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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Time-lapse amplitude variation with offset inversion using Bayesian theory in two-phase media
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Time-lapse amplitude variation with offset inversion using Bayesian theory in two-phase media

机译:在两相媒体中使用贝叶斯理论的抵消反演延时幅度变化

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In time-lapse seismic analysis, the Zoeppritz equations are usually used in the time-lapse amplitude variation with offset (AVO) inversion and then combined with a rock-physical model to estimate the reservoir-parameter changes. The real-life reservoir is a two-phase medium that consists of solid and fluid components. The Zoeppritz equations are a simplification, assuming a single-phase solid medium, in which the properties of this medium are estimated by effective parameters from the combined components. This means that the Zoeppritz equations cannot describe the characteristics of the seismic reflection amplitudes in the reservoir in an accurate way. Therefore, we develop a method for time-lapse AVO inversion in two-phase media using the Bayesian theory to estimate the reservoir parameters and their changes quantitatively. We use a reflection-coefficient equation in two-phase media, a rock-physical model, and the convolutional model to build a relationship between the seismic records and reservoir parameters, which include porosity, clay content, saturation, and pressure. Assuming that the seismic-data errors follow a zero-mean Gaussian distribution and that the reservoir parameters follow a four-variable Cauchy prior distribution, we use the Bayesian theory to construct the objective function for the AVO inversion, and we also add a model-constraint term to compensate the low-frequency information and improve the stability of the inversion. Using the objective function of the AVO inversion and the Gauss-Newton method, we derived the equation for time-lapse AVO inversion. This result can be used to estimate the reservoir parameters and their changes accurately and in a stable way. The test results from the feasibility study on synthetic and field data proved that the method is effective and reliable.
机译:在延时地震分析中,Zoeppritz方程通常用于偏移(AVO)反转的时间流逝幅度变化,然后与岩石物理模型组合以估计储存器参数变化。真实寿命水库是一种由固体和流体部件组成的两阶段介质。 Zoeppritz方程是假设单相固体培养基的简化,其中通过组合组分的有效参数估计该培养基的性质。这意味着Zoeppritz方程不能以准确的方式描述储层中的地震反射幅度的特征。因此,我们使用贝叶斯理论在两相介质中开发一种延时AVO反转的方法,以估计储层参数及其变化。我们在两相介质,岩石物理模型和卷积模型中使用反射系数方程,以构建地震记录和储层参数之间的关系,包括孔隙率,粘土含量,饱和度和压力。假设地震数据误差遵循零均值高斯分布,并且储层参数遵循四变量的Cauchy先前分配,我们使用贝叶斯理论构建AVO反转的目标函数,我们还添加了模型 - 约束项来补偿低频信息并提高反转的稳定性。使用AVO反转和Gauss-Newton方法的目标函数,我们派生了时间流逝AVO反转的方程。该结果可用于估计储层参数,并以稳定的方式进行准确地进行变化。该测试结果来自合成和现场数据的可行性研究证明了该方法是有效可靠的。

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