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时频重排方法在川西坳陷须家河组地震含气性检测中的应用 被引量:2

Time-Frequency Reassignment in the Study of Gas Reservoir Seismic Detection of Xujiahe Formation in West Sichuan Depression
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摘要 针对川西坳陷上三叠统须家河组储层埋深大、密度高导致地震反射信号有效频带窄、高频衰减快、主频很低的现象,研究采用重排平滑伪Wigner-Ville分布(RSPWVD)对地震信号进行频谱分析。首先采用时域和频域核函数平滑的方法,以抑制信号经Wigner-Ville分布函数频谱分析后产生的交叉项,再将能量的平均值按照区域能量的重心分配,重新安排信号在时频平面内的能量分布。对川西坳陷须家河组工区三维地震反射数据过井剖面进行RSPWVD时频分析,并与常规时频分析方法进行对比的结果表明,RSPWVD适用于地震信号的时频分析,并有利于突出时频的局部化特征和储层的微观结构,时频分辨率得到了提高。 Deep embedding depth and high density of the Upper Triassic Xujiahe reservoir of west Sichuan Depression lead to narrow effective band, fast attenuation of high-frequency and low main frequency of seismic signals. In this paper, the rearrangement smoothed pseudo-Wigner-Ville distribution (RSPWVD) is used on the seismic signal spectral analysis. First , the smoothed pseudo-Wigner-Ville distribution with core function is applied to smooth signals in time and frequency domain so that its impact of cross-terms is reduced. Then, the average energy in the time-frequency domain is redesigned according to the barycenter of regional energy in order to maintain a good time-frequency energy distribution. Finally, RSPWVD is adopted to process through-well seismic profile of 3D reflection seismic data of Xujiahe Formation of west Sichuan Depression, and compare with normal time-frequency analysis. The results show that RSPWVD has a better energy focus on the time-frequency locality and a good show of micro-structure of the reservolr.
出处 《地质科技情报》 CAS CSCD 北大核心 2008年第3期103-106,共4页 Geological Science and Technology Information
基金 中国石油化工股份有限公司项目“川西坳陷须家河组地震勘探新技术开发应用”(P05003)
关键词 重排 WIGNER-VILLE分布 时频局域性 地震信号 须家河组 川西坳陷 reassignment Wigner-Ville distribution time-frequency locality seismic signal Xujiahe Formation west Sichuan Depression
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  • 1秦启荣,苏培东,李乐,刘莉萍.川中低缓构造成因[J].新疆石油地质,2005,26(1):108-111. 被引量:24
  • 2薛大力,徐鸣洁,龚姚进,白明轩.地震分频解释技术在沈143井区储层预测中的应用[J].大庆石油地质与开发,2007,26(3):128-131. 被引量:29
  • 3Partyka G A,Gridley J M and Lopez J. Interpretational applications of spectral decomposition in reservoir characterization. The Leading Edge, 1999, 18(3) :353-360.
  • 4Burnett M D,Caslanna J Pet al. Application of spectral decomposition to gas basin in Mexico. The Lead- ing Edge,2003,22(11):1130-l134.
  • 5Castagna J P,Sun Shengjie et al. Instantaneous spectral analysis:Detection of low-frequency shadow associated with hydrocarbons. The Leading Edge, 2003, 22(2) :120-127.
  • 6Zhang Yanqing,Wei Xiaodong et al. Applying spectral decomposition to identify and interpret of small faults in the oil field QL. SPG/SEG Kunming International Geophysical Conference Technical Program Abstracts, 2006,243 - 246.
  • 7Biot M A. Theory of propagation of elastic waves in a fluid-saturate porous solid, low-frequency range. The Journal of the Acoustical Society of America, 1956, 28(2) :168-178.
  • 8Biot M A. Theory of propagation of elastic waves in a fluid-saturate porous solid, higher-frequency range. The Journal of the Acoustical Society of America, 1956,28(2) .. 179-191.
  • 9李登华,李伟,汪泽成,杨家静.川中广安气田天然气成因类型及气源分析[J].中国地质,2007,34(5):829-836. 被引量:47
  • 10Law B E. Basin-centered gas system [J]. AAPG Bul et n, 2002, 86(11):1891-1919.

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