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A Novel 3D Viscoelastic Acoustic Wave Equation Based Update Method for Reservoir History Matching

机译:基于储层历史匹配的新型3D粘弹性声波方程的更新方法

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The oil and gas industry has been revolutionized within the last decade,with horizontal drilling and hydraulic fracturing enabling the extraction of huge amounts of shale gas in areas previously considered impossible and the recovering of hydrocarbons in harsh environments like the arctic or in previously unimaginable depths like the off-shore exploration in the South China sea and Gulf of Mexico.With the development of 4D seismic,engineers and scientists have been enabled to map the evolution of fluid fronts within the reservoir and determine the displacement caused by the injected fluids.This in turn has led to enhanced production strategies,cost reduction and increased profits.Conventional approaches to incorporate seismic data into the history matching process have been to invert these data for constraints that are subsequently employed in the history matching process.This approach makes the incorporation computationally expensive and requires a lot of manual processing for obtaining the correct interpretation due to the potential artifacts that are generated by the generally ill-conditioned inversion problems.I have presented here a novel approach via including the time-lapse cross-well seismic survey data directly into the history matching process.The generated time-lapse seismic data are obtained from the full wave 3D viscoelastic acoustic wave equation.Furthermore an extensive analysis has been performed showing the robustness of the method and enhanced forecastability of the critical reservoir parameters,reducing uncertainties and exhibiting the benefits of a full wave 3D seismic approach.Finally,the improved performance has been statistically confirmed.The improvements illustrate the significant improvements in forecasting that are obtained via readily available seismic data without the need for inversion.This further optimizes oil production in addition to increasing return-on-investment on oil&gas field development projects,especially in offshore environments.
机译:石油和天然气行业已经彻底改变了过去的十年内,随着水平钻井和水力压裂能够在地区大量页岩气的以前被认为是不可能的提取和碳氢化合物在恶劣的环境,如北极或在以前无法想象的深度,如恢复南海和墨西哥湾的岸上探索。在开发4D地震,工程师和科学家的发展中,已经启用了储层内的流体前线的演变,并确定注射流体引起的位移。本转向增强的生产策略,降低成本和增加的利润。将地震数据纳入历史匹配过程的转化方法已经反转了随后在历史匹配过程中采用的限制的这些数据。该方法使得该方法使得该融合计算昂贵并且需要大量的手动处理来获取NG由于由普遍不良反转问题产生的潜在伪影引起的正确解释。我在此提出了一种新颖的方法,包括直接进入历史匹配过程的时间流逝交叉井地震调查数据。所产生的时间 - 从全波3D粘弹性声波方程获得地震数据。已经进行了广泛的分析,表明了该方法的鲁棒性和临界储层参数的增强性,降低了不确定性并表现出全波3D地震的益处approach.Finally,改进的性能已经显confirmed.The改进示出了预测的显著改进,都无需inversion.This通过容易获得的地震数据获得进一步优化石油生产除了增加回报率投资上石油和天然气现场开发项目,特别是在海上环境中。。

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