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《Journal of Southwest Petroleum Institute》 2006-03
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THE FEASIBILITY OF SMALL FAULT BLOCK CELL OIL RESERVOIR SINGLE WELL CO_2 HUFF AND PUFF RESEARCH

ZHANG Guo-qiang( State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation·Southwest Petroleum University,Chengdu Sichuan 610500,China),SUN Lei,SUN Liang-tian,et al.  
It is difficult for complicated small fault block oil reservoir unit by many faults to commercial-scale operation by water injection because of communication difference among wells, boundary seal, producing energy finite, producing energy falling soon during exploitation. It may be a kind of powerful method with CO2 huff and puff forced production to this kind of reservoir. Thus aiming at these complicated small fault block oil reservoir characteristic of geology and exploitation, on a basis of phase state analyses to the actual fluid of the oil well, by carrying out CO2 swelling experiment, drive mechanism of CO2 huff and puff is confirmed. And by CO2 huff and puff long core drive experiment, oil increasing production degree and time phase are confirmed. Under that foundation geologic model and numerical simulation model of single well CO2 huff and puff are established aiming at actual small fault block oil reservoir. After carrying out fitting to producing history before gas injection, sensitivity analyses are carried out of operation parameters during CO2 huff and puff forced production, it has been stress reviewed the influence of in- jection occasion and cycle injection rate to effect of increasing production of small fault block oil reservoir unit, saturation and pressure distributing of different injection occasion are analyzed. Thereby effective and optimal operation parameters of small fault block cell oil reservoir single well CO2 huff and puff forced production are derived, and systemic indoor integrative evaluation method is supplied for project design of small fault block cell oil reservoir single oil well CO2 huff and puff.
【Fund】: “油气藏地质及开发工程”国家重点实验室基金项目(PLN O118)资助。
【CateGory Index】: TE357.4
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