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Research on multi-wave joint elastic modulus inversion based on improved quantum particle swarm optimization 被引量:2
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作者 Peng-Qi Wang Xing-Ye Liu +4 位作者 Qing-Chun Li Yi-Fan Feng Tao Yang Xia-Wan Zhou Xu-Kun He 《Petroleum Science》 2025年第2期670-683,共14页
Young's modulus and Poisson's ratio are crucial parameters for reservoir characterization and rock brittleness evaluation.Conventional methods often rely on indirect computation or approximations of the Zoeppr... Young's modulus and Poisson's ratio are crucial parameters for reservoir characterization and rock brittleness evaluation.Conventional methods often rely on indirect computation or approximations of the Zoeppritz equations to estimate Young's modulus,which can introduce cumulative errors and reduce the accuracy of inversion results.To address these issues,this paper introduces the analytical solution of the Zoeppritz equation into the inversion process.The equation is re-derived and expressed in terms of Young's modulus,Poisson's ratio,and density.Within the Bayesian framework,we construct an objective function for the joint inversion of PP and PS waves.Traditional gradient-based algorithms often suffer from low precision and the computational complexity.In this study,we address limitations of conventional approaches related to low precision and complicated code by using Circle chaotic mapping,Levy flights,and Gaussian mutation to optimize the quantum particle swarm optimization(QPSO),named improved quantum particle swarm optimization(IQPSO).The IQPSO demonstrates superior global optimization capabilities.We test the proposed inversion method with both synthetic and field data.The test results demonstrate the proposed method's feasibility and effectiveness,indicating an improvement in inversion accuracy over traditional methods. 展开更多
关键词 Young's modulus PP-PS joint inversion Exact Zoeppritz pre-stack inversion QPSO
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Pre-stack inversion for caved carbonate reservoir prediction:A case study from Tarim Basin,China 被引量:9
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作者 Zhang Yuanyin Sam Zandong Sun +5 位作者 Yang Haijun Wang Haiyang HanJianfa Gao Hongliang Luo Chunshu Jing Bing 《Petroleum Science》 SCIE CAS CSCD 2011年第4期415-421,共7页
The major storage space types in the carbonate reservoir in the Ordovician in the TZ45 area are secondary dissolution caves.For the prediction of caved carbonate reservoir,post-stack methods are commonly used in the o... The major storage space types in the carbonate reservoir in the Ordovician in the TZ45 area are secondary dissolution caves.For the prediction of caved carbonate reservoir,post-stack methods are commonly used in the oilfield at present since pre-stack inversion is always limited by poor seismic data quality and insufficient logging data.In this paper,based on amplitude preserved seismic data processing and rock-physics analysis,pre-stack inversion is employed to predict the caved carbonate reservoir in TZ45 area by seriously controlling the quality of inversion procedures.These procedures mainly include angle-gather conversion,partial stack,wavelet estimation,low-frequency model building and inversion residual analysis.The amplitude-preserved data processing method can achieve high quality data based on the principle that they are very consistent with the synthetics.Besides,the foundation of pre-stack inversion and reservoir prediction criterion can be established by the connection between reservoir property and seismic reflection through rock-physics analysis.Finally,the inversion result is consistent with drilling wells in most cases.It is concluded that integrated with amplitude-preserved processing and rock-physics,pre-stack inversion can be effectively applied in the caved carbonate reservoir prediction. 展开更多
关键词 Carbonate reservoir prediction pre-stack inversion amplitude-preserved processing rock physics
