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Application of Spectral Decomposition to Detection of Fracture-Cavity Carbonate Reservoir Beds in the Tahe OUfield,Tarim Basin,NW China 被引量:1

Application of Spectral Decomposition to Detection of Fracture-Cavity Carbonate Reservoir Beds in the Tahe OUfield,Tarim Basin,NW China
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摘要 Ordovician fracture-cavity carbonate reservoir beds are the major type of producing formations in the Tahe oilfield, Tarim Basin. The seismic responses of these beds clearly changes depending on the different distance of the fracture-cavity reservoir bed from the top of the section. The seismic reflection becomes weak or is absent when the fracture-cavity reservoir beds are less than 20 ms below the top Ordovician. The effect on top Ordovician reflection became weaker with deeper burial of fracture-cavity reservoir beds but the developed deep fracture-cavity reservoir beds caused stronger reflection in the interior of the Ordovician. This interior reflection can be divided into strong long-axis, irregular and bead string reflections, and was present 80 ms below the top Ordovician. Aimed at understanding reflection characteristics, the spectral decomposition technique, which uses frequency to "tune-in" bed thickness, was used to predict Ordovician fracture-cavity carbonate formations in the Tahe oilfield. Through finely adjusting the processing parameters of spectral decomposition, it was found that the slice at 30 Hz of the tuned data cube can best represent reservoir bed development. Two large N-S-trending strong reflection belts in the mid-western part of the study area along wells TK440- TK427-TK417B and in the eastern part along wells TK404-TK409 were observed distinctly on the 30 Hz slice and 4-D time-frequency data cube carving. A small N-S trending reflection belt in the southern part along wells T403-TK446B was also clearly identified. The predicted reservoir bed development area coincides with the fracture-cavities connection area confirmed by drilling pressure testing results. Deep karst cavities occur basically in three reservoir bed-development belts identified by the Ordovician interior strong reflection. Spectral decomposition proved to be a useful technique in identifying fracture-cavity reservoir beds. Ordovician fracture-cavity carbonate reservoir beds are the major type of producing formations in the Tahe oilfield, Tarim Basin. The seismic responses of these beds clearly changes depending on the different distance of the fracture-cavity reservoir bed from the top of the section. The seismic reflection becomes weak or is absent when the fracture-cavity reservoir beds are less than 20 ms below the top Ordovician. The effect on top Ordovician reflection became weaker with deeper burial of fracture-cavity reservoir beds but the developed deep fracture-cavity reservoir beds caused stronger reflection in the interior of the Ordovician. This interior reflection can be divided into strong long-axis, irregular and bead string reflections, and was present 80 ms below the top Ordovician. Aimed at understanding reflection characteristics, the spectral decomposition technique, which uses frequency to "tune-in" bed thickness, was used to predict Ordovician fracture-cavity carbonate formations in the Tahe oilfield. Through finely adjusting the processing parameters of spectral decomposition, it was found that the slice at 30 Hz of the tuned data cube can best represent reservoir bed development. Two large N-S-trending strong reflection belts in the mid-western part of the study area along wells TK440- TK427-TK417B and in the eastern part along wells TK404-TK409 were observed distinctly on the 30 Hz slice and 4-D time-frequency data cube carving. A small N-S trending reflection belt in the southern part along wells T403-TK446B was also clearly identified. The predicted reservoir bed development area coincides with the fracture-cavities connection area confirmed by drilling pressure testing results. Deep karst cavities occur basically in three reservoir bed-development belts identified by the Ordovician interior strong reflection. Spectral decomposition proved to be a useful technique in identifying fracture-cavity reservoir beds.
出处 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2008年第3期530-536,共7页 地质学报(英文版)
关键词 Seismic response tuning cube 4-D time-frequency data cube fracture-cavity reservoir bed Ordovician carbonate Tahe oilfield Xinjiang Seismic response, tuning cube, 4-D time-frequency data cube, fracture-cavity reservoir bed, Ordovician carbonate, Tahe oilfield, Xinjiang
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  • 1童亨茂,钱祥麟.储层裂缝的研究和分析方法[J].石油大学学报(自然科学版),1994,18(6):14-20. 被引量:49
  • 2李庆忠.走向精确勘探的道路[M].石油工业出版社,1994..
  • 3何发歧 韩振华 等.裂缝碳酸盐勘探开发和盐下地震成像技术[J].石油物探译丛,2000,:3-33.
  • 4[4]何发歧.塔里木盆地北部碳酸盐岩油气田.北京:中国地质大学出版社,2002
  • 5JamesNP ChoquettePW 胡文海.古岩溶[M].北京:石油工业出版社,1992..
  • 6李庆忠.走向精确勘探的道路[M].北京:石油工业出版社,1993..
  • 7宋惠珍 贾承造 欧阳建.裂缝性储集层研究理论与方法--塔里木盆地碳酸盐岩储集层裂缝预测[M].北京:石油工业出版社,1999..
  • 8邬光辉.塔中地区奥陶系碳酸盐岩裂缝系统特征与评价[R].塔里木油田公司勘探开发研究所,1999..
  • 9Narr W.and Lerche L.A method for estimating subsurface fracture density in core.AAPG Bull.1984,68(8):637-648.
  • 10Nelson,Ronald A Geologic analysis of naturally fractured reservoirs.gulf publish company,1985.

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