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- W2592721732 abstract "Abstract Recent focus in exploitation of unconventional hydrocarbons like shale gas and shale oil have brought numerous exploration and production challenges worldwide. Unconventional exploration of hydrocarbons, over the past decade has seen a lot of improvement in use of multi domain technology like inversion geophysics, petroleum systems modeling, reservoir characterization, fracture geomechanics and production stimulation. However, identification of sweet spot for drilling wells is one aspect of the unconventionals, production of hydrocarbon is another major challenge which industry faces. Due to lack of integrated studies, a well drilled in a shale reservoir can end up in producing little or no hydrocarbons, or can have rapid decline rate of hydrocarbon production. Till date no attempt has been made to combine inversion geophysics, petroleum system modeling, fracture geomechanics and production optimization to make an integrated earth model, which can predict the sweet spots and help in predicting production optimization scenarios in shale reservoirs. In this study, an integrated workflow has been developed, which combines all three domains (Inversion Geophysics, Petroleum System Modeling & Reservoir Engineering) in a systematic manner, which can help in robust exploitation of sweet spots to generate optimum production profile which is economically most viable. In addition to the novelty of integrating seismic, basin modelling and reservoir engineering; this invention involves optimized hydraulic fracture (HF) design and production performance generated from an unstructured grid. Combination of hydraulic fracture optimization on an unstructured grid with sweet spot and natural fracture propagation by seismic inversion and basin modelling workflow, further strengthens the novelty of the workflow." @default.
- W2592721732 created "2017-03-16" @default.
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- W2592721732 date "2017-03-06" @default.
- W2592721732 modified "2023-10-16" @default.
- W2592721732 title "Systematic Evaluation of Shale Play by Introducing Integration of Inversion Geophysics, Petroleum System and Reservoir Simulation Workflows" @default.
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- W2592721732 doi "https://doi.org/10.2118/183981-ms" @default.
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