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AVA Simultaneous Inversion of Prestack Seismic Data Using Particle Swarm Optimization 被引量:2
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作者 Jin Zhang Peng Shen +4 位作者 Weina Zhao Xubing Guo Xing Wang Song Chen Xiugang Xu 《Journal of Earth Science》 SCIE CAS CSCD 2018年第6期1390-1397,共8页
A new prestack AVA simultaneous inversion using particle swarm optimization algorithm is proposed, which can obtain the elastic parameters such as P-wave and S-wave impedance from P-wave reflection data simultaneously... A new prestack AVA simultaneous inversion using particle swarm optimization algorithm is proposed, which can obtain the elastic parameters such as P-wave and S-wave impedance from P-wave reflection data simultaneously. Compared with the conventional AVA inversion based on generalized linear technique, this method does not depend on the initial model and can reach the global minimum. In order to increase the stability of the inversion, low-frequency trends of P-wave and S-wave impedances are built into the inversion. This method has been successfully applied to synthetic and field data. The estimated P-wave and S-wave impedances can be combined to derive other elastic parameters, which are sensitive for lithology identification and fluid prediction. 展开更多
关键词 ava simultaneous inversion particle swarm optimization (PSO) low-frequency impedance model
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Impedance inversion of pre-stack seismic data in the depth domain 被引量:3
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作者 Jiang Wei Chen Xue Hua +3 位作者 Zhang Jie Luo Xin Dan Zhi Wei and Xiao Wei 《Applied Geophysics》 SCIE CSCD 2019年第4期427-437,559,560,共13页
The extensive application of pre-stack depth migration has produced huge volumes of seismic data,which allows for the possibility of developing seismic inversions of reservoir properties from seismic data in the depth... The extensive application of pre-stack depth migration has produced huge volumes of seismic data,which allows for the possibility of developing seismic inversions of reservoir properties from seismic data in the depth domain.It is difficult to estimate seismic wavelets directly from seismic data due to the nonstationarity of the data in the depth domain.We conduct a velocity transformation of seismic data to make the seismic data stationary and then apply the ridge regression method to estimate a constant seismic wavelet.The estimated constant seismic wavelet is constructed as a set of space-variant seismic wavelets dominated by velocities at different spatial locations.Incorporating the weighted superposition principle,a synthetic seismogram is generated by directly employing the space-variant seismic wavelets in the depth domain.An inversion workflow based on the model-driven method is developed in the depth domain by incorporating the nonlinear conjugate gradient algorithm,which avoids additional data conversions between the time and depth domains.The impedance inversions of the synthetic and field seismic data in the depth domain show good results,which demonstrates that seismic inversion in the depth domain is feasible.The approach provides an alternative for forward numerical analyses and elastic property inversions of depth-domain seismic data.It is advantageous for further studies concerning the stability,accuracy,and efficiency of seismic inversions in the depth domain. 展开更多
关键词 Depth domain seismic wavelet synthetic seismogram pre-stack impedance inversion
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Prestack AVA joint inversion of PP and PS waves using the vectorized reflectivity method 被引量:1
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作者 Liu Wei Wang Yan-Chun +2 位作者 Li Jing-Ye Liu Xue-Qing Xie Wei 《Applied Geophysics》 SCIE CSCD 2018年第3期448-465,共18页
