Analysis of seismic dispersion and attenuation for gas-hydrate formations in the South China Sea

IF 6.1 1区 工程技术 Q2 ENERGY & FUELS
Zuo-Xiu He , Feng Zhang , Pin-Bo Ding , Xiang-Yang Li , Hai-Feng Chen
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引用次数: 0

Abstract

Existing studies indicate that gas hydrate-bearing formations exhibit notable seismic velocity dispersion and attenuation. The Shenhu area of the South China Sea hold significant gas hydrate resource potential; however, the relationship between seismic velocity dispersion, attenuation properties, and gas-hydrate saturation remains insufficiently understood. Furthermore, a significant mismatch exists between the real seismic angle gather near a well and the synthetic angle gather generated using the convolution method, and this discrepancy may arise from the seismic velocity dispersion and attenuation characteristics of the gas hydrate-bearing formations. In this paper, we develop a rock physics model that integrates White's and Dvorkin's models, accounting for varied types of gas-hydrate occurrence states, specifically tailored to the gas hydrate-bearing formations in the Shenhu area. This model is calibrated with well log data and employed to investigate how gas-hydrate saturation influences seismic velocity dispersion and attenuation. Numerical analysis reveals the coexistence of two types of gas-hydrate occurrence states in the region: high gas-hydrate saturation formations are dominated by load-bearing-type gas hydrate, and formations containing both gas hydrate and free gas may exhibit either load-bearing or pore-filling types. The seismic velocity dispersion and attenuation properties vary significantly depending on the gas-hydrate occurrence state. We further apply the proposed model to generate seismic velocity and attenuation logs at various frequencies. These logs are used in seismic forward modeling employing both the convolution method and the propagator matrix method. Well tie analysis indicates that the synthetic angle gather incorporating attenuation via the propagator matrix method aligns more closely with the real seismic angle gather than the convolution method. This study provides valuable insights into frequency-dependent amplitude versus offset (AVO) analysis and the seismic interpretation of gas hydrate-bearing formations in the South China Sea.
南海天然气水合物地层地震频散与衰减分析
已有研究表明,含天然气水合物地层具有明显的地震速度频散和衰减。南海神狐海域具有重要的天然气水合物资源潜力;然而,地震速度频散、衰减特性和天然气水合物饱和度之间的关系仍然没有得到充分的了解。此外,利用卷积方法得到的井附近真实地震角集与合成地震角集之间存在明显的不匹配,这种差异可能与含天然气水合物地层的地震速度频散和衰减特征有关。在本文中,我们建立了一个结合White's和Dvorkin's模型的岩石物理模型,考虑了不同类型的天然气水合物赋存状态,并专门针对神狐地区的含天然气水合物地层进行了研究。该模型使用测井数据进行校准,并用于研究天然气水合物饱和度对地震速度频散和衰减的影响。数值分析表明,区内两种类型的天然气水合物赋存状态并存:高水合物饱和度地层以承载型天然气水合物为主,含天然气水合物和游离气的地层既可能呈现承载型,也可能呈现充孔型。地震速度的频散和衰减特性随水合物赋存状态的不同而有显著差异。我们进一步应用所提出的模型来生成不同频率的地震速度和衰减日志。利用卷积法和传播矩阵法将这些测井曲线用于地震正演模拟。井缝分析表明,与卷积法相比,采用传播子矩阵法计算衰减的合成角集更接近真实地震角集。该研究为南海含天然气水合物地层的频率相关振幅相对偏移(AVO)分析和地震解释提供了有价值的见解。
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来源期刊
Petroleum Science
Petroleum Science 地学-地球化学与地球物理
CiteScore
7.70
自引率
16.10%
发文量
311
审稿时长
63 days
期刊介绍: Petroleum Science is the only English journal in China on petroleum science and technology that is intended for professionals engaged in petroleum science research and technical applications all over the world, as well as the managerial personnel of oil companies. It covers petroleum geology, petroleum geophysics, petroleum engineering, petrochemistry & chemical engineering, petroleum mechanics, and economic management. It aims to introduce the latest results in oil industry research in China, promote cooperation in petroleum science research between China and the rest of the world, and build a bridge for scientific communication between China and the world.
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