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Horizontal drilling and multi-stage hydraulic fracturing have made the commercial development of nano-darcy shale resources a success. Such low recovery factors highlight the importance of accurate modeling of fluid-flow and well performance for wells draining such resources. <br /> <br /...
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id-itb.:220382017-09-27T10:37:33Z#TITLE_ALTERNATIVE# FAHMI AZIZ (NIM : 12211003), Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/22038 Horizontal drilling and multi-stage hydraulic fracturing have made the commercial development of nano-darcy shale resources a success. Such low recovery factors highlight the importance of accurate modeling of fluid-flow and well performance for wells draining such resources. <br /> <br /> <br /> This sensitivity studies illustrate the important parameters affecting shale oil production performance from the the low permeability shale formation. The parameters studied in our work includes matrix permeability, fracture permeability, fracture spacing, and fracture half-length. <br /> <br /> <br /> This study uses petroleum softwares to calculate reservoir data and make computerial model of shale oil field. The studies show that placing fractures closely, increasing the fracture half-length, making higher matrix permeability leads to higher recovery of oil. text |
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Horizontal drilling and multi-stage hydraulic fracturing have made the commercial development of nano-darcy shale resources a success. Such low recovery factors highlight the importance of accurate modeling of fluid-flow and well performance for wells draining such resources. <br />
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This sensitivity studies illustrate the important parameters affecting shale oil production performance from the the low permeability shale formation. The parameters studied in our work includes matrix permeability, fracture permeability, fracture spacing, and fracture half-length. <br />
<br />
<br />
This study uses petroleum softwares to calculate reservoir data and make computerial model of shale oil field. The studies show that placing fractures closely, increasing the fracture half-length, making higher matrix permeability leads to higher recovery of oil. |
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FAHMI AZIZ (NIM : 12211003), |
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