Most current prestack AVA joint inversion methods are based on the exact Zoeppritz equation and its various approximations. However, these equations only reflect the relation between reflection coefficients, incidence... Most current prestack AVA joint inversion methods are based on the exact Zoeppritz equation and its various approximations. However, these equations only reflect the relation between reflection coefficients, incidence angles, and elastic parameters on either side of the interface, which means that wave-propagation effects, such as spherical spreading, attenuation, transmission loss, multiples, and event mismatching of P-and S-waves, are not considered and cannot accurately describe the true propagation characteristics of seismic waves. Conventional AVA inversion methods require that these wave-propagation effects have been fully corrected or attenuated before inversion but these requirements can hardly be satisfied in practice. Using a one-dimensional(1 D) earth model, the reflectivity method can simulate the full wavefield response of seismic waves. Therefore, we propose a nonlinear multicomponent prestack AVA joint inversion method based on the vectorized reflectivity method, which uses a fast nondominated sorting genetic algorithm(NSGA II) to optimize the nonlinear multiobjective function to estimate multiple parameters, such as P-wave velocity, S-wave velocity, and density. This approach is robust because it can simultaneously cope with more than one objective function without introducing weight coefficients. Model tests prove the effectiveness of the proposed inversion method. Based on the inversion results, we find that the nonlinear prestack AVA joint inversion using the reflectivity method yields more accurate inversion results than the inversion by using the exact Zoeppritz equation when the wave-propagation effects of transmission loss and internal multiples are not completely corrected. 展开更多
关键词 REFLECTIVITY METHOD fast nondominated SORTING GENETIC algorithm multiple parameters PRESTACK ava joint inversion
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Elastic modulus extraction based on generalized pre-stack PP–PS wave joint linear inversion 被引量:2
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作者 Ma Qi-Qi Sun Zan-Dong 《Applied Geophysics》 SCIE CSCD 2018年第3期466-480,共15页
Joint PP–PS inversion offers better accuracy and resolution than conventional P-wave inversion. P-and S-wave elastic moduli determined through data inversions are key parameters for reservoir evaluation and fluid cha... Joint PP–PS inversion offers better accuracy and resolution than conventional P-wave inversion. P-and S-wave elastic moduli determined through data inversions are key parameters for reservoir evaluation and fluid characterization. In this paper, starting with the exact Zoeppritz equation that relates P-and S-wave moduli, a coefficient that describes the reflections of P-and converted waves is established. This method effectively avoids error introduced by approximations or indirect calculations, thus improving the accuracy of the inversion results. Considering that the inversion problem is ill-posed and that the forward operator is nonlinear, prior constraints on the model parameters and modified low-frequency constraints are also introduced to the objective function to make the problem more tractable. This modified objective function is solved over many iterations to continuously optimize the background values of the velocity ratio, which increases the stability of the inversion process. Tests of various models show that the method effectively improves the accuracy and stability of extracting P and S-wave moduli from underdetermined data. This method can be applied to provide inferences for reservoir exploration and fluid extraction. 展开更多
关键词 pre-stack JOINT PP–PS inversion P-and S-wave moduli exact Zoeppritz equation GENERALIZED linear inversion reservoir and fl uid prediction
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Fast pre-stack multi-channel inversion constrained by seismic reflection features
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作者 Ya-Ming Yang Xing-Yao Yin +2 位作者 Kun Li Feng Zhang Jian-Hu Gao 《Petroleum Science》 SCIE EI CAS CSCD 2023年第4期2060-2074,共15页
