TY - GEN
T1 - Seismic attribute-based characterization of a tight gas sand reservoir in the Ordos Basin, China
AU - Wang, Zhiguo
AU - Gao, Jinghuai
AU - Zhang, Bing
AU - Wang, Daxing
N1 - Publisher Copyright:
© 2014 SEG.
PY - 2014
Y1 - 2014
N2 - The Xiashihezi Formation of the Ordos basin is the largest producer of tight gas sand in China. Production patterns vary from one well to another throughout the basin. In this study, we integrated three-dimensional (3-D) seismic and well data to investigate geological controls on production in P1h8 member of Xiashihezi Formation. Our objective was to show the potential of using multiple seismic attributes to characterize the distribution and orientation of tight gas sand. We used the amplitude, the complex traces, the spectral components, and the seismic attenuation attributes derived from 3-D seismic volume to detect gas-bearing sand that might be associated with zones of production. Production data show that higher producing wells are associated with seismically definable larger amplitude, more stable phase, higher frequency, and stronger attenuation features in the study area. Our comprehensive result suggests that 3-D seismic data, integrated with wire-line logs and production data, are useful for characterizing tight gas sand reservoirs.
AB - The Xiashihezi Formation of the Ordos basin is the largest producer of tight gas sand in China. Production patterns vary from one well to another throughout the basin. In this study, we integrated three-dimensional (3-D) seismic and well data to investigate geological controls on production in P1h8 member of Xiashihezi Formation. Our objective was to show the potential of using multiple seismic attributes to characterize the distribution and orientation of tight gas sand. We used the amplitude, the complex traces, the spectral components, and the seismic attenuation attributes derived from 3-D seismic volume to detect gas-bearing sand that might be associated with zones of production. Production data show that higher producing wells are associated with seismically definable larger amplitude, more stable phase, higher frequency, and stronger attenuation features in the study area. Our comprehensive result suggests that 3-D seismic data, integrated with wire-line logs and production data, are useful for characterizing tight gas sand reservoirs.
UR - https://www.scopus.com/pages/publications/85051467397
U2 - 10.1190/segam2014-0079.1
DO - 10.1190/segam2014-0079.1
M3 - 会议稿件
AN - SCOPUS:85051467397
SN - 9781634394857
T3 - Society of Exploration Geophysicists International Exposition and 84th Annual Meeting SEG 2014
SP - 3065
EP - 3069
BT - Society of Exploration Geophysicists International Exposition and 84th Annual Meeting SEG 2014
PB - Society of Exploration Geophysicists
T2 - Society of Exploration Geophysicists International Exposition and 84th Annual Meeting SEG 2014
Y2 - 26 October 2014 through 31 October 2014
ER -