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Downhole Microseismic Source Location Based on a Multi-Dimensional DIRECT Algorithm for Unconventional Oil and Gas Reservoir Exploration

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【作者】 YIN QifengTAO PengfeiZHENG ShuoHE QingAN YanfeiGUO Quanshi

【Author】 YIN Qifeng;TAO Pengfei;ZHENG Shuo;HE Qing;AN Yanfei;GUO Quanshi;School of Resources and Environmental Engineering, Anhui University;Sinopec Geophysical Research Institute;

【通讯作者】 YIN Qifeng;

【机构】 School of Resources and Environmental Engineering, Anhui UniversitySinopec Geophysical Research Institute

【摘要】 Downhole microseismic data has the significant advantages of high signal-to-noise ratio and well-developed P and S waves and the core component of microseismic monitoring is microseismic event location associated with hydraulic fracturing in a relatively high confidence level and accuracy. In this study, we present a multidimensional DIRECT inversion method for microseismic locations and applicability tests over modeling data based on a downhole microseismic monitoring system. Synthetic tests inidcate that the objective function of locations can be defined as a multi-dimensional matrix space by employing the global optimization DIRECT algorithm, because it can be run without the initial value and objective function derivation, and the discretely scattered objective points lead to an expeditious contraction of objective functions in each dimension. This study shows that the DIRECT algorithm can be extensively applied in real downhole microseismic monitoring data from hydraulic fracturing completions. Therefore, the methodology, based on a multidimensional DIRECT algorithm, can provide significant high accuracy and convergent efficiency as well as robust computation for interpretable spatiotemporal microseismic evolution, which is more suitable for real-time processing of a large amount of downhole microseismic monitoring data.

【Abstract】 Downhole microseismic data has the significant advantages of high signal-to-noise ratio and well-developed P and S waves and the core component of microseismic monitoring is microseismic event location associated with hydraulic fracturing in a relatively high confidence level and accuracy. In this study, we present a multidimensional DIRECT inversion method for microseismic locations and applicability tests over modeling data based on a downhole microseismic monitoring system. Synthetic tests inidcate that the objective function of locations can be defined as a multi-dimensional matrix space by employing the global optimization DIRECT algorithm, because it can be run without the initial value and objective function derivation, and the discretely scattered objective points lead to an expeditious contraction of objective functions in each dimension. This study shows that the DIRECT algorithm can be extensively applied in real downhole microseismic monitoring data from hydraulic fracturing completions. Therefore, the methodology, based on a multidimensional DIRECT algorithm, can provide significant high accuracy and convergent efficiency as well as robust computation for interpretable spatiotemporal microseismic evolution, which is more suitable for real-time processing of a large amount of downhole microseismic monitoring data.

【基金】 financially supported by the National Natural Science Foundation of China (Grant No. 41807296 and No. 41802006);Natural science found for universities of Anhui province (Grant No. KJ2017A036)
  • 【文献出处】 Acta Geologica Sinica(English Edition) ,地质学报(英文版) , 编辑部邮箱 ,2019年03期
  • 【分类号】P618.13;P631.4
  • 【下载频次】15
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