Classical multi-channel technology can significantly reduce the pre-stack seismic inversion uncertainty, especially for complex geology such as high dipping structures. However, due to the consideration of complex str... Classical multi-channel technology can significantly reduce the pre-stack seismic inversion uncertainty, especially for complex geology such as high dipping structures. However, due to the consideration of complex structure or reflection features, the existing multi-channel inversion methods have to adopt the highly time-consuming strategy of arranging seismic data trace-by-trace, limiting its wide application in pre-stack inversion. A fast pre-stack multi-channel inversion constrained by seismic reflection features has been proposed to address this issue. The key to our method is to re-characterize the reflection features to directly constrain the pre-stack inversion through a Hadamard product operator without rearranging the seismic data. The seismic reflection features can reflect the distribution of the stratum reflection interface, and we obtained them from the post-stack profile by searching the shortest local Euclidean distance between adjacent seismic traces. Instead of directly constructing a large-size reflection features constraint operator advocated by the conventional methods, through decomposing the reflection features along the vertical and horizontal direction at a particular sampling point, we have constructed a computationally well-behaved constraint operator represented by the vertical and horizontal partial derivatives. Based on the Alternating Direction Method of Multipliers (ADMM) optimization, we have derived a fast algorithm for solving the objective function, including Hadamard product operators. Compared with the conventional reflection features constrained inversion, the proposed method is more efficient and accurate, proved on the Overthrust model and a field data set. 展开更多
关键词 pre-stack multi-channel inversion Reflection features Fast optimization
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Pre-stack AVO inversion with adaptive edge preserving smooth filter regularization based on Aki-Richard approximation
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作者 Kai Li Xuri Huang +2 位作者 Weiping Cao Cheng Yin Jing Tang 《Earthquake Research Advances》 CSCD 2021年第S01期59-62,共4页
With the development of exploration of oil and gas resources,the requirements for seismic inversion results are getting more accurate.In particular,it is hoped that the distribution patterns of oil and gas reservoirs ... With the development of exploration of oil and gas resources,the requirements for seismic inversion results are getting more accurate.In particular,it is hoped that the distribution patterns of oil and gas reservoirs can be finely characterized,and the seismic inversion results can clearly characterize the location of stratigraphic boundaries and meet the needs of accurate geological description.Specifically,for pre-stack AVO inversion,it is required to be able to distinguish smaller geological targets in the depth or time domain,and clearly depict the vertical boundaries of the geological objects.In response to the above requirements,we introduce the preprocessing regularization of the adaptive edge-preserving smooth filter into the pre-stack AVO elastic parameter inversion to clearly invert the position of layer boundary and improve the accuracy of the inversion results. 展开更多
关键词 AVO adaptive EPS filter pre-stack inversion Aki-Richard approximation
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Prestack Multi-Gather Simultaneous Inversion of Elastic Parameters Using Multiple Regularization Constraints 被引量:4
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作者 Shu Li Zhenming Peng Hao Wu 《Journal of Earth Science》 SCIE CAS CSCD 2018年第6期1359-1371,共13页
