当地震波在地层中传播时,能量的衰减是传播介质非弹性性质的反映.这种介质所固有的衰减特性通常用品质因子(Quality Factor,Q)来描述.本文基于地震波在传播过程中主频降低的衰减特性,利用质心频率偏移法(Centrold Frequency Shift,简称C...当地震波在地层中传播时,能量的衰减是传播介质非弹性性质的反映.这种介质所固有的衰减特性通常用品质因子(Quality Factor,Q)来描述.本文基于地震波在传播过程中主频降低的衰减特性,利用质心频率偏移法(Centrold Frequency Shift,简称CFS)对零偏VSP正演模型进行Q值计算,分析薄层、上下行波场、频带宽度、反演波速、震源位置等因素的影响.模型结果显示:CFS法比频谱比法、振幅衰减法能更加准确识别薄层界面,可准确反演出厚度10m的地层;上行波场的加入降低反演结果准确度,尤其对高Q值层;当有效波频带增宽时,高频部分衰减明显,Q值反演结果接近理论值;反演波速误差对反演准确性影响很大.最后,利用CFS对实际井旁地面地震资料进行Q值反演,反Q滤波后其主频由25Hz提高到35Hz,分辨率得到改善,证明了CFS方法的实用性.展开更多
The attenuation factor or quality factor(Q-factor or Q) has been used to measure the energy attenuation of seismic waves propagating in underground media. Many methods are used to estimate the Q-factor. We propose a m...The attenuation factor or quality factor(Q-factor or Q) has been used to measure the energy attenuation of seismic waves propagating in underground media. Many methods are used to estimate the Q-factor. We propose a method to calculate the Q-factor based on the prestack Q-factor inversion and the generalized S-transform. The proposed method specifies a standard primary wavelet and calculates the cumulative Q-factors; then, it finds the interlaminar Q-factors using the relation between Q and offset(QVO) and the Dix formula. The proposed method is alternative to methods that calculate interlaminar Q-factors after horizon picking. Because the frequency spectrum of each horizon can be extracted continuously on a 2D time–frequency spectrum, the method is called the continuous spectral ratio slope(CSRS) method. Compared with the other Q-inversion methods, the method offers nearly effortless computations and stability, and has mathematical and physical significance. We use numerical modeling to verify the feasibility of the method and apply it to real data from an oilfield in Ahdeb, Iraq. The results suggest that the resolution and spatial stability of the Q-profile are optimal and contain abundant interlaminar information that is extremely helpful in making lithology and fluid predictions.展开更多
文摘当地震波在地层中传播时,能量的衰减是传播介质非弹性性质的反映.这种介质所固有的衰减特性通常用品质因子(Quality Factor,Q)来描述.本文基于地震波在传播过程中主频降低的衰减特性,利用质心频率偏移法(Centrold Frequency Shift,简称CFS)对零偏VSP正演模型进行Q值计算,分析薄层、上下行波场、频带宽度、反演波速、震源位置等因素的影响.模型结果显示:CFS法比频谱比法、振幅衰减法能更加准确识别薄层界面,可准确反演出厚度10m的地层;上行波场的加入降低反演结果准确度,尤其对高Q值层;当有效波频带增宽时,高频部分衰减明显,Q值反演结果接近理论值;反演波速误差对反演准确性影响很大.最后,利用CFS对实际井旁地面地震资料进行Q值反演,反Q滤波后其主频由25Hz提高到35Hz,分辨率得到改善,证明了CFS方法的实用性.
基金supported by The National Key Research and Development Program Plane(No.2017YFC0601505)National Natural Science Foundation(No.41672325)Science&Technology Department of Sichuan Province Technology Project(No.2017GZ0393)
文摘The attenuation factor or quality factor(Q-factor or Q) has been used to measure the energy attenuation of seismic waves propagating in underground media. Many methods are used to estimate the Q-factor. We propose a method to calculate the Q-factor based on the prestack Q-factor inversion and the generalized S-transform. The proposed method specifies a standard primary wavelet and calculates the cumulative Q-factors; then, it finds the interlaminar Q-factors using the relation between Q and offset(QVO) and the Dix formula. The proposed method is alternative to methods that calculate interlaminar Q-factors after horizon picking. Because the frequency spectrum of each horizon can be extracted continuously on a 2D time–frequency spectrum, the method is called the continuous spectral ratio slope(CSRS) method. Compared with the other Q-inversion methods, the method offers nearly effortless computations and stability, and has mathematical and physical significance. We use numerical modeling to verify the feasibility of the method and apply it to real data from an oilfield in Ahdeb, Iraq. The results suggest that the resolution and spatial stability of the Q-profile are optimal and contain abundant interlaminar information that is extremely helpful in making lithology and fluid predictions.