Research Progress in Calculation Methods for Single-Well Dynamic Reserves of Gas Reservoirs

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Abstract:

Dynamic reserves are the important basis for determining the reasonable deliverability of gas wells and well spacing density and also the foundation for the overall development plan of a gas field. Therefore, the evaluation of dynamic reserves of gas wells is crucially important to developing gas fields with high efficiency, optimizing well pattern and shortening development period. For this reason, this paper arranges and analyzes systematically a series of calculation methods for dynamic reserves of single gas well, which have arisen in recent years, and identifies the calculation methods for different types of gas reservoirs.

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Advanced Materials Research (Volumes 1044-1045)

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401-405

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October 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] POSTONSW, BERGRR. Over-pressured gas reservoirs [M]. Texas, U.S.A.: Society of Petroleum Engineers, Inc. Richardson, (1997).

Google Scholar

[2] MATTARL, ANDERSOND. M. A Systematic and comprehensive methodology for advanced analysis of production data [C] SPE Annual Technical Conference and Exhibition. Denver, Colorado: SPE, (2003).

Google Scholar

[3] ANDERSOND, MATTARL. Practical diagnostics using production data and flowing pressures [C] SPEAnnual Technical Conference and Exhibition. Houston, Texas: SPE, (2004).

Google Scholar

[4] CHENYUANQIAN, DONGNINGYU. New Deriving Method Material for Balance Equation of Gas and Gas-Condensate Reservoirs[J]. Fault-Block Oil and Gas Field, 1999, 6(5).

Google Scholar

[5] J. C. Palacio, T.A. Blasingame. Decline-curve analysis using type curves-analysis of gas well production data [J]. SPE 25909: 11-13.

DOI: 10.2118/25909-ms

Google Scholar

[6] L. Mattar, D. Anderson. Dynamic material balance (Oil or gas in place without shut-ins) [J].Petroleum Society's 6th Canadian International Petroleum Conference ( 56th Annual TechnicalMeeting),Calgary,Alberta,Canada, 2005, 6: 5-6.

DOI: 10.2118/2005-113

Google Scholar

[7] HAO YUHONG,XU MIN. Accurately calculating dynamic reserves of low-permeability gas reservoir [J]. Petroleum Exploration and Development, 2002, 29(5): 66-68.

Google Scholar

[8] Matter L, McNeil R . The Flowing, Gas Material Balance[J]. JCPT, 1998(2): 52-55.

Google Scholar

[9] FetkovichM J. Decline curve analysis u sing type curves [J]. JPT, 1980, 32(6): 1065-1077.

Google Scholar

[10] Blasingame T A, McCray T L, LeeW J. Decline curve analysis forvariable pressure drop variable flow rate system s[C]. SPE 21513, (1991).

DOI: 10.2118/21513-ms

Google Scholar

[11] Blasingame T A, Johnston J L, LeeW J. Type-curve analysis using the pressure integralmethod[C]. SPE 18799, (1989).

Google Scholar

[12] Agarwal R G, Gardner D C, Klein steiber SW, eta. l Analyzing wellproduct ion data using combined type curve and decline curve concepts[J]. SPE 57916, (1998).

DOI: 10.2118/49222-ms

Google Scholar

[13] LIANG BIN, ZHANG LIEHUI, LI MIN. Applicable condition of production decline automatic fitting method research [J]. Journal of Southwest Petroleum University, 2007, 29 (3): 66-70.

Google Scholar

[14] LI XIAOPING, LI YUN, ZHANG LIEHUI. Theory and Application of Production Decline Analysis for Gas Wells in Water-drive Gas Reservoirs [J]. Natural Gas Industry, 2004, 24 (11): 92 - 93.

Google Scholar

[15] YAO JUN, HOU LIQUN, LI AIFEN. Research and application on production decline rule of closed carbonate reservoir with natural fractures[J]. Petroleum Geology and Recovery Efficiency, 2005, 12(1): 56-58.

Google Scholar

[16] LI YOUQUAN. Application of well test technology to buried-hill oil reservoir evaluation[J]. Petroleum Geology and Recovery Efficiency, 2004, 11(4): 75- 77.

Google Scholar

[17] David Anderson, Louis Mattar. Practical diagnostics using production data and flowing pressures[C]. SPE 89939, (2004).

DOI: 10.2118/89939-ms

Google Scholar

[18] Mattar L, Anderson D M. A systematic and comprehensive methodology for advanced analysis of production data[C]. SPE 84472, (2003).

Google Scholar