Inversion of Young’s modulus,Poisson’s ratio and density from pre-stack seismic data has been proved to be feasible and effective.However,the existing methods do not take full advantage of the prior information.With... Inversion of Young’s modulus,Poisson’s ratio and density from pre-stack seismic data has been proved to be feasible and effective.However,the existing methods do not take full advantage of the prior information.Without considering the lateral continuity of the inversion results,these methods need to invert the reflectivity first.In this paper,we propose multi-gather simultaneous inversion for pre-stack seismic data.Meanwhile,the total variation(TV)regularization,L1 norm regularization and initial model constraint are used.In order to solve the objective function contains L1norm,TV norm and L2 norm,we develop an algorithm based on split Bregman iteration.The main advantages of our method are as follows:(1)The elastic parameters are calculated directly from objective function rather than from their reflectivity,therefore the stability and accuracy of the inversion process can be ensured.(2)The inversion results are more in accordance with the prior geological information.(3)The lateral continuity of the inversion results are improved.The proposed method is illustrated by theoretical model data and experimented with a 2-D field data. 展开更多
关键词 elastic parameter pre-stack inversion multi-gather REGULARIZATION
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Nonlinear amplitude inversion using a hybrid quantum genetic algorithm and the exact zoeppritz equation 被引量:6
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作者 Ji-Wei Cheng Feng Zhang Xiang-Yang Li 《Petroleum Science》 SCIE CAS CSCD 2022年第3期1048-1064,共17页
The amplitude versus offset/angle(AVO/AVA)inversion which recovers elastic properties of subsurface media is an essential tool in oil and gas exploration.In general,the exact Zoeppritz equation has a relatively high a... The amplitude versus offset/angle(AVO/AVA)inversion which recovers elastic properties of subsurface media is an essential tool in oil and gas exploration.In general,the exact Zoeppritz equation has a relatively high accuracy in modelling the reflection coefficients.However,amplitude inversion based on it is highly nonlinear,thus,requires nonlinear inversion techniques like the genetic algorithm(GA)which has been widely applied in seismology.The quantum genetic algorithm(QGA)is a variant of the GA that enjoys the advantages of quantum computing,such as qubits and superposition of states.It,however,suffers from limitations in the areas of convergence rate and escaping local minima.To address these shortcomings,in this study,we propose a hybrid quantum genetic algorithm(HQGA)that combines a self-adaptive rotating strategy,and operations of quantum mutation and catastrophe.While the selfadaptive rotating strategy improves the flexibility and efficiency of a quantum rotating gate,the operations of quantum mutation and catastrophe enhance the local and global search abilities,respectively.Using the exact Zoeppritz equation,the HQGA was applied to both synthetic and field seismic data inversion and the results were compared to those of the GA and QGA.A number of the synthetic tests show that the HQGA requires fewer searches to converge to the global solution and the inversion results have generally higher accuracy.The application to field data reveals a good agreement between the inverted parameters and real logs. 展开更多
关键词 Nonlinear inversion AVO/ava inversion Hybrid quantum genetic algorithm(HQGA)
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Petrophysical parameters inversion for heavy oil reservoir based on a laboratory-calibrated frequency-variant rock-physics model 被引量:1
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作者 Xu Han Shang-Xu Wang +3 位作者 Zheng-Yu-Cheng Zhang Hao-Jie Liu Guo-Hua Wei Gen-Yang Tang 《Petroleum Science》 SCIE EI CAS CSCD 2023年第6期3400-3410,共11页
