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Seismic facies-controlled prestack simultaneous inversion of elastic and petrophysical parameters for favourable reservoir prediction

机译:地震相控制的叠前弹性和岩石物理参数同时反演有利于储层预测

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摘要

Comprehensive utilisation of elastic and petrophysical parameters to predict favourable reservoirs can help reduce the possibility of misidentification of resources. Existing simultaneous inversion methods for estimating the elastic and petrophysical parameters are typically based on either the Gassmann equation, with which these parameters are inverted from prestack seismic data through stochastic optimisation methods, or Wyllie's modified equation, with which these parameters are inverted from poststack seismic data using deterministic optimisation methods. The purpose of this work is to develop a strategy for estimating the elastic and petrophysical parameters based on the Gassmann equation using deterministic prestack inversion. We employ the Gassmann equation to construct the relationship between the prestack seismic data and petrophysical parameters. We treat the joint posterior probability of elastic and petrophysical parameters as the objective function under a Bayesian framework. Given the macroscopic geological background and the poor-quality prestack seismic data, seismic facies regularisation constraints were introduced to improve the robustness and accuracy of the inversion. The very fast-simulated annealing method is used to quickly find the optimal solutions for the elastic and petrophysical parameters. Based on a model test and the application of real data demonstrates that the proposed inversion method has high accuracy and strong reliability.
机译:弹性和岩石物理参数的综合利用可预测有利的储层,有助于减少资源错误识别的可能性。现有的同时估算弹性和岩石物理参数的同时反演方法通常基于Gassmann方程(通过随机优化方法将这些参数从叠前地震数据中进行反演)或Wyllie修正方程式(从这些数据中从叠后地震数据中进行反演)使用确定性优化方法。这项工作的目的是开发一种基于确定性叠前反演的基于Gassmann方程的弹性和岩石物理参数估计策略。我们采用Gassmann方程构造叠前地震数据与岩石物理参数之间的关系。我们将弹性和岩石物理参数的联合后验概率作为贝叶斯框架下的目标函数。考虑到宏观地质背景和劣质叠前地震数据,引入了地震相正则约束,以提高反演的鲁棒性和准确性。非常快速模拟的退火方法用于快速找到弹性和岩石物理参数的最佳解。通过模型测试和实际数据的应用表明,该方法具有较高的准确性和可靠性。

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