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- W4291718381 abstract "Conventional modeling methods for tight gas reservoir often consider procedures including fracture framework, geo-stress field, and fluid-solid interaction. The economic and human costs of the procedures are high because the procedures are driven by technique service companies and commercial software. A long period is needed from seismic interpretation to numerical simulation and there is no enough flexibility for a reservoir model with both stochasticity and determinacy when conventional modeling methods are adopted. This research takes a case of tight gas reservoir of H sand in Early Cretaceous, Indus Basin. The tight gas reservoir and hydraulic fractures are characterized respectively and a static-dynamic model iteration technique are used to build a predictive reservoir model. The modeling method in this research includes: (1) geologic process analysis based on core, borehole logs, seismic data, and well observed production, (2) static reservoir modeling guided by geologic genesis analysis, (3) hydraulic fracture modeling, (4) reservoir numerical simulation, (4) static-dynamic modeling feedback and iteration. The modeling method can be optimized based on datasets of reservoirs in different geologic settings. The modeling method can be systematically and rapidly iterated comparing to conventional methods and can satisfy the accuracy for hydraulic fracturing engineering with increasing iteration loops. The method also has a use for reference to natural fracture modeling." @default.
- W4291718381 created "2022-08-16" @default.
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- W4291718381 date "2022-08-15" @default.
- W4291718381 modified "2023-09-26" @default.
- W4291718381 title "Application of static-dynamic modeling for tight gas reservoir: A case of H reservoir in Early Cretaceous, Indus Basin" @default.
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- W4291718381 doi "https://doi.org/10.1190/image2022-3745560.1" @default.
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