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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Automatic nonhyperbolic velocity analysis by polynomial chaos expansion
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Automatic nonhyperbolic velocity analysis by polynomial chaos expansion

机译:多项式混沌扩展自动非滑动速度分析

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摘要

Seismic velocity analysis is one of the most crucial and, at the same time, the most laborious tasks during seismic data processing. This becomes even more difficult and time-consuming when nonhyperbolicity has to be considered in the velocity analysis. Nonhyperbolic velocity analysis provides very useful information during the processing and interpretation of seismic data. The most common approach for considering anisotropy during velocity analysis is to describe the moveout based on a nonhyperbolic equation. The nonhyperbolic moveout equation in vertically transverse isotropic (VTI) media is defined by two parameters: normal moveout (NMO) velocity V-NMO and anellipticity eta (or horizontal velocity V-hor). We have developed a new approach based on polynomial chaos (PC) expansion for automating nonhyperbolic velocity analysis of common-midpoint (CMP) data in VTI media. For this purpose, we use the PC expansion to approximate the nonhyperbolic semblance function with a very fast-to-simulate function in terms of V-NMO and V-hor. Then, using particle swarm optimization, we stochastically look for the optimum NMO and horizontal velocities that provide the maximum semblance. In contrary to common approaches for nonhyperbolic velocity analysis in which the two parameters are estimated iteratively in an alternating fashion, we find V-NMO and V-hor simultaneously. This approach is tested on various data including a simple convolutional model, an anisotropic benchmark model, and a real data set. In all cases, the new method provided acceptable results. Reflections in the CMP corrected using the optimum velocities are properly flattened, and almost no residual moveout is observed.
机译:地震速度分析是最重要的,同时,地震数据处理期间最费力的任务。当在速度分析中必须考虑非高湿性时,这变得更加困难和耗时。在处理和解释地震数据期间,非恒压速度分析提供了非常有用的信息。用于考虑速度分析期间各向异性的最常见方法是基于非滑动式方程描述偏移。垂直横向各向同性(VTI)介质中的非恒温移除方程由两个参数定义:正常移出(NMO)速度V-NMO和Anellicity ETA(或水平速度V-HOR)。我们已经开发了一种基于多项式混沌(PC)扩展的新方法,用于自动化VTI介质中共用中点(CMP)数据的非滑动速度分析。为此目的,我们使用PC扩展以近似非恒压外观功能,在V-NMO和V-HOR方面非常快速地模拟功能。然后,使用粒子群优化,我们随机寻找最佳NMO和提供最大外观的水平速度。相反,不凝固速度分析的常见方法,其中两种参数以交替的方式迭代地估计,我们同时发现V-NMO和V-HOR。在包括简单卷积模型,各向异性基准模型和实际数据集的各种数据上测试该方法。在所有情况下,新方法提供了可接受的结果。使用最佳速度校正的CMP中的反射是正确扁平的,并且几乎没有观察到残留的偏移。

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