Heavy oil has high density and viscosity, and exhibits viscoelasticity. Gassmann's theory is not suitable for materials saturated with viscoelastic fluids. Directly applying such model leads to unreliable results ... Heavy oil has high density and viscosity, and exhibits viscoelasticity. Gassmann's theory is not suitable for materials saturated with viscoelastic fluids. Directly applying such model leads to unreliable results for seismic inversion of heavy oil reservoir. To describe the viscoelastic behavior of heavy oil, we modeled the elastic properties of heavy oil with varying viscosity and frequency using the Cole-Cole-Maxwell (CCM) model. Then, we used a CCoherent Potential Approximation (CPA) instead of the Gassmann equations to account for the fluid effect, by extending the single-phase fluid condition to two-phase fluid (heavy oil and water) condition, so that partial saturation of heavy oil can be considered. This rock physics model establishes the relationship between the elastic modulus of reservoir rock and viscosity, frequency and saturation. The viscosity of the heavy oil and the elastic moduli and porosity of typical reservoir rock samples were measured in laboratory, which were used for calibration of the rock physics model. The well-calibrated frequency-variant CPA model was applied to the prediction of the P- and S-wave velocities in the seismic frequency range (1–100 Hz) and the inversion of petrophysical parameters for a heavy oil reservoir. The pre-stack inversion results of elastic parameters are improved compared with those results using the CPA model in the sonic logging frequency (∼10 kHz), or conventional rock physics model such as the Xu-Payne model. In addition, the inversion of the porosity of the reservoir was conducted with the simulated annealing method, and the result fits reasonably well with the logging curve and depicts the location of the heavy oil reservoir on the time slice. The application of the laboratory-calibrated CPA model provides better results with the velocity dispersion correction, suggesting the important role of accurate frequency dependent rock physics models in the seismic prediction of heavy oil reservoirs. 展开更多
关键词 Heavy oil Rock physics Velocity dispersion pre-stack inversion Reservoir prediction
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Fluid discrimination incorporating amplitude variation with angle inversion and squirt flow of the fluid 被引量:1
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作者 Yu-Rong Wang Zhao-Yun Zong Xing-Yao Yin 《Petroleum Science》 SCIE CAS CSCD 2022年第4期1592-1604,共13页
Pre-stack seismic inversion is an important method for fluid identification and reservoir characterization in exploration geophysics. In this study, an effective fluid factor is initially established based on Biot por... Pre-stack seismic inversion is an important method for fluid identification and reservoir characterization in exploration geophysics. In this study, an effective fluid factor is initially established based on Biot poroelastic theory, and a pre-stack seismic inversion method based on Bayesian framework is used to implement the fluid identification. Compared with conventional elastic parameters, fluid factors are more sensitive to oil and gas. However, the coupling effect between rock porosity and fluid content is not considered in conventional fluid factors, which may lead to fuzzy fluid identification results. In addition,existing fluid factors do not adequately consider the physical mechanisms of fluid content, such as squirt flow between cracks and pores. Therefore, we propose a squirt fluid factor(SFF) that minimizes the fluid and pore mixing effects and takes into account the squirt flow. On this basis, a novel P-wave reflection coefficient equation is derived, and the squirt fluid factor is estimated by amplitude variation with offset(AVO) inversion method. The new reflection coefficient equation has sufficient accuracy and can be utilized to estimate the parameters. The effectiveness and superiority of the proposed method in fluid identification are verified by the synthetic and field examples. 展开更多
