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基于最大熵准则的Wigner-Ville分布与微型古河道刻画方法及应用 被引量:2
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作者 徐天吉 程冰洁 +2 位作者 牛双晨 秦正晔 王贞贞 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2021年第6期1175-1186,共12页
针对窄细古河道精细刻画难题,利用最大熵准则增强Wigner-Ville分布的聚焦特性,在有效提升地震信号时频分辨能力的基础上,建立了一种微型古河道识别新方法。基于最大熵功率谱与自回归模型(AR)功率谱等效的原理,首先利用Burg算法和Levinso... 针对窄细古河道精细刻画难题,利用最大熵准则增强Wigner-Ville分布的聚焦特性,在有效提升地震信号时频分辨能力的基础上,建立了一种微型古河道识别新方法。基于最大熵功率谱与自回归模型(AR)功率谱等效的原理,首先利用Burg算法和Levinson-Durbin递推规则,求取AR模型的预测误差、自回归系数等参数;然后,在自相关函数一阶导数为0的条件下,计算地震信号的Wigner-Ville分布,获取微型古河道最大熵准则约束下的Wigner-Ville时频功率谱(MEWVD)。通过仿真地震信号和窄薄模型数值模拟信号实验分析,发现MEWVD既能有效避免Wigner-Ville分布的交叉项干扰,还能获得比短时傅里叶变换(STFT)、连续小波变换(CWT)等信号分析方法更加精准的频谱特征;同时,还证实了利用不同频率的MEWVD,可以有效识别不同尺度的窄细古河道。将该方法应用于四川盆地中江气田侏罗系沙溪庙组(J_(2)s_(3)^(3-2)小层)气藏,准确地识别出宽度小于500 m、砂岩厚度小于35 m的窄细古河道的宽度、走向等空间信息,可为井位部署、水平井压裂选段等提供依据。 展开更多
关键词 最大熵准则 WIGNER-VILLE分布 频谱聚焦性 高分辨 地震 河流相 窄细古河道
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A microscopic ancient river channel identification method based on maximum entropy principle and Wigner-Ville Distribution and its application
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作者 XU Tianji CHENG Bingjie +2 位作者 NIU Shuangchen qin zhengye WANG Zhenzhen 《Petroleum Exploration and Development》 CSCD 2021年第6期1354-1366,共13页
In view of the problem of fine characterization of narrow and thin channels,the maximum entropy criterion is used to enhance the focusing characteristics of Wigner-Ville Distribution.On the basis of effectively improv... In view of the problem of fine characterization of narrow and thin channels,the maximum entropy criterion is used to enhance the focusing characteristics of Wigner-Ville Distribution.On the basis of effectively improving the time-frequency resolution of seismic signal,a new method of microscopic ancient river channel identification is established.Based on the principle of the equivalence between the maximum entropy power spectrum and the AR model power spectrum,the prediction error and the autoregression coefficient of AR model are obtained using the Burg algorithm and Levinson-Durbin recurrence rule.Under the condition of the first derivative of autocorrelation function being 0,the Wigner-Ville Distribution of seismic signal is calculated,and the Wigner-Ville Distribution time-frequency power spectrum(MEWVD)is obtained under the maxi-mum entropy criterion of the microscopic ancient river channel.Through analysis of emulational seismic signal and forward numerical simulation signal of narrow thin model,it is found that MEWVD can effectively avoid the interference of cross term of Wigner-Ville Distribution,and obtain more accurate spectral characteristics than STFT and CWT signal analysis methods.It is also proved that the narrow and thin river channels of different scales can be identified effectively by MEWVD of different frequencies.The method is applied to the third member of Jurassic Shaximiao Formation(J2s33-2)gas reservoir of the Zhongji-ang gas field in Sichuan Basin.The spatial information of width and direction of narrow and thin river channels with width less than 500 m and sandstone thickness less than 35 m is accurately identified,providing bases for well deployment and horizontal well fracturing section selection. 展开更多
关键词 maximum entropy principle Wigner-Ville Distribution spectral focusing high resolution SEISMIC fluvial facies narrow and thin ancient channel
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