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Simulation and mathematical modeling of stimulated shale gas reservoirs
Samarth D. Patwardhan, Fatemeh Famoori, Radhika G. Gunaji,
Published in American Chemical Society
2014
Volume: 53
   
Issue: 51
Pages: 19788 - 19805
Abstract
Gas from shale reservoirs is difficult to produce, unless they are effectively stimulated. Production from wells completed in these quad-porosity reservoirs is dependent on the placement of hydraulic fractures and their degree of connectivity to the existing natural fractures. These propped fractures and their effectiveness is a direct function of the in situ stress in the formation. Furthermore, geochemical diagenesis in the created fractures significantly impacts fracture conductivity. This paper utilizes a fracture-completed horizontal well in different configurations of quad-porosity shale gas reservoir models to assess the effect of gas flow and storage in these systems on production parameters. Furthermore, sensitivity analysis is carried out on critical parameters to observe its impact on well performance. This work will help to provide a better understanding of hydraulic fracturing treatments and its effect on the forecast of a stimulated well with reasonable certainty. © 2014 American Chemical Society.
About the journal
JournalData powered by TypesetIndustrial and Engineering Chemistry Research
PublisherData powered by TypesetAmerican Chemical Society
Open AccessNo
Concepts (17)
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    Flow of gases
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    Horizontal wells
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    Hydraulic fracturing
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    Petroleum reservoirs
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    Porosity
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    Sensitivity analysis
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    Shale
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    Shale gas
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    DEGREE OF CONNECTIVITY
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    DIRECT FUNCTIONS
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    FRACTURE CONDUCTIVITIES
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    HYDRAULIC FRACTURING TREATMENTS
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    NATURAL FRACTURE
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    PRODUCTION PARAMETERS
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    SHALE GAS RESERVOIRS
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    WELL PERFORMANCE
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    Fracture