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Q estimation from reflection seismic data for hydrocarbon detection using a modified frequency shift method

机译:使用改进的频移法从反射地震数据进行碳氢化合物检测的Q估计

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摘要

As a powerfully diagnostic tool for structural interpretation, reservoir characterization, and hydrocarbon detection, quality factor Q provides useful information in seismic processing and interpretation. Popular methods, like the spectral ratio (SR) method, central frequency shift (CFS) method and peak frequency shift (PFS) method, have their respective limitations in dealing with field seismic data. The lack of a reliable method for estimating Q from reflection seismic data is an issue when utilizing the Q value for hydrocarbon detection. In this article, we derive an approximate equation and propose a dominant and central frequency shift (DCFS) method by combining the quality factor Q, the travel time, and dominant and central frequencies of two successive seismic signals along the wave propagating direction. Based on multi-layered analysis, we then proposed a method to obtain continuous volumetric Q estimation results. A test using synthetic data and statistical experiments showed the proposed method can achieve higher accuracy and robustness compared with existing methods. Application of field data also shows its potential and effectiveness to estimate seismic attenuation.
机译:作为结构解释,储层表征和油气探测的有力诊断工具,品质因数Q为地震处理和解释提供了有用的信息。流行的方法,例如频谱比(SR)方法,中心频移(CFS)方法和峰值频移(PFS)方法,在处理现场地震数据时有各自的局限性。当利用Q值进行烃类检测时,缺乏从反射地震数据估计Q的可靠方法。在本文中,我们推导了一个近似方程,并通过结合品质因数Q,传播时间以及两个连续地震信号沿波传播方向的主频和中心频率,提出了一种主频和中心频移(DCFS)方法。在多层分析的基础上,我们提出了一种获取连续体积Q估计结果的方法。使用合成数据和统计实验进行的测试表明,与现有方法相比,该方法可以实现更高的准确性和鲁棒性。现场数据的应用还显示了其潜在潜力和有效性,可用于估计地震衰减。

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