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Multi-data reservoir history matching of crosswell seismic, electromagnetics and gravimetry data

机译:井间地震,电磁和重量分析数据的多数据油藏历史匹配

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摘要

Reservoir engineering has become of prime importance for oil and gas field development projects. With rising complexity, reservoir simulations and history matching have become critical for fine-tuning reservoir production strategies, improved subsurface formation knowledge and forecasting remaining reserves. The sparse spatial sampling of production data has posed a significant challenge for reducing uncertainty of subsurface parameters. Seismic, electromagnetic and gravimetry techniques have found widespread application in enhancing exploration for oil and gas and monitor reservoirs, however these data have been interpreted and analyzed mostly separately rarely utilizing the synergy effects that may be attainable. With the incorporation of multiple data into the reservoir history matching process there has been the request knowing the impact each incorporated observation has on the estimation. We present multi-data ensemble-based history matching framework for the incorporation of multiple data such as seismic, electromagnetics, and gravimetry for improved reservoir history matching and provide an adjointfree ensemble sensitivity method to compute the impact of each observation on the estimated reservoir parameters. The incorporation of all data sets displays the advantages multiple data may provide for enhancing reservoir understanding and matching, with the impact of each data set on the matching improvement being determined by the ensemble sensitivity method.
机译:对于油气田开发项目而言,油藏工程已变得至关重要。随着复杂性的提高,油藏模拟和历史匹配已成为微调油藏生产策略,提高地下地层知识和预测剩余储量的关键。稀疏的生产数据空间采样对降低地下参数的不确定性提出了重大挑战。地震,电磁和重量分析技术已被广泛应用于增强油气勘探和监测储层的研究中,但是这些数据大多是单独解释和分析的,很少利用可能获得的协同效应。随着将多个数据合并到储层历史匹配过程中,要求知道每个合并的观测对估计的影响。我们提出了基于多数据集合的历史匹配框架,用于合并地震,电磁和重量分析等多种数据,以改善储层历史匹配,并提供了无伴随集合灵敏度方法来计算每个观测值对估计储层参数的影响。所有数据集的合并显示了多个数据可提供的优势,以增强储层的理解和匹配性,而每个数据集对匹配改进的影响则由整体敏感性方法确定。

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    Katterbauer, Klemens;

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  • 年度 2014
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