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应用地球物理  2025, Vol. 22 Issue (4): 1259-1270    DOI: 10.1007/s11770-024-1088-5
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声反射横波成像测井逆时偏移中最小二乘优化差分系数方法研究
李雨生*,武宏亮,刘鹏,冯周,王克文,张浩,张文豪
1. 中国石油勘探开发研究院,北京 100083;2. 中国石油大学 (北京),北京 10224
Research on the differential coefficient least-squares optimization method of reverse time migration in acoustic-re?ected S-wave imaging logging
Li Yu-Sheng*, Wu Hong-Liang, Liu Peng, Feng Zhou, Wang Ke-Wen, Zhang Hao, Zhang Wen-Hao
1. PetroChina Research Institute of Petroleum Exploration and Development, Beijing 100083, China. 2. China University of Petroleum, Beijing 102249, China.
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摘要 波动方程有限差分正演模拟数值频散现象会影响逆时偏移方法在声反射成像测井中的成像精度,并导致测井解释结果的多解性,在横波成像中影响尤为严重。针对这一问题,本文提出在横波声反射成像测井逆时偏移中应用最小二乘差分系数优化算法压制数值频散现象,将差分系数优化后的高精度有限差分算法作为逆时偏移正演和反传算子,能够有效消除数值频散导致的偏移假象。数值计算结果表明,无论在高速或慢速地层,或较大空间网格或较小空间网格,优化后的差分系数均可获得更较高精度的正演成像结果;实际资料处理结果表明,数值频散优化可以有效减少偏移假象、降低测井解释的多解性,为逆时偏移方法在横波反射波高精度正演模拟和成像中提供了重要技术支撑。
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关键词声反射横波成像测井   有限差分正演   逆时偏移   最小二乘差分系数优化算法     
Abstract: The numerical dispersion phenomenon in the finite-difference forward modeling simulations of the wave equation significantly affects the imaging accuracy in acoustic reflection logging. This issue is particularly pronounced in the reverse time migration (RTM) method used for shear-wave (S-wave) logging imaging. This not only affects imaging accuracy but also introduces ambiguities in the interpretation of logging results. To address this challenge, this study proposes the use of a least-squares difference coefficient optimization algorithm aiming to suppress the numerical dispersion phenomenon in the RTM of S-wave reflection imaging logging. By optimizing the difference coefficients, the high-precision finite-difference algorithm serves as an effective operator for both forward and backward RTM processes. This approach is instrumental in eliminating migration illusions, which are often caused by numerical dispersion. The effectiveness of this optimized algorithm is demonstrated through numerical results, which indicate that it can achieve more accurate forward imaging results across various conditions, including high- and low-velocity strata, and is effective in both large and small spatial grids. The results of processing real data demonstrate that numerical dispersion optimization effectively reduces migration artifacts and diminishes ambiguities in logging interpretations. This optimization offers crucial technical support to the RTM method, enhancing its capability for accurately modeling and imaging S-wave reflections.
Key wordsacoustic reflection imaging logging    finite-difference forward modeling    reverse time migration    least-squares optimization algorithm   
收稿日期: 2023-05-04;
基金资助:This work is supported by Scientifi c Research and Technology Development Project of CNPC (2021DJ4002, 2022DJ3908).
通讯作者: 李雨生 (Email: lysgeophysicis@163.com).     E-mail: lysgeophysicis@163.com
作者简介: Li Yusheng, a senior engineer of the Logging Institute of Research Institute Petroleum Exploration and Development , graduated from Peking University with a doctor's degree in 2020. He is currently mainly engaged in the research of acoustic reflection imaging logging processing methods. Contact information: the full name of the work unit is Logging Institute of Research Institute Petroleum Exploration and Development, the address is No. 20 Xueyuan Road, Haidian District, Beijing, the postal code is 100083, the phone number is 15501271288, and the email address is lysgeophysics@163.com.
引用本文:   
. 声反射横波成像测井逆时偏移中最小二乘优化差分系数方法研究[J]. 应用地球物理, 2025, 22(4): 1259-1270.
. Research on the differential coefficient least-squares optimization method of reverse time migration in acoustic-re?ected S-wave imaging logging[J]. APPLIED GEOPHYSICS, 2025, 22(4): 1259-1270.
 
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