oil  Production After
                        Breakthrough-As  Influenced by  Mobility Ratio,” Trans., AIME,  Vol.  201
                        (1954),  pp.  81-86.
                   282.  Craig, F.  F., Jr., Geffen, T.  M.,  and Morse, R. A.,  “Oil Recovery Performance
                        of Pattern Gas or Water Injection Operations from Model Tests,”J. Pa. Tech.
                        (Jan. 1955), pp.  7-15; Tmns., AIME, Vol.  204.
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