关键词 Fluid discrimination Poroelasticity theory Linearized seismic reflectivity pre-stack seismic inversion Squirt flow of fluid
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A Quadratic precision generalized nonlinear global optimization migration velocity inversion method
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作者 Zhao Taiyin Hu Guangmin +1 位作者 He Zhenhua Huang Deji 《Applied Geophysics》 SCIE CSCD 2009年第2期138-149,共12页
An important research topic for prospecting seismology is to provide a fast accurate velocity model from pre-stack depth migration. Aiming at such a problem, we propose a quadratic precision generalized nonlinear glob... An important research topic for prospecting seismology is to provide a fast accurate velocity model from pre-stack depth migration. Aiming at such a problem, we propose a quadratic precision generalized nonlinear global optimization migration velocity inversion. First we discard the assumption that there is a linear relationship between residual depth and residual velocity and propose a velocity model correction equation with quadratic precision which enables the velocity model from each iteration to approach the real model as quickly as possible. Second, we use a generalized nonlinear inversion to get the global optimal velocity perturbation model to all traces. This method can expedite the convergence speed and also can decrease the probability of falling into a local minimum during inversion. The synthetic data and Mamlousi data examples show that our method has a higher precision and needs only a few iterations and consequently enhances the practicability and accuracy of migration velocity analysis (MVA) in complex areas. 展开更多
关键词 pre-stack depth migration migration velocity analysis generalized nonlinear inversion common imaging gather
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频率域传播矩阵法地震AVA多参数反演
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作者 丁乾龙 沈金松 +2 位作者 陈双全 冉尚 龙刚 《吉林大学学报(地球科学版)》 北大核心 2025年第3期957-969,共13页
传播矩阵理论考虑透射损失和层间多次波对地震响应的影响,给出了任意入射角条件下多层介质的纵横波反射系数谱,相较于Zoeppritz方程及其简化关系,理论上能够得到更高精度的AVA(amplitude-versus-angle)多参数反演结果。时间域传播矩阵... 传播矩阵理论考虑透射损失和层间多次波对地震响应的影响,给出了任意入射角条件下多层介质的纵横波反射系数谱,相较于Zoeppritz方程及其简化关系,理论上能够得到更高精度的AVA(amplitude-versus-angle)多参数反演结果。时间域传播矩阵法反演由于需要计算全频段的雅可比矩阵,往往需要更大的内存。不同于时间域反演,频率域反演只针对特定频率进行计算,具有内存占用小的优点,而传播矩阵在频率域内对反射系数谱进行求解很好地满足了频率域反演的需求。本文在频率域计算目标函数梯度,并使用L-BFGS(limited-memory Broyden-Fletcher-Goldfarb-Shanno)算法加速反演的收敛速度。为了验证频率域传播矩阵法反演的有效性,对模拟数据和实际数据进行反演。在频率域应用传播矩阵地震叠前反演方法能够稳定反演地层参数,与Zoeppritz方程反演的对比结果表明,频率域传播矩阵反演具有更高的精度。 展开更多
关键词 传播矩阵理论 ZOEPPRITZ方程 ava反演 L-BFGS算法 频率域
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基于低秩约束的多道叠前道集AVA特征恢复方法
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作者 高洋 石学文 +3 位作者 张洞君 刘鑫 罗浩然 周智文 《山东科技大学学报(自然科学版)》 北大核心 2025年第6期63-74,共12页
随着油气勘探目标向更深层复杂储层拓展,地层吸收效应更为显著,导致叠前数据振幅衰减与相位畸变问题加剧,严重制约地震储层表征精度。针对现有单道补偿方法抗噪性差、横向连续性不足的缺陷,提出一种基于低秩约束的多道叠前道集振幅随角... 随着油气勘探目标向更深层复杂储层拓展,地层吸收效应更为显著,导致叠前数据振幅衰减与相位畸变问题加剧,严重制约地震储层表征精度。针对现有单道补偿方法抗噪性差、横向连续性不足的缺陷,提出一种基于低秩约束的多道叠前道集振幅随角度变化(AVA)特征恢复方法。首先,构建非稳态地震数据正演模型,显式表征黏弹性介质的空变吸收衰减效应;其次,利用叠前道集的横向一致性,通过块组矩阵构造低秩约束项,结合核范数正则化抑制噪声并保持空间相关性;最后,采用交替方向乘子算法(ADMM)求解凸优化问题,实现稳定补偿。模型数据测试表明,与传统方法相比,本方法能有效补偿弱反射同相轴能量,恢复振幅随角度变化的特征,且对品质因子精度依赖性低,抗噪性显著提升。实际资料应用进一步验证了其在复杂地质条件下改善横向连续性、恢复AVA响应特征的优势。 展开更多
关键词 叠前吸收补偿 低秩约束 多道反演 ava特征恢复
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叠前AVA广义非线性纵、横波速度反演 被引量:39
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作者 孟宪军 姜秀娣 +1 位作者 黄捍东 魏修成 《石油地球物理勘探》 EI CSCD 北大核心 2004年第6期645-650,共6页
利用叠前 AVA地震资料反演地下介质的纵、横波速度 ,可以为地层岩性、储层物性及含油气性解释提供丰富的弹性参数信息。本文以 Aki和 Richards近似公式为基础 ,将最小平方问题转化为大型稀疏矩阵的求解问题 ,直接反演出纵、横波速度 ;... 利用叠前 AVA地震资料反演地下介质的纵、横波速度 ,可以为地层岩性、储层物性及含油气性解释提供丰富的弹性参数信息。本文以 Aki和 Richards近似公式为基础 ,将最小平方问题转化为大型稀疏矩阵的求解问题 ,直接反演出纵、横波速度 ;根据建立的反演目标函数导出了广义非线性矩阵反演方程 ;噪声协方差矩阵和模型协方差矩阵的加入 ,使叠前反演稳定性增强 ;通过 AVA合成记录标定、AVA反演子波估算以及测井、构造层位信息的共同约束 ,有效地降低了反演的多解性问题。理论模型试算和实际资料处理结果均表明 ,该方法处理效果良好。 展开更多
关键词 叠前 反演 横波速度 合成记录 弹性参数 地震资料 资料处理 稀疏矩阵 多解性 问题转化
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Reservoir prediction using pre-stack inverted elastic parameters 被引量:8
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作者 陈双全 王尚旭 +1 位作者 张永刚 季敏 《Applied Geophysics》 SCIE CSCD 2009年第4期349-358,394,共11页
This is a case study of the application of pre-stack inverted elastic parameters to tight-sand reservoir prediction. With the development of oil and gas exploration, pre-stack data and inversion results are increasing... This is a case study of the application of pre-stack inverted elastic parameters to tight-sand reservoir prediction. With the development of oil and gas exploration, pre-stack data and inversion results are increasingly used for production objectives. The pre-stack seismic property studies include not only amplitude verse offset (AVO) but also the characteristics of other elastic property changes. In this paper, we analyze the elastic property parameters characteristics of gas- and wet-sands using data from four gas-sand core types. We found that some special elastic property parameters or combinations can be used to identify gas sands from water saturated sand. Thus, we can do reservoir interpretation and description using different elastic property data from the pre-stack seismic inversion processing. The pre- stack inversion method is based on the simplified Aki-Richard linear equation. The initial model can be generated from well log data and seismic and geologic interpreted horizons in the study area. The input seismic data is angle gathers generated from the common reflection gathers used in pre-stack time or depth migration. The inversion results are elastic property parameters or their combinations. We use a field data example to examine which elastic property parameters or combinations of parameters can most easily discriminate gas sands from background geology and which are most sensitive to pore-fluid content. Comparing the inversion results to well data, we found that it is useful to predict gas reservoirs using λ, λρ, λ/μ, and K/μ properties, which indicate the gas characteristics in the study reservoir. 展开更多
关键词 elastic parameters pre-stack inversion reservoir prediction AVO analysis angle gather
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基于叠前AVA同步反演和地质统计学反演的高分辨率流体预测方法 被引量:9
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作者 余振 王彦春 +2 位作者 何静 董永苍 刘志伟 《石油地球物理勘探》 EI CSCD 北大核心 2014年第3期551-560,418,共10页
针对薄层流体的精细预测问题,提出一种高分辨率流体预测方法。该方法在进行叠前AVA同步反演的基础上,同时对含水饱和度进行带岩性遮挡的地质统计学反演,然后将两者的结果进行交会,根据流体的门槛值在交会图中选择相应的部分,生成最终的... 针对薄层流体的精细预测问题,提出一种高分辨率流体预测方法。该方法在进行叠前AVA同步反演的基础上,同时对含水饱和度进行带岩性遮挡的地质统计学反演,然后将两者的结果进行交会,根据流体的门槛值在交会图中选择相应的部分,生成最终的高分辨率流体预测结果,可精细预测薄层流体。通过不同宽度泥岩墙的多层水平层状模型试算和实际资料的应用,结果表明:叠前AVA同步反演的横向分辨率高、纵向分辨率低;带岩性遮挡的地质统计学反演的纵向分辨率高且有一定的横向分辨率,但横向分辨率不如叠前AVA同步反演高;基于两者的高分辨率流体预测方法的纵、横向分辨率都高,对薄层流体的预测效果较好。 展开更多
关键词 高分辨率 流体预测 叠前ava同步反演 岩性遮挡 地质统计学反演
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叠前AVA反演预测储层流体的方法与应用 被引量:10
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作者 张如伟 黄捍东 +1 位作者 于茜 郭迎春 《石油天然气学报》 CAS CSCD 北大核心 2008年第1期250-253,共4页
AVO能够用来作为储层流体预测的工具,已经有很多文献论述了它的优越性。叠前AVA弹性多参数反演用来预测流体的研究才处于起步阶段,但是已经表现出很强的生命力。在研究前人文献的同时,从叠前AVA反演出发,将其用于胜利油田某一区块的实... AVO能够用来作为储层流体预测的工具,已经有很多文献论述了它的优越性。叠前AVA弹性多参数反演用来预测流体的研究才处于起步阶段,但是已经表现出很强的生命力。在研究前人文献的同时,从叠前AVA反演出发,将其用于胜利油田某一区块的实例计算,在得到了不同参数的反演剖面的基础上,进行了AVO的属性分析,提取了6个AVO的属性体,从各个不同的方面去预测储层流体的性质。从与井相对应的效果来分析,识别储层的符合率较高,说明了地震反演与AVO属性体结合起来,是一种较为有效的岩性与流体的预测方法。 展开更多
关键词 储层预测 AVO 叠前多参数反演 流体预测 流体因子 AVO属性分析
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基于贝叶斯理论的孔隙流体模量叠前AVA反演 被引量:12
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作者 李超 印兴耀 +2 位作者 张广智 刘倩 张世鑫 《石油物探》 EI CSCD 北大核心 2015年第4期467-476,共10页
孔隙流体模量是一种极其敏感的流体指示因子,对该参数进行地震尺度的估算在含油气储层识别中具有重要的意义。首先在孔隙弹性介质理论的指导下,推导了包含孔隙流体模量的Zoeppritz方程的线性近似方程;然后在贝叶斯理论框架下,假设先验... 孔隙流体模量是一种极其敏感的流体指示因子,对该参数进行地震尺度的估算在含油气储层识别中具有重要的意义。首先在孔隙弹性介质理论的指导下,推导了包含孔隙流体模量的Zoeppritz方程的线性近似方程;然后在贝叶斯理论框架下,假设先验分布服从四元柯西分布、似然函数服从高斯分布,建立了包含正则化约束的叠前AVA反演方法。模型试算结果表明,利用该方法估算孔隙流体模量,能够提高流体识别的精度;实际资料的试应用取得了较好效果,证明了该方法的有效性和实用性。 展开更多
关键词 流体识别 孔隙流体模量 叠前ava反演 贝叶